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page 1/154 Всички цитати Институт по обща и неорганична химия Година: 2018 Брой цитирани публикации: 686 Брой цитиращи източници: 2374 1982 1. Angelov, S., Zhecheva, E., Petrov, K., Mehandjiev, D.. The properties of a spinel copper cobaltite prepared at low temperatures and normal pressure. Materials Research Bulletin, 17, 2, 1982, ISSN:2.435, 235-240. SJR:0.753, ISI IF:2.435 Цитира се в: 1. Tamayo, A., Rodríguez, M.A., Arroyo, C., Beltran-Heredia, J., Rubio, F. "Dependence of the synthetic strategy on the thermochemical energy storage capability of CuxCo3-xO4 spinels". Journal of the European Ceramic Society, 38 (4), pp. 1583- 1591, 2018, 2018 Линк 2. Kang, K.E., Kim, C.H., Lee, M.S., Jung, C.W., Kim, Y.D., Lee, J.H. "Stability of a Cu0.7Co2.3O4electrode during the oxygen evolution reaction for alkaline anion-exchange membrane water electrolysis". Journal of the Korean Physical Society, 72 (1), pp. 52-56, 2018, 2018 Линк 1984 2. Kellner, R., Nikolov, G.St., Trendafilova, N.. Detecting the bonding type of dithiocarbamate ligands in their complexes as inferred from the asymmetric CS-mode. Inorganica Chimica Acta, 84, 2, Elsevier, 1984, 233-239. ISI IF:2.046 Цитира се в: 3. Pettenuzzo, A., Montagner, D., McArdle, P., Ronconi, L., An innovative and efficient route to the synthesis of metal-based glycoconjugates: proof-of-concept and potential applications, 2018, Dalton Transactions, 47(31), pp. 10721-10736., 2018 Линк 4. Kun, W.N., Mlowe, S., Nyamen, L.D., (...), Ndifon, P.T., Revaprasadu, N., Deposition of Bi2 S3 thin films from heterocyclic bismuth(III) dithiocarbamato complexes, 2018, Polyhedron, 154, pp. 173-181., 2018 Линк 3. Trendafilova, N., Kellner, R., Nikolov, G.St.. Normal coordinate analysis of the dithiocarbamate ligand and bis-(N,N- diethyldithiocarbamate) nickel(II), copper(II), zinc(II) and cadmium(II). Journal of Molecular Structure, 115, 1-2, Elsevier, 1984, ISSN:ISSN 0022-2860, 439-442. ISI IF:1.602 Цитира се в: 5. Khan, E., Shahzad, A., Tahir, M.N., Noor, A., Antioxidant potential and secondary reactivity of bisfdiphenyl(2- pyridyl)phosphinogcopper(II) complex, 2018, Turkish Journal of Chemistry, 42(5), pp. 1299-1308., 2018 Линк 1987 4. Marinova, Ts.S., Kostov, K.L.. Interaction of oxygen with a clean Ir (111) surface. Surface Science, Volume 185, 1, Elsevier, 1987, DOI:10.1016/S0039-6028(87)80622-2, 203-212. ISI IF:1.925 Цитира се в: 6. Lin, Yi; Li, Yunzhe; Sadowski, Jerzy T.; et al. Excitation and characterization of image potential state electrons on quasi-free- standing graphene PHYSICAL REVIEW B Volume: 97 Issue: 16 Article Number: 165413 , 2018, 2018 Линк 7. Montemore, M.M., van Spronsen, M.A., Madix, R.J. and Friend, C.M., 2018. O2 Activation by Metal Surfaces: Implications for Bonding and Reactivity on Heterogeneous Catalysts. Chemical reviews (2018), 118 (5), pp 2816–2862., 2018 Линк 5. Marinova, Ts. S., Kostov, K.L.. Adsorption of acetylene and ethylene on a clean Ir(111) surface. Surface Science, 181, 3, Elsevier, 1987, DOI:10.1016/0039-6028(87)90206-8, 573-585. ISI IF:1.925 Цитира се в: 8. Lu, J., Hao, H., Zhang, L., Xu, Z., Zhong, L., Zhao, Y., He, D., Liu, J., Chen, D., Pu, H., He, S., Luo, Y. The investigation of the role of basic

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Page 1: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 1/154

Всички цитати

Институт по обща и неорганична химия

Година: 2018

Брой цитирани публикации: 686 Брой цитиращи източници: 2374

1982

1. Angelov, S., Zhecheva, E., Petrov, K., Mehandjiev, D.. The properties of a spinel copper cobaltite prepared at low temperatures and normal pressure. Materials Research Bulletin, 17, 2, 1982, ISSN:2.435, 235-240. SJR:0.753, ISI IF:2.435

Цитира се в:

1. Tamayo, A., Rodríguez, M.A., Arroyo, C., Beltran-Heredia, J., Rubio, F. "Dependence of the synthetic strategy on the thermochemical energy storage capability of CuxCo3-xO4 spinels". Journal of the European Ceramic Society, 38 (4), pp. 1583-1591, 2018, 2018 Линк

2. Kang, K.E., Kim, C.H., Lee, M.S., Jung, C.W., Kim, Y.D., Lee, J.H. "Stability of a Cu0.7Co2.3O4electrode during the oxygen evolution reaction for alkaline anion-exchange membrane water electrolysis". Journal of the Korean Physical Society, 72 (1), pp. 52-56, 2018, 2018 Линк

1984

2. Kellner, R., Nikolov, G.St., Trendafilova, N.. Detecting the bonding type of dithiocarbamate ligands in their complexes as inferred from the asymmetric CS-mode. Inorganica Chimica Acta, 84, 2, Elsevier, 1984, 233-239. ISI IF:2.046

Цитира се в:

3. Pettenuzzo, A., Montagner, D., McArdle, P., Ronconi, L., An innovative and efficient route to the synthesis of metal-based glycoconjugates: proof-of-concept and potential applications, 2018, Dalton Transactions, 47(31), pp. 10721-10736., 2018 Линк

4. Kun, W.N., Mlowe, S., Nyamen, L.D., (...), Ndifon, P.T., Revaprasadu, N., Deposition of Bi2 S3 thin films from heterocyclic bismuth(III) dithiocarbamato complexes, 2018, Polyhedron, 154, pp. 173-181., 2018 Линк

3. Trendafilova, N., Kellner, R., Nikolov, G.St.. Normal coordinate analysis of the dithiocarbamate ligand and bis-(N,N-diethyldithiocarbamate) nickel(II), copper(II), zinc(II) and cadmium(II). Journal of Molecular Structure, 115, 1-2, Elsevier, 1984, ISSN:ISSN 0022-2860, 439-442. ISI IF:1.602

Цитира се в:

5. Khan, E., Shahzad, A., Tahir, M.N., Noor, A., Antioxidant potential and secondary reactivity of bisfdiphenyl(2-pyridyl)phosphinogcopper(II) complex, 2018, Turkish Journal of Chemistry, 42(5), pp. 1299-1308., 2018 Линк

1987

4. Marinova, Ts.S., Kostov, K.L.. Interaction of oxygen with a clean Ir (111) surface. Surface Science, Volume 185, 1, Elsevier, 1987, DOI:10.1016/S0039-6028(87)80622-2, 203-212. ISI IF:1.925

Цитира се в:

6. Lin, Yi; Li, Yunzhe; Sadowski, Jerzy T.; et al. Excitation and characterization of image potential state electrons on quasi-free-standing graphene PHYSICAL REVIEW B Volume: 97 Issue: 16 Article Number: 165413 , 2018, 2018 Линк

7. Montemore, M.M., van Spronsen, M.A., Madix, R.J. and Friend, C.M., 2018. O2 Activation by Metal Surfaces: Implications for Bonding and Reactivity on Heterogeneous Catalysts. Chemical reviews (2018), 118 (5), pp 2816–2862., 2018 Линк

5. Marinova, Ts. S., Kostov, K.L.. Adsorption of acetylene and ethylene on a clean Ir(111) surface. Surface Science, 181, 3, Elsevier, 1987, DOI:10.1016/0039-6028(87)90206-8, 573-585. ISI IF:1.925

Цитира се в:

8. Lu, J., Hao, H., Zhang, L., Xu, Z., Zhong, L., Zhao, Y., He, D., Liu, J., Chen, D., Pu, H., He, S., Luo, Y. The investigation of the role of basic

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lanthanum (La) species on the improvement of catalytic activity and stability of HZSM-5 material for eliminating methanethiol-(CH3SH) (2018) Applied Catalysis B: Environmental, 237, pp. 185-197, 2018 Линк

9. Bauer, U., Gleichweit, C., Höfert, O., Späth, F., Gotterbarm, K., Steinrück, H.P. and Papp, C., Reactivity studies of ethylene, benzene and cyclohexane on carbide-modified Mo (110) using high resolution X-ray photoelectron spectroscopy. Surface Science, 268, pp. 11-192018, 2018., 2018

1988

6. Basu, P., Panayotov, D., Yates, J.T, Jr.. Rhodium-Carbon Monoxide Surface Chemistry: The Involvement of Surface Hydroxyl Groups on Al203 and Si02 Supports. Journal of the American Chemical Society, 110, 7, American Chemical Society, 1988, ISSN:0002-7863, DOI:10.1021/ja00215a010, 2074-2081. ISI IF:12.113

Цитира се в:

10. Ibrahim, M. Y. S.; Denmark, S. E., "Selective extraction of supported Rh nanoparticles under mild, non-acidic conditions with carbon monoxide". Journal of Materials Chemistry A 2018, 6 (37), 18075-18083; DOI: 10.1039/C8TA06508J, 2018 Линк

11. Palermo, A. P.; Zhang, S.; Hwang, S.-J.; Dixon, D. A.; Gates, B. C.; Katz, A., "Weakly interacting solvation spheres surrounding a calixarene-protected tetrairidium carbonyl cluster: contrasting effects on reactivity of alkane solvent and silica support". Dalton Transactions 2018, 47 (38), 13550-13558; 10.1039/C8DT01371C, 2018 Линк

12. Dimitrakopoulou, M.; Huang, X.; Kröhnert, J.; Teschner, D.; Praetz, S.; Schlesiger, C.; Malzer, W.; Janke, C.; Schwab, E.; Rosowski, F.; Kaiser, H.; Schunk, S.; Schlögl, R.; Trunschke, A., "Insights into structure and dynamics of (Mn, Fe)Ox-promoted Rh nanoparticles". Faraday Discussions 2018, 208 (0), 207-225; DOI: 10.1039/C7FD00215G, 2018 Линк

13. Ding, D.; Yu, J.; Guo, Q.; Guo, X.; Mao, H.; Mao, D., "Highly Efficient Synthesis of C2+ Oxygenates from CO Hydrogenation Over Rh–Mn–Li/SiO2 Catalyst: The Effect of TiO2 Promoter". Catalysis Letters 2018, 148 (8), 2619-2626; DOI: 10.1007/s10562-018-2444-y, 2018 Линк

7. Hadjiivanov , K., Klissurski, D., A. Davydov. Effect of the surface structure of metal oxides on their adsorption properties. J. Chem. Soc., Faraday Trans. 1, 84, Royal Society of Chemistry, 1988, DOI:10.1039/F19888400037, 37-40. ISI IF:1.848

Цитира се в:

14. Kitanosono, T., Masuda, K., Xu, P., Kobayashi, S., Catalytic Organic Reactions in Water toward Sustainable Society, (2018) Chemical Reviews, 118 (2), pp. 679-746., 2018 Линк

15. Q. Bkour, K. Im, O.G. Marin-Floresa, M. Grant Norton, S. Ha and J. Kim, Application of Ti-doped MoO2 microspheres prepared by spray pyrolysis to partial oxidation of n-dodecane, Appl. Catal. A, 553 (2018) 74-81[ISI]., 2018 Линк

8. Zakhariev Z., Radev D.. Properties of Polycrystalline Boron Carbide Sintered in the Presence of W2B5 without Pressing. Journal of Materials Science Letters, 7, 7, 1988, ISSN:0261-8028, DOI:10.1007/s10855-005-4534-4, 695-696. ISI IF:0.474

Цитира се в:

16. Shuaibo Gao. "An economic and environment friendly way of recycling boron carbide waste to prepare B4C/Al composite ceramic". Int. J. of Appl. Ceram. Technol., 2018, 1-9, 2018 Линк

1990

9. Zhecheva, E., Stoyanova, R., Angelov, A.. Doping of Co3O4 with lithium by a solid-state reaction in air I. Oxidation degree and coordination of cations. Materials Chemistry and Physics, 25, 4, Elsevier, 1990, DOI:https://doi.org/10.1016/0254-0584(90)90124-S, 351-360. ISI IF:2.21

Цитира се в:

17. Schäfer, H.; Kuepper, K.; Koppe, J.; Selter, P.; Steinhart, M.; Ryan Hansen, M.; Daum∥, D. "Intercalation of Li+ into a Co-Containing Steel-Ceramic Composite: Substantial Oxygen Evolution at Almost Zero Overpotential" ACS Catal., 2018, 8 (11), pp 10914–10925, 2018 Линк

10. Angelov, S., Zhecheva, E., Stoyanova, R., Atanasov, M.. Bulk defects in Co3O4, pure and slightly doped with lithium, revealed by EPR of the tetrahedral Co2+ ions. Journal of Physics and Chemistry of Solids, 51, 10, 1990, ISSN:0022-3697, 1157-1161. ISI IF:1.853

Цитира се в:

18. Cho, S. B., Sim, E. S., & Chung, Y. C. (2018). Elucidating the unintentional p-type nature of spinel Co3O4: A defect study using ab-initio calculation. Journal of the European Ceramic Society, 38(2), 629-635., 2018 Линк

19. Gawali, S.R.; Gandhi, A.C.; Gaikwad, S.S.; Pant, J.; Chan, T.-S.; Cheng, C.-L.; M, Y.Ra; Wu, S.Y. "Role of cobalt cations in short range antiferromagnetic Co3O4 nanoparticles: a thermal treatment approach to affecting phonon and magnetic properties: Scientific

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Reportsvolume 8 (2018) Article number: 249, 2018 Линк

11. Klissurski D, Uzunova E. Synthesis of High-Dispersity Zinc Cobaltite from Coprecipitated Zn-Co Hydroxidecarbonate as a Precursor. J. Mater.Sci. Lett., 9, springer, 1990, DOI:http://link.springer.com/article/10.1007/BF00725882, 576-583. ISI IF:0.7

Цитира се в:

20. Saheli, S., Rezvani, A.R., Malekzadeh, A., Dusek, M., Eigner, V. Effect of Synthetic Route and Metal Oxide Promoter on Cobalt-Based Catalysts for Fischer–Tropsch Synthesis (2018) Catalysis Letters, 148 (11), pp. 3557-3569., 2018 Линк

12. Klissurski, D., Hadjiivanov, K., Kantcheva, M., Gyurova, L.. Study of peroxide-modified titanium dioxide (anatase). Journal of the Chemical Society, Faraday Transactions, 86, 1990, DOI:10.1039/FT9908600385, 385-388. ISI IF:4.49

Цитира се в:

21. Y. Ohya, Aqueous Precursors, in Handbook of Sol-gel Science and Technology (L. Klein, M. Aparicio and A. Jitianu, Eds.), 2nd Ed., Springer, Cham, Switzerland, 2018, p. 155 [GB]., 2018 Линк

22. N.D. Pajić, P. Djinović, G. Dražić, J. Grdadolnik, P. Šket, J. Cerkovnik and A. Pintar, Structural stabilization and characterization of active peroxo species on TiO2-nanotube based materials in mild catalytic wet peroxide oxidation process, Appl. Catal. A, 562 (2018) 276 [ISI]., 2018 Линк

23. S. Kashiwaya, T. Toupance, A. Klein and W. Jaegermann, Fermi Level Positions and Induced Band Bending at Single Crystalline Anatase (101) and (001) Surfaces: Origin of the Enhanced Photocatalytic Activity of Facet Engineered Crystals, Adv. Energy Mater., 8 (2018) 1802195 [ISI]., 2018 Линк

24. O. Савчук, Електросинтез нанокомпозитів на основі нікелю із метилсульфонатних електролітів, Дисертація кандидата хімічних наук, Український державний хіміко-технологічний університет, Дніпро, Украйна, 2018, 2018

25. S. Kashiwaya, J. Morasch, V. Streibel, T. Toupance, W. Jaegermann and A. Klein, The Work Function of TiO2, Surfaces, 1 (2018) 73 [ISI]., 2018 Линк

13. Iliev, K., Peshev, P., Nikolov, V., Koseva, I.. Physicochemical properties of high-temperature solutions of the K2O-P2O5-TiO2-WO3 system, suitable for the growth of KTiOPO4 (KTP) single crystals. Journal of Crystal Growth, 100, Elsevier, 1990, ISSN:0022-0248, DOI:10.1016/0022-0248(90)90626-V, 225-232. SJR:0.772, ISI IF:1.698

Цитира се в:

26. Isupova, E. A., et al. "Growth and Elemental Analysis of a Series of KTi 1–x Zr x OPO 4 Crystals." Crystallography Reports 63.3 (2018): 488-492., 2018 Линк

14. Degen, J., Schmidtke, H.-H., Stoyanova, R., Angelov, S., Atanasov, M.. Emission spectra of CO2− radicals, stabilized in SrCO3 obtained by thermal decomposition of SrC2O4· H2O. Chemical Physics, 147, 2, Elsevier, 1990, ISSN:03010104, DOI:10.1016/0301-0104(90)85055-2, 415-420. SJR:0.611, ISI IF:1.652

Цитира се в:

27. Oliveira, Verônica da Silva. "Estudo do sistema Fe-cyclam com ligantes carboxilatos e avaliação do efeito spin crossover e atividade antibacteriana do complexo (Fe (cyclam) ox) PF6." (2018); Universidade Federal do Rio Grande do Norte, Brazil, 2018 Линк

1991

15. Chernakova, A., Kostov, K., Shapovalov, V.. Investigation of the chemical changes in yttrium iron garnet films induced by Ar+ ion bombardment. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, 62, 2, Elsevier, 1991, DOI:10.1016/0168-583X(91)95903-Q, 228-233. ISI IF:1.109

Цитира се в:

28. S. M. Suturin, A. M. Korovin, V. E. Bursian, L. V. Lutsev, V. Bourobina, N. L. Yakovlev, M. Montecchi, L. Pasquali, V. Ukleev, A. Vorobiev, A. Devishvili, and N. S. Sokolov, Role of gallium diffusion in the formation of a magnetically dead layer at the Y3Fe5O12/Gd3Ga5O12 epitaxial interface, Phys. Rev. Materials 2, 104404 – Published 10 October 2018, 2018

16. Koseva, I., Iliev, K., Peshev, P.. Regions of existence of the SrTiO3 phase in the system SrO-TiO2-Li2O-B2O3. Materials Research Bulletin, 26, 1991, DOI:10.1016/0025-5408(91)90109-Y, 659-666. SJR:0.74, ISI IF:2.288

Цитира се в:

29. Yi, Ting-Feng, et al. "Recent advances in the research of MLi2Ti6O14 (M = 2Na, Sr, Ba, Pb) anode materials for Li-ion batteries." Journal of Power Sources 399 (2018): 26-41., 2018 Линк

30. Zhang, Jundong, et al. "Effect of calcination temperature on morphology and electrochemical performance of PbLi2Ti6O14." Ceramics International (2018)., 2018 Линк

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17. Hadjiivanov, K., Klissurski, D., Busca, G., Lorenzelli, V.. Benzene–ammonia coadsorption on TiO2(anatase). J. Chem. Soc., Faraday Trans, 87, 1991, DOI:10.1039/FT9918700175, 175-178. ISI IF:4.49

Цитира се в:

31. F. Giraud, J. Couble, C. Geantet, N. Guilhaume, S. Loridant, S. Gros, L. Porcheron, M. Kanniche and D. Bianchi, Experimental Microkinetic Approach of De-NOx by NH3 on V2O5/WO3/TiO2 Catalysts. 5. Impacts of the NH3-H2O Coadsorption on the Coverage of Sulfated TiO2-Based Solids, J. Phys. Chem. C, 122 (2018) 24619 [ISI]., 2018 Линк

32. F. Giraud, J. Couble, C. Geantet, N. Guilhaume, S. Loridant, S. Gros, L. Porcheron, M. Kanniche and D. Bianchi, Experimental Microkinetic Approach of De-NOx by NH3 on V2O5/WO3/TiO2 Catalysts. 6. NH3–H2O Coadsorption on TiO2-Based Solids and Competitive Temkin Model, J. Phys. Chem. C, 122 (2018) 24634-24651[ISI]., 2018 Линк

33. T. Saboo. Surface organometallic chemistry on Titania, Ph. D. Thesis, Université de Lyon, France, 2018 [GS]., 2018

18. Hadjiivanov, K., Klissurski, D., Kantcheva, M., Davydov, A.. State and localization of cobalt, nickel and copper ions adsorbed on titania (anatase). Journal of the Chemical Society, Faraday Transactions, 87, 1991, DOI:10.1039/FT9918700907, 907-911. ISI IF:4.49

Цитира се в:

34. F. Giraud, J. Couble, C. Geantet, N. Guilhaume, S. Loridant, S. Gros, L. Porcheron, M. Kanniche and D. Bianchi, Experimental Microkinetic Approach of De-NOx by NH3 on V2O5/WO3/TiO2 Catalysts. 6. NH3–H2O Coadsorption on TiO2-Based Solids and Competitive Temkin Model, J. Phys. Chem. C, 122 (2018) 24634-24651[ISI]., 2018 Линк

35. R. Sharma and D. Kumar, Nanoadsorbents: An Approach Towards Wastewater Treatment, in Nanotechnology for Sustainable Water Resources (A.K. Mishra and C.M. Hussain, Eds.), John Wiley & Sons, Hoboken, USA, 2018, p. 371 [ISI]., 2018 Линк

19. Hadjiivanov, K., Vassileva, E., Kantcheva, M., Klissurski, D.. IR Spectroscopy Study of Silver Ions Adsorbed on Titania (Anatase). Materials Chemistry and Physics, 28, 4, 1991, DOI:10.1016/0254-0584(91)90072-3, 367-377. SJR:0.818, ISI IF:2.259

Цитира се в:

36. A.L. Gould, C. Richard, A. Catlow and A.J. Logsdail, Computational investigation of CO adsorbed on Aux, Agx and (AuAg)x nanoclusters (x = 1 − 5, 147) and monometallic Au and Ag low-energy surfaces, Europ. Phys. J., 91 (2018) 32 [ISI]., 2018 Линк

20. Klissurski D, Uzunova E. Synthesis of Nickel Cobaltite Spinel from Coprecipitated Nickel-Cobalt Hydroxidecarbonate. Chem. Mater., 3, ASC, 1991, ISSN:1520-5002, 1060-1068. ISI IF:8.35

Цитира се в:

37. Cao, H., Xie, Y., Wang, H., Xiao, F., Wu, A., Li, L., Xu, Z., Xiong, N., Pan, K. Flower-like CoP microballs assembled with (002) facet nanowires via precursor route: Efficient electrocatalysts for hydrogen and oxygen evolution (2018) Electrochimica Acta, 259, pp. 830-840., 2018

38. Huang, Q., Li, W., Lei, Y., Guan, S., Zheng, X., Pan, Y., Wen, W., Zhu, J., Zhang, H., Lin, Q. Catalytic Performance of Novel Hierarchical Porous Flower-Like NiCo2O4 Supported Pd in Lean Methane Oxidation (2018) Catalysis Letters, 148 (9), pp. 2799-2811, 2018 Линк

39. Trivedi, S., Prasad, R. A four-way catalytic system for control of emissions from diesel engine (2018) Sadhana - Academy Proceedings in Engineering Sciences, 43 (8), art. no. 130, ., 2018 Линк

40. Cao, F., Tian, W., Li, L. Ternary non-noble metal zinc-nickel-cobalt carbonate hydroxide cocatalysts toward highly efficient photoelectrochemical water splitting (2018) Journal of Materials Science and Technology, 34 (6), pp. 899-904, 2018

1992

21. Maneva, M., Koleva, V.. Thermal and Calorimetric Studies of M(IO3)2.6H2O and M(IO3)2.6D2O for M = Ca, Sr. Journal of Thermal Analysis, 38, 1992, 2491-2499. ISI IF:2.209

Цитира се в:

41. Максимов, Ю. М., Аврамчик, А. Н., Браверман, Б. Ш., & Шульпеков, А. М. (2018). Физикохимические процессы при термолизе йодата кальция. Конференция „Актуальные проблемы инновационного развития ядерных технологий”, 2-6 април, Северск, Томской области, Русия, стр. 52., 2018 Линк

22. Mehandjiev, D., Naidenov, A.. Ozone Decomposition on α-Fe2O3 Catalyst. Ozone: Science & Engineering, 14, 4, Taylor&Francis, 1992, DOI:10.1080/01919519208552273, 276-282. ISI IF:0.95

Цитира се в:

42. Li, X., Ma, J., Yang, L., He, G., Zhang, C., Zhang, R., He, H., Oxygen Vacancies Induced by Transition Metal Doping in γ-MnO2 for Highly Efficient Ozone Decomposition (2018) Environmental Science and Technology, 52 (21), pp. 12685-12696., 2018 Линк

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43. Chen, Y., Qu, W., Li, C., Chen, J., Ma, Z., Tang, X., Ultra-Lowerature Ozone Abatement on α-MnO2(001) Facets with Down-Shifted Lowest Unoccupied Orbitals (2018) Industrial and Engineering Chemistry Research, 57 (37), pp. 12590-12594., 2018 Линк

44. Wang, X., Romanias, M.N., Thévenet, F., Rousseau, A., Geocatalytic uptake of ozone onto natural mineral dust (2018) Catalysts, 8 (7), art. no. 263, ., 2018 Линк

45. Gong, S., Chen, J., Wu, X., Han, N., Chen, Y., In-situ synthesis of Cu2O/reduced graphene oxide composite as effective catalyst for ozone decomposition (2018) Catalysis Communications, 106, pp. 25-29., 2018 Линк

46. Gong, S., Wu, X., Zhang, J., Han, N., Chen, Y., Facile solution synthesis of Cu2O-CuO-Cu(OH)2 hierarchical nanostructures for effective catalytic ozone decomposition (2018) CrystEngComm, 20 (22), pp. 3096-3104., 2018 Линк

23. Dimitriev, Y., Klissurski, D., Iordanova, R.. Glass formation in V2O5-MoO3-Fe2O3. Journal of Non-Crystalline Solids, 151, 3, Elsevier, 1992, ISSN:0022-3093, DOI:10.1016/0022-3093(92)90039-M, 268-271. SJR:0.692, ISI IF:2.124

Цитира се в:

47. Ahmed, E. M., El‐Ghamaz, N. A., & Edres, A. M. Thermal Kinetics and Theoretical Third Order Nonlinear Optical Susceptibility of some As2O3· V2O5· FeO Glasses (2018) Physica status solidi (a), 215 (18), 1800299., 2018 Линк

24. Kantcheva, M., Hadjiivanov, K., Davydov, A., Budneva, A.. Low-temperature CO adsorption on Cu2+/TiO2 catalysts. Applied Surface Science, 55, 1, 1992, DOI:10.1016/0169-4332(92)90380-G, 49-55. ISI IF:2.711

Цитира се в:

48. A. Khartchenko, V.L. Zholobenko, A. Vicente, C. Fernandez, H. Vezin, V. De Waele and S. Mintova, Formation of copper nanoparticles in LTL nanosized zeolite: spectroscopic characterization, Phys. Chem. Chem. Phys., 20 (2018) 2880 [ISI]., 2018 Линк

25. Lange, F., Hadjiivanov, K., Schmelz, H., Knözinger, H.. Low temperature infrared study of carbon monoxide adsorption on sulfated titania. Catalysis Letters, 16, 1, 1992, ISSN:1572-879X, DOI:10.1007/BF00764359, 97-107. ISI IF:2.307

Цитира се в:

49. T. Huang, P.-F. Yan, Z. Xu, X. Liu, Q. Xin, H. Liu and Z.C. Zhang, Structural Dependence and Spectroscopic Evidence of Methane Dissolution in Ionic Liquids, J. Phys. Chem. B, 122 (2018) 6007 [ISI]., 2018 Линк

26. Kantcheva, M., Hadjiivanov, K., Klissurski, D.. An IR spectroscopy study of the state and localization of vanadium-oxo species adsorbed on TiO2 (anatase). Journal of Catalysis, 134, 1, 1992, DOI:10.1016/0021-9517(92)90229-B, 299-310. ISI IF:6.921

Цитира се в:

50. Song, J.-D., Song, T.-Y., Zhang, T.-T., Wang, Y., Luo, M.-F., Lu, J.-Q.m High performance V2O5/MgF2 catalysts for gas-phase dehydrofluorination of 1, 1, 1, 3, 3-pentafluoropropane: Support-induced evolution of new active sites, (2018) Journal of Catalysis, 364, pp. 271-281. DOI: 10.1016/j.jcat.2018.04.014, 2018 Линк

51. Kim, M.H., Yang, K.H., The role of Fe2O3 species in depressing the formation of N2O in the selective reduction of no by NH3 over V2O5/TiO2-based catalysts, (2018) Catalysts, 8 (4), art. no. 134, DOI: 10.3390/catal8040134, 2018 Линк

1993

27. Trapalis, C., Kozhuharov, V., Samuneva, B., Stefanov, P.. Sol-gel Processing of Ti-containing thin coatings” Part II XPS Studies. Journal of Materials Science, 28, 5, Springer Netherlands, 1993, ISSN:0022-2461, DOI:10.1007/BF01191964, 1276-1282. SJR:0.929, ISI IF:2.371

Цитира се в:

52. Liu, Yuanyuan; Huang, Jiamu; Qin, Lilu; et al Coatings on Al 2024-T3 Alloy SubstratesEffect of Thickness on the Structure and Corrosion Performance of Sputtered Ce-Al-O JOURNAL OF THE ELECTROCHEMICAL SOCIETY Volume: 165 Issue: 7 Pages: C395-C402 Published: 2018, 2018 Линк

53. Alharthi, F.A., Cheng, F., Verrelli, E., Kemp, N.T., Lee, A.F., Isaacs, M.A., O'Neill, M., Kelly, S.M. Solution-processable, niobium-doped titanium oxide nanorods for application in low-voltage, large-area electronic devices (2018) Journal of Materials Chemistry C, 6 (5), pp. 1038-1047, 2018 Линк

54. Domínguez-Crespo, M.A., Torres-Huerta, A.M., Rodríguez, E., González-Hernández, A., Brachetti-Sibaja, S.B., Dorantes-Rosales, H.J., López-Oyama, A.B. Effect of deposition parameters on structural, mechanical and electrochemical properties in Ti/TiN thin films on AISI 316L substrates produced by r. f. magnetron sputtering (2018) Journal of Alloys and Compounds, 746, pp. 688-69, 2018 Линк

55. Fukuda, T., Takahira, K., Masuzawa, S., Shirai, S. Thermal-to-Electrical Energy Conversion Cell with Sol–Gel-Deriv -Organic Composite Operated without Temperature Difference (2018) Physica Status Solidi (A) Applications and Materials Science, 215 (14), art. no. 1800084, , 2018 Линк

56. Kabir, I.I., Sheppard, L.R., Liu, R., Yao, Y., Zhu, Q., Chen, W.-F., Koshy, P., Sorrell, C.C. Contamination of TiO2 thin films spin coated

Page 6: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 6/154

on rutile and fused silica substrates (2018) Surface and Coatings Technology, 354, pp. 369-382., 2018 Линк

28. Uzunova E, Klissurski D, Mitov I, Stefanov P. Cobalt-Iron Hydroxidecarbonate Precursor for the Synthesis of High-Dispersity Spinel Mixed Oxides. Chem. Mater, 5, ACS, 1993, 576-584. ISI IF:8.35

Цитира се в:

57. Kornienko, N., Heidary, N., Cibin, G., Reisner, E. Catalysis by design: Development of a bifunctional water splitting catalyst through an operando measurement directed optimization cycle (2018) Chemical Science, 9 (24), pp. 5322-5333, 2018

29. Naydenov A, Mehandjiev D. Complete Oxidation of Benzene on MnO2 by Ozone. Applied Catalysis A: General, 97, 1, 1993, DOI:10.1016/0926-860X(93)80063-V, 17-22. ISI IF:3.94

Цитира се в:

58. Cuicui Du, Shengyong Lu, Qiuling Wang, Alfons G.Buekens, Mingjiang Ni, Damien P.Debecker, A review on catalytic oxidation of chloroaromatics from flue gas, Chemical Engineering Journal, Volume 334, 15 February 2018, Pages 519-544, 2018 Линк

59. Zhan, M.-X., Yu, M.-F., Zhang, G., Chen, T., Li, X.-D., Buekens, A., Low temperature degradation of polychlorinated dibenzo-p-dioxins and dibenzofurans over a VOx-CeOx/TiO2 catalyst with addition of ozone (2018) Waste Management, 76, pp. 555-565., 2018 Линк

30. Zhecheva, E., Stoyanova, E.. Stabilization of the layered crystal structure of LiNiO2 by Co-substitution. Solid State Ionics, 66, 1-2, 1993, ISSN:0167-2738, 143-149. ISI IF:2.561

Цитира се в:

60. Faenza, N.V., Pereira, N., Halat, D.M., Vinckeviciute, J., Bruce, L., Radin, M.D., Mukherjee, P., Badway, F., Halajko, A., Cosandey, F., Grey, C.P., Van Der Ven, A., Amatucci, G.G. Phase Evolution and Degradation Modes of R3 m LixNi1- y- zCoyAlzO2 Electrodes Cycled Near Complete Delithiation (2018) Chemistry of Materials, 30 (21), pp. 7545-7574., 2018 Линк

61. Zhang, N., Zhang, X., Shi, E., Zhao, S., Jiang, K., Wang, D., Wang, P., Guo, S., He, P., Zhou, H. In situ X-ray diffraction and thermal analysis of LiNi0.8Co0.15Al0.05O2 synthesized via co-precipitation method (2018) Journal of Energy Chemistry, 27 (6), pp. 1655-1660, 2018 Линк

62. Kasnatscheew, J., Wagner, R., Winter, M., Cekic-Laskovic, I. Interfaces and Materials in Lithium Ion Batteries: Challenges for Theoretical Electrochemistry (2018) Topics in Current Chemistry, 376 (3), art. no. 16, , 2018 Линк

63. Lee, W. , Muhammad, S. , Kim, T. , Kim, H. , Lee, E. , Jeong, M. , Son, S. , Ryou, J.-H. , Yoon, W.-S., New Insight into Ni-Rich Layered Structure for Next-Generation Li Rechargeable Batteries, Adv. Energy Mater. 8 (2018), art. no. 1701788, 2018 Линк

1994

31. Morales, J., Stoyanova, R., Tirado, J. L., Zhecheva, E.. Acid-Delithiated Li1-x(NiyCo1-y)1+xO2 as Insertion Electrodes in Lithium Batteries. Journal of Solid State Chemistry, 113, 1, 1994, ISSN:0022-4596, 182-192. ISI IF:2.133

Цитира се в:

64. Billy, E., Joulié, M., Laucournet, R., Boulineau, A., De Vito, E., Meyer, D. "Dissolution Mechanisms of LiNi1/3Mn1/3Co1/3O2Positive Electrode Material from Lithium-Ion Batteries in Acid Solution". ACS Applied Materials and Interfaces, 10 (19), pp. 16424-16435, 2018, 2018 Линк

32. Stoyanova, R., Zhecheva, E., Friebel. C.. Ni3+− Ni2+ segregation in LixNi2− xO2 solid solutions (0.6⩽ x< 1). Solid State Ionics, 73, 1-2, Elsevier, 1994, DOI:https://doi.org/10.1016/0167-2738(94)90257-7, 1-7. ISI IF:2.21

Цитира се в:

65. A. Scheie, K. Ross, E. Seibel, J. A. Rodriguez-Rivera, J. A. Tang, Yi Li, R. J. Cava, C. Broholm "Counterroating incommensurate magnetic order and strong quantum fluctuations in the honeycomb layers of NaNi2BiO6" (2018) arXiv:1807.02528 [cond-mat.str-el], 2018 Линк

66. Yang, M.-O.; Wang, J.; Wu, H.; Ho, G.-W. "Noble Metal‐Free Nanocatalysts with Vacancies for Electrochemical Water Splitting" Small 14 (15) April 12, 2018, 1703323, 2018 Линк

33. Stoyanova, R., Zhecheva, E., Zarkova, L.. Effect of Mn-substitution for Co on the crystal structure and acid delithiation of LiMnyCo1-yO2 solid solutions. Solid State Ionics, 73, 3-4, 1994, ISSN:0167-2738, 233-240. SJR:0.851, ISI IF:2.38

Цитира се в:

67. Wu, K., Li, Q., Chen, M., Chen, D., Wu, M., Hu, Z., Li, F., Xiao, X. "Improving the cycling performance, rate capacity, and thermal stability of LiCoO2 by doping high-valence ions into the Li+ site". Journal of Solid State Electrochemistry, 22 (12), pp. 3725-3734, 2018, 2018 Линк

Page 7: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 7/154

68. Mi, C., Han, E., Li, L., Zhu, L., Cheng, F., Dai, X. "Effect of iron doping on LiNi0.35Co0.30Mn0.35O2". Solid State Ionics, 325, pp. 24-29, 2018, 2018 Линк

69. Liu, Q., Su, X., Lei, D., Qin, Y., Wen, J., Guo, F., Wu, Y.A., Rong, Y., Kou, R., Xiao, X., Aguesse, F., Bareño, J., Ren, Y., Lu, W., Li, Y. "Approaching the capacity limit of lithium cobalt oxide in lithium ion batteries via lanthanum and aluminium doping". Nature Energy, 3 (11), pp. 936-943, 2018, 2018 Линк

70. Wu, K., Jia, G., Shangguan, X., Yang, G., Zhu, Z., Peng, Z., Zhuge, Q., Li, F., Cui, X. "Improved high rate performance and cycle stability for LiNi0.8Co0.2O2by doping of the high valence state ion Nb5+into Li+sites". Journal of Alloys and Compounds, 765, pp. 700-709, 2018, 2018 Линк

71. Li, Q., Wu, K., Chen, M., Lee, Y.L., Chen, D., Wu, M., Li, F., Xiao, X., Hu, Z. "Designing high-voltage and high-rate Li1-xNaxCoO2 by enlarging Li layer spacing". Electrochimica Acta, 273, pp. 145-153, 2018, 2018 Линк

72. Billy, E., Joulié, M., Laucournet, R., Boulineau, A., De Vito, E., Meyer, D. "Dissolution Mechanisms of LiNi1/3Mn1/3Co1/3O2Positive Electrode Material from Lithium-Ion Batteries in Acid Solution". ACS Applied Materials and Interfaces, 10 (19), pp. 16424-16435, 2018, 2018 Линк

73. Banov, K., Petkov, T., Boukoureshtlieva, R., Ivanova, D., Fachikov, L., Kotev, V., Banov, B. "High voltage cathode materials based on lithium cobaltate with nickel and manganese doping". Bulgarian Chemical Communications, 50, pp. 171-176, 2018, 2018 Линк

74. Chennabasappa, M., Kelly, B., Bender, D., Garrett, J., & Venkatesan, M. (2018). Synthesis, characterization, and electrochemical performance of the ternary layered composite (1-xy) LiNi1/3Co1/3Mn1/3O2· xLi2MnO3· yLiCoO2. International Journal of Hydrogen Energy., 43 (8) 4101-4107., 2018 Линк

34. Klissurski D, Uzunova E. Synthesis and features of binary cobaltite spinels. J. Mater. Sci., 29, Kluwer, 1994, DOI:http://dx.doi.org/10.1007/BF01162484, 285-293. ISI IF:2.37

Цитира се в:

75. Trivedi, S., Prasad, R. Choice of precipitant and calcination temperature of precursor for synthesis of NiCo2O4 for control of CO–CH4 emissions from CNG vehicles (2018) Journal of Environmental Sciences 65, pp. 62-71., 2018 Линк

76. Trivedi, S., Prasad, R., Gautam, S.K. Design of active NiCo2O4-Δ spinel catalyst for abatement of CO-CH4 emissions from CNG fueled vehicles (2018) AIChE Journal, 64 (7), pp. 2632-2646, 2018

35. Choisnet, J., Abadzhieva, N., Stefanov, P., Klissurski, D., Bassat, J., Rives, V., Minchev, L.. XPS, TDS and Temperature-programmed Reduction Study of LaNiO3 and LaNiO4 Catalysis for Methanol Oxidation”. Journal of the Chemical Society, Faraday Transactions , 90, 13, Royal Society of Chemistry, 1994, ISSN:09565000, DOI:10.1039/FT9949001987, 1987-1991. ISI IF:1.848

Цитира се в:

77. Zhong, W., Jiang, T., Dang, Y., He, J., Chen, S.-Y., Kuo, C.-H., Kriz, D., Meng, Y., Meguerdichian, A.G., Suib, S.L. Mechanism studies on methyl orange dye degradation by perovskite-type LaNiO3-Δ under dark ambient conditions (2018) Applied Catalysis A: General, 549, pp. 302-309., 2018 Линк

78. Xiao, M., Zhang, Z., Zhang, W., Zhang, P., Lan, K. Fabrication of low-resistance LaNixO3+δthin films for ferroelectric device electrodes (2018) Journal of Rare Earths, 36 (8), pp. 838-843, 2018 Линк

79. Schrödl, N., Egger, A., Gspan, C., Höschen, T., Hofer, F., Sitte, W. Phase decomposition of La2NiO4+δ under Cr- and Si-poisoning conditions (2018) Solid State Ionics, 322, pp. 44-53., 2018 Линк

80. Wu, C., Wang, Y., Liu, Y., Ding, W., Sun, C. Enhancement of hydrogen storage properties by in situ formed LaH3 and Mg2NiH4 during milling MgH2 with porous LaNiO3 (2018) Catalysis Today, 318, pp. 113-118., 2018 Линк

81. Chen, H., Li, X., Du, X., Xie, H., Zhao, L., Ling, Y. Enhanced electrochemical performance of Cu-doped La2NiO4+δ cathode for solid oxide fuel cells (2018) Journal of Ceramic Science and Technology, 9 (2), pp. 155-162., 2018 Линк

82. Sankannavar, Ravi; Sandeep, K. C.; Kamath, Sachin; et al. Impact of Strontium-Substitution on Oxygen Evolution Reaction of Lanthanum Nickelates in Alkaline Solution JOURNAL OF THE ELECTROCHEMICAL SOCIETY Volume: 165 Issue: 15 Pages: J3236-J3245 Published: OCT 16 2018, 2018 Линк

83. Puggioni, Danilo; Stroppa, Alessandro; Rondinelli, James M. Design of a polar half-metallic ferromagnet with accessible and enhanced electric polarization PHYSICAL REVIEW MATERIALS Volume: 2 Issue: 11 Article Number: 114403 Published: NOV 12 2018, 2018 Линк

36. Hadjiivanov, K., Saur, O., Lamotte, J., Lavalley, J.C.. FT-IR Spectroscopic Study of NH3 and CO Adsorption and Coadsorption on TiO2 (Anatase). Z. Phys. Chem., 187, 1994, 281-292. ISI IF:1

Цитира се в:

84. F. Wang, J. Ma, G. He, M. Chen, S. Wang, C. Zhang and H. He, Synergistic Effect of TiO2–SiO2 in Ag/Si–Ti Catalyst for the Selective Catalytic Oxidation of Ammonia, Ind. Eng. Chem. Res., 57 (2018) 11903-11910[ISI]., 2018 Линк

37. Trendafilova, N., Nikolov, G.St., Kellner, R., Bauer, G.. Low-temperature Fourier transform infrared spectra of tetrachlorozincate, tetrachloronickelate and tetrachlorocuprate with different counter ions. Vibrational Spectroscopy, 6, 3, Elsevier, 1994, 351-362. ISI IF:2.003

Page 8: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 8/154

Цитира се в:

85. Mereshchenko, A.S., Myasnikova, O.S., Olshin, P.K., (...), Skripkin, M.Y., Tarnovsky, A.N., Ultrafast Excited-State Dynamics of Ligand-Field and Ligand-to-Metal Charge-Transfer States of CuCl4 2- in Solution: A Detailed Transient Absorption Study, 2018, Journal of Physical Chemistry B 122(46), pp. 10558-10571., 2018 Линк

38. Iordanova, R., Dimitrov, V., Dimitriev, Y., Klissurski, D.. Glass formation and structure of glasses in the V2O5-MoO3-Bi2O3 system. Journal of Non-Crystalline Solids, 180, 1, Elsevier, 1994, ISSN:00223093, DOI:10.1016/0022-3093(94)90397-2, 58-65. SJR:0.753, ISI IF:1.766

Цитира се в:

86. Saddeek, Y.B., Aly, K.A., Shaaban, K.S., Ali, A.M., Alqhtani, M.M., Alshehri, A.M., Sayed, M.A., Abdel Wahab, E.A. Physical properties of B2O3–TeO2–Bi2O3 glass system (2018) Journal of Non-Crystalline Solids, 498, pp. 82-88., 2018 Линк

87. Lee, G., Ibrahim, S., Kittappa, S., Park, H., Park, C.M. Sonocatalytic activity of a heterostructured β-Bi2O3/Bi2O2CO3 nanoplate in degradation of bisphenol A (2018) Ultrasonics Sonochemistry, 44, pp. 64-72., 2018 Линк

88. Najafian, H., Manteghi, F., Beshkar, F., Salavati-Niasari, M. Efficient degradation of azo dye pollutants on ZnBi38O58 nanostructures under visible-light irradiation (2018) Separation and Purification Technology, 195, pp. 30-36., 2018 Линк

89. Najafian, H., Manteghi, F., Beshkar, F., Salavati-Niasari, M. Cd3Bi10O20 nanostructures: new facile synthesis, characterization and photocatalytic activity under visible light irradiation (2018) Journal of Materials Science: Materials in Electronics, 29 (8), pp. 6639-6647., 2018 Линк

90. Salem, S. M., Abou-Elnasr, T. Z., El-Gammal, W. A., Mahmoud, A. S., Saudi, H. A., & Mostafa, A. G., Optical Parameters and Electrical Transport Properties of Some Barium-Sodium-Borate Glasses Doped Bismuth Oxide (2018) American Journal of Aerospace Engineering, 5(1), 1-8., 2018 Линк

39. Zhecheva, E., Stoyanova, R.. Li1-x-yHyCoO2: Metastable layered phases obtained by acid digestion of LiCoO2(O3). Journal of Solid State Chemistry, 109, 1, Elsevier, 1994, 47-52. ISI IF:2.179

Цитира се в:

91. Nomura, F., Liu, Y., Tanabe, T., Gunji, T., Tsuda, T., Ugawa, S., Lee, H., Ohsaka, T., Matsumoto, F. "Elucidation of key factors of water-resistance of Li-rich solid-solution layered oxide cathode materials applicable to a water-based cathode preparation process for Li-ion battery" (2018) Electrochimica Acta, 283, pp. 478-487, 2018 Линк

92. Billy, E., Joulié, M., Laucournet, R., Boulineau, A., De Vito, E., Meyer, D. "Dissolution Mechanisms of LiNi1/3Mn1/3Co1/3O2 Positive Electrode Material from Lithium-Ion Batteries in Acid Solution" (2018) ACS Applied Materials and Interfaces, 10 (19), pp. 16424-16435., 2018 Линк

93. Schulz, N., Hausbrand, R., Wittich, C., Dimesso, L., Jaegermann, W. "XPS-surface analysis of SEI layers on Li-ion cathodes: Part II. SEI-composition and formation inside composite electrodes" (2018) Journal of the Electrochemical Society, 165 (5), pp. A833-A846., 2018 Линк

94. Schulz, N., Hausbrand, R., Dimesso, L., Jaegermann, W. "XPS-surface analysis of SEI layers on Li-ion cathodes: Part I. Investigation of initial surface chemistry" (2018) Journal of the Electrochemical Society, 165 (5), pp. A819-A832, 2018 Линк

40. Abadzjieva N., Tzokov P., Uzunov I., Minkov V., Klissurski D., Rives V.. Methanol oxidation to formaldehyde on bismuth phosphate-based catalysts. Reac. Kinet. Catal. Lett., 53, 2, Akadamiai Kiado, 1994, ISSN:1878-5190, 413-418. SJR:0.41, ISI IF:1.515

Цитира се в:

95. T. Swain, Synthesis, characterization and thermal property of {Cu3(PO4)2•2H2O; Na3PO4; NaHSO4•H2O}, 2018, Solar Energy 159:369-374, DOI10.1016/j.solener.2017.11.005, 2018

41. Hadjiivanov, K., Bushev, V., Kantcheva, M., Klissurski, D.. Infrared spectroscopy study of the species arising during nitrogen dioxide adsorption on titania (anatase). Langmuir, 10, 1994, DOI:10.1021/la00014a021, 464-471. ISI IF:3.23

Цитира се в:

96. H. Adamu, M. Shand, R. Taylor, H. Manyar and J.A. Anderson, Use of carbon-based composites to enhance performance of TiO2 for the simultaneous removal of nitrates and organics from aqueous environments, Environ. Sci. Pollut. Res., 25 (2018) 32001 [ISI]., 2018 Линк

97. C. Chen, Y. Cao, S. Liu, J.Chen and W. Jia, SCR catalyst doped with copper for synergistic removal of slip ammonia and elemental mercury, Fuel Process. Technol., 181 (2018) 268 [ISI]., 2018 Линк

98. Y. Chen, S. Tong, J. Wang, C. Peng, M. Ge, X. Xie and J. Sun, Effect of Titanium Dioxide on Secondary Organic Aerosol Formation, Environ. Sci. Technol., 52 (2018) 11612 [ISI]., 2018 Линк

99. K. Fujiwara and S.E. Pratsinis, Single Pd atoms on TiO2 dominate photocatalytic NOx removal, Appl. Catal. B., 226 (2018) 127 [ISI]., 2018 Линк

100. X. Li, W. Zhang, W. Cui, Y. Sun, G. Jiang, Y. Zhang, H. Huang and F. Dong, Bismuth spheres assembled on graphene oxide: Directional charge transfer enhances plasmonic photocatalysis and in situ DRIFTS studies, Appl. Catal. B, 221 (2018) 482 [ISI]., 2018 Линк

Page 9: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 9/154

101. J. Luo, S. Bae, M. Yuan, E. Schneider, M.T. Lanagan, C.G. Pantano and S.H. Kim, Chemical structure and mechanical properties of soda lime silica glass surfaces treated by thermal poling in inert and reactive ambient gases, J. Am. Ceram. Soc., 101 (2018) 2951 [ISI]., 2018 Линк

102. J. Luo, Understanding shear-induced hydrolysis reactions on soda lime silica glass surface, Ph. D. Thesis, Pennsylvania State University, USA, 2018 [GS]., 2018

103. S. Mosallanejad, B.Z. Dlugogorski, E.M. Kennedy and M. Stockenhuber, On the Chemistry of Iron Oxide Supported on γ-Alumina and Silica Catalysts, ACS Omega, 3 (2018) 5362 [ISI]., 2018 Линк

104. K. Tamai, S. Hosokawa, H. Asakura, K. Teramura and T. Tanaka, Low-temperature NOx trapping on alkali or alkaline earth metal modified TiO2 photocatalyst, Catal. Today, (2018), 2018

105. F. Wang, J. Ma, G. He, M. Chen, C. Zhang and H. He, Nanosize Effect of Al2O3 in Ag/Al2O3 Catalyst for the Selective Catalytic Oxidation of Ammonia, ACS Catal., 8 (2018) 2670 [ISI]., 2018 Линк

106. L. Wei, S. Qui, H. Guo and X. Ma, Study on the role of Mn species in low temperature SCR on MnOx/TiO2 through experiment and DFT calculation, Mol. Catal., 445 (2018) 102 [ISI]., 2018 Линк

107. X. Zhang, H. Zhong, L. Xu, S. Wang, H. Chi, Q. Pan and G. Zhang, Fabrication of Co3O4/PEI-GO composites for gas-sensing applications at room temperature, Mater. Res. Bull., 102 (2018) 108 [ISI]., 2018 Линк

108. X. Li, W. Zhang, J. Li, G. Jiang, Y. Zhou, S. Lee and F. Dong, Transformation pathway and toxic intermediates inhibition of photocatalytic NO removal on designed Bi metal defective Bi2O2SiO3, Appl. Catal. B, 241 (2019) 187 [ISI]., 2018 Линк

42. Uzunova E, Klissurski D, Kassabov S. Nickel-Iron Hydroxidecarbonate Precursors in the Synthesis of High-dispersity Oxides. J. Mater. Chem., 4, RSC, 1994, 153. ISI IF:6.6

Цитира се в:

109. Dong, T., Zhang, X., Li, M., Wang, P., Yang, P. Hierarchical flower-like Ni-Co layered double hydroxide nanostructures: Synthesis and super performance (2018) Inorganic Chemistry Frontiers, 5 (12), pp. 3033-3041., 2018 Линк

43. Iordanova, R., Dimitriev, Y., Dimitrov, V., Klissurski, D.. Structure of V2O5-MoO3-Fe2O3 glasses. Journal of Non-Crystalline Solids, 167, 1-2, Elsevier, 1994, ISSN:00223093, DOI:10.1016/0022-3093(94)90369-7, 74-80. SJR:0.753, ISI IF:1.766

Цитира се в:

110. Saetova, N.S., Raskovalov, A.A., Antonov, B.D., Yaroslavtseva, T.V., Reznitskikh, O.G., Zabolotskaya, E.V., Kadyrova, N.I., Telyatnikova, A.A. Conductivity and spectroscopic studies of Li2O-V2O5-B2O3 glasses (2018) Ionics, 24 (7), pp. 1929-1938, 2018 Линк

111. Cha, J., Jeong, H., Ryu, B. Changes in the Electrical Conductivity and Catalytic Property of Vanadium Iron Borophosphate Glasses with Crystallization (2018) Journal of the Korean Physical Society, 72 (10), pp. 1221-1227., 2018 Линк

44. Hadjiivanov, K., Busca, G. Surface Chemistry of Oxidized and Reduced Chromia: a Fourier Transform Infrared Spectroscopy Study. Langmuir, 10, 1994, DOI:10.1021/la00024a025, 4534-4541. ISI IF:3.23

Цитира се в:

112. A.E.A. Said and M.N. Goda, Superior catalytic performance of CaMoO4 catalyst in direct dehydrogenation of methanol into anhydrous formaldehyde, Chem. Phys. Lett., 703 (2018) 44-51 [ISI]., 2018 Линк

113. G.A. Martino, C. Barzan, A. Piovano, A. Budnyk and E. Groppo, Tracking the reasons for the peculiarity of Cr/Al2O3 catalyst in ethylene polymerization, J. Catal., 357 (2018) 206 -212[ISI]., 2018 Линк

1995

45. Valtchev V., Mintova S., Dimov V., Toneva A., Radev D.. Tribochemical activation of seeds for rapid crystallization of zeolite Y. Zeolites, 1995, DOI:10.1016/0144-2449(94)00058-Z, 193-197. ISI IF:1.992

Цитира се в:

114. Mariana V. Rodrigues., Effect of different seed sources on the hydrothermal crystallization of MCM-22 zeolite catalysts., CrystEngComm, 2018, 20, 3467-3475, 2018 Линк

115. Гордина, Н. Е., Izvestiya Vysshikh Uchebnykh Zavedenii. Seriya Khimiya i Khimicheskaya Tekhnologiya . МЕХАНОХИМИЧЕСКАЯ АКТИВАЦИЯ КАК СПОСОБ ИНТЕНСИФИКАЦИИ ПРОЦЕССОВ СИНТЕЗА НИЗКОМОДУЛЬНЫХ ЦЕОЛИТОВ., 2018, Vol. 61 Issue 7, p4-22. 19p., 2018 Линк

46. Panayotov, D., Dimitrov; L., Khristova; M., Petrov; L., Mehandjiev; D.. Reduction of nitric oxide with carbon monoxide on the surface of copper-containing catalysts based on aluminophosphates, silicoaluminosulphates and ZSM-5 zeolite. Applied Catalysis B, Environmental, 6, 1, Elsevier Science B.V., 1995, ISSN:0926-3373, 61-78. ISI IF:7.435

Цитира се в:

Page 10: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 10/154

116. Cheng, X.; Su, D.; Wang, Z.; Ma, C.; Wang, M., "Catalytic reduction of nitrogen oxide by carbon monoxide, methane and hydrogen over transition metals supported on BEA zeolites". International Journal of Hydrogen Energy 2018, 43 (48), 21969-21981, 2018 Линк

47. Terzieva M., Khrussanova M., Peshev P., Radev D.. Hydriding and dehydriding characteristics of mixtures with a high magnesium content obtained by sintering and mechanical alloying. International Journal of Hydrogen Energy, 20, 1, 1995, ISSN:0360-3199, DOI:10.1016/0360-3199(93)E0009-A, 53-58. ISI IF:3.695

Цитира се в:

117. Jee Yun Jung., Synthesis of Mg2FeH6 by hydrogenation of Mg/Fe powder mixture prepared by cold roll milling in air: Effects of microstructure and oxygen distribution., International Journal of Hydrogen Energy, Volume 43, Issue 34, 23 August 2018, Pages 16758-16765, 2018 Линк

48. Naydenov, A., Stoyanova, R., Mehandjiev, D.. Ozone decomposition and CO oxidation on CeO2. Journal of Molecular Catalysis A: Chemical, 98, 1, Elsevier, 1995, DOI:10.1016/1381-1169(94)00060-3, 9-14. ISI IF:3.62

Цитира се в:

118. Zadi, T., Assadi, A.A., Nasrallah, N., Bouallouche, R., Tri, P.N., Bouzaza, A., Azizi, M.M., Maachi, R., Wolbert, D., Treatment of hospital indoor air by a hybrid system of combined plasma with photocatalysis: Case of trichloromethane (2018) Chemical Engineering Journal, 349, pp. 276-286., 2018 Линк

119. Liu, C., Chen, Y., Guo, L., Li, C., Fabrication of surfactant-enhanced metal oxides catalyst for catalytic ozonation ammonia in water (2018) International Journal of Environmental Research and Public Health, 15 (8), art. no. 1654, 2018 Линк

120. Liu, Y., Yang, W., Zhang, P., Zhang, J., Nitric acid-treated birnessite-type MnO2: An efficient and hydrophobic material for humid ozone decomposition (2018) Applied Surface Science, 442, pp. 640-649., 2018 Линк

121. Mao, L., Chen, Z., Wu, X., Tang, X., Yao, S., Zhang, X., Jiang, B., Han, J., Wu, Z., Lu, H., Nozaki, T., Plasma-catalyst hybrid reactor with CeO2/Γ-Al2O3for benzene decomposition with synergetic effect and nano particle by-product reduction (2018) Journal of Hazardous Materials, 347, pp. 150-159., 2018 Линк

49. Uzunov I., Klissurski D., Teocharov L.. Thermal Decomposition of Basic Copper Sulphate Monohydrate. J Therm Anal Calorim, 44, 3, Springer, 1995, ISSN:1388-6150, 685-696. SJR:0.59, ISI IF:2.209

Цитира се в:

122. Cimino S. et al. "Highlighting the effect of the support during H2S adsorption at low temperature over composite Zn-Cu sorbents". Fuel, 221, 2018, 374-379, 2018

1996

50. Hadjiivanov, K., Kantcheva, M., Klissurski, D.. IR study of CO adsorption on Cu-ZSM-5 and CuO/SiO2 catalysts: σ and π components of the Cu+—CO bond. Journal of the Chemical Society, Faraday Transactions, 92, 1996, DOI:10.1039/FT9969204595, 4595-4600. ISI IF:1.757

Цитира се в:

123. J. Woo, K. Leistner, D. Bernin, H. Ahari, M. Shost, M. Zammit and L. Olsson, Effect of various structure directing agents (SDAs) on low-temperature deactivation of Cu/SAPO-34 during NH3-SCR reaction, Catal. Sci. Technol., 8 (2018) 3090 [ISI]., 2018 Линк

124. X. Wang, Partial Oxidation of Methane over Functionalised Zeolites and Zeotypes, Ph. D. Thesis, Chalmers University of Technology, Gothenburg, Sweden, 2018 [GS]., 2018

125. X. Wang, N. Martin, J. Nilsson, S. Carlson, J. Gustafson, M. Skoglundh and P. Carlsson, Copper-Modified Zeolites and Silica for Conversion of Methane to Methanol, Catalysts, 8 (2018) 545 [ISI]., 2018 Линк

126. X. Wang, A. Shishkin, F. Hemmingsson, M. Skoglundh, F. Martinez-Casado, L. Bock, A. Idström, L. Nordstierna, H. Härelind and P. Carlsson, Methane adsorption and methanol desorption of copper modified boron silicate, RSC Adv., 8 (2018) 36369 (SI) [pubs.rsc.org]., 2018 Линк

127. L. Qiang, S. Shanmugan and M. Devarajan, EVALUATION ON THE THERMAL AND STRUCTURAL PROPERTIES OF COPPER ALUMINUM OXIDE (Cu-Al2O3) THIN FILM ON AL SUBSTRATE: EFFECT OF ANNEALING TEMPERATURE, Surf. Rev. Lett., 25 (2018) 1950017 [ISI]., 2018 Линк

128. S. Najafishirtari, C. Guglieri, S. Marras, A. Scarpellini, R. Brescia, M. Prato, G. Righi, A. Franchini, R. Magri, L. Manna and M. Colombo, Metal-support interaction in catalysis: The influence of the morphology of a nano-oxide domain on catalytic activity, Appl. Catal. B, 237 (2018) 753-762 [ISI]., 2018 Линк

129. T. Meng, N. Ren and Z. Ma, Effect of copper precursors on the catalytic performance of Cu-ZSM-5 catalysts in N2O decomposition, Chin. J. Chem. Eng., 26 (2018) 1051-1058 [ISI]., 2018 Линк

130. H. Jun, Spectroscopic studies of Cu-, Zn-based model and practical catalysts for COx hydrogenation, Ph. D. Thesis, Xiamen University, Xiamen, China, 2018 [GS]., 2018

Page 11: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 11/154

131. А. Макарычева, Физико-химические свойства новых хроматографических материалов на основе силохрома с внутрикомплексными соединениями переходных металлов и азот-, кислородсодер-жащих органических лигандов, Диссертация кандидата химических наук, Национальный исследовательский Томский государственный университет, Томск, Русия, 2018 [Disser Cat]., 2018

51. Zhecheva, E., Stoyanova, R., Gorova, M., Alcantara, R., Morales, J., Tirado, J. L.. Lithium-Cobalt Citrate Precursors in the Preparation of Intercalation Electrode Materials. Chemistry of Materials, 8, 7, 1996, ISSN:0897-4756, 1429-1440. ISI IF:8.354

Цитира се в:

132. Lutsenko, I.А., Kiskin, М.А., Alexandrov, G.G., Imshennik, V.K., Maksimov, Y.V., Khoroshilov, A.V., Goloveshkin, A.S., Sidorov, А.А., Eremenko, I.L."Chemical assembly of the heteronuclear pivalate complex with the LiI and FeIII ions". Russian Chemical Bulletin, 67 (3), pp. 449-454, 2018, 2018 Линк

133. Samal, R.; P. P. Dahiya, S. B. Majumder, B. Dash, K. Sanjay, M. Barmi, M. Minakshi "Hexagonal β-Co (OH) 2 Nanoparticle as a Precursor in a Solution-Processed LiCoO 2 and Its Electrochemical Properties" Europe PMC preprints.org (2018) 1-23, 2018 Линк

52. Radev D. D., Marinov M.. Properties of Diborides of Titanium and Zirconium Obtained by Self Propagated High-Temperature Synthesis. Journal of Alloys and Compounds, 244, 1-2, 1996, ISSN:0925-8388, DOI:10.1016/S0925-8388(96)02406-1, 48-51. ISI IF:2.999

Цитира се в:

134. Özge Balcı. "Densification, microstructure and properties of TiB2 ceramics fabricated by spark plasma sintering", Materials Characterization Volume 145, November 2018, Pages 435-443, 2018 Линк

53. Mehandjiev D., Khristova M., Bekyarova E.. Conversion of NO on Co-impregnated active carbon catalysts. Carbon, 34, 6, 1996, DOI:10.1016/0008-6223(96)00015-2, 757-762. ISI IF:6.198

Цитира се в:

135. Wang, L., Cheng, X., Wang, Z., Huang, H., Ma, C., Qin, Y. Effect of the NO + CO reaction on the consumption of carbon supports: An in situ TG-FTIR analysis (2018) Chemical Engineering Journal, 352, pp. 90-102., 2018

136. Gholami, Z., Luo, G. Low-Temperature Selective Catalytic Reduction of NO by CO in the Presence of O2 over Cu:Ce Catalysts Supported by Multiwalled Carbon Nanotubes (2018) Industrial and Engineering Chemistry Research, 57 (27), pp. 8871-8883., 2018

137. Sun, P., Cheng, X., Lai, Y., Wang, Z., Ma, C., Chang, J. NOx reduction by CO over ASC catalysts in a simulated rotary reactor: effect of CO2, H2O and SO2 (2018) RSC Advances, 8 (64), pp. 36604-36615., 2018

54. Vassileva, E., Proinova, I., Hadjiivanov, K.. Solid-phase extraction of heavy metal ions on a high surface area titanium dioxide (anatase). Analyst, 121, 1996, DOI:10.1039/AN9962100607, 607-612. ISI IF:4

Цитира се в:

138. X. Bi, G. Luo, W. Li, J. Zhang, L. Wu, L. Li, G. Zeng and W. Wang, Bi-containing reduced graphene oxide for CdTe solar cells, Solar Energy, 170 (2018) 820 [Scopus]., 2018 Линк

139. N. Fallah, M. Taghizadeh and S. Hassanpour, Selective adsorption of Mo(VI) ions from aqueous solution using a surface-grafted Mo(VI) ion imprinted polymer, Polymer, 144 (2018) 80-91 [ISI]., 2018 Линк

140. R. Sharma and D. Kumar, Nanoadsorbents: An Approach Towards Wastewater Treatment, in Nanotechnology for Sustainable Water Resources (A.K. Mishra and C.M. Hussain, Eds.), John Wiley & Sons, Hoboken, USA, 2018, p. 371 [ISI]., 2018 Линк

141. P.S. Patil, N.D. Nikam and B.S. Mohite, Int. J. Res. Anal. Rev., 5 (2018) 387 [ISI]., 2018

55. Hadjiivanov, K., Klissurski, D., Ramis , G., Busca, G.. Fourier transform IR study of NOx adsorption on a CuZSM-5 DeNOx catalyst. Applied Catalysis B: Environmental, B7, 1996, DOI:10.1016/0926-3373(95)00034-8, 251-267. ISI IF:7.4

Цитира се в:

142. S. Singh and D. Bhatia, Modeling the role of CO and C3H6 in NOx reduction on a Cu-CHA SCR catalystChem. Eng. J. (2019) doi: 10.1016/j.cej.2018.11.009 [ISI]., 2018 Линк

143. W. Suprun, D. Worch and K. Soja, Adsorption of nitrogrnoxides on Ag+, Cu+, and Fe+ oxide supported catalysts, Изв. Санкт-Петерб. Гос. Технол. Инст., 42 (2018) 4., 2018 Линк

56. Hadjiivanov, K., Klissurski, D.. Surface chemistry of titania (anatase) and titania-supported catalysts. Chemical Society Reviews, 25, 1996, DOI:10.1039/CS9962500061, 61-69. ISI IF:33.383

Цитира се в:

144. A. Mehrzad, A. Khakpoor, S. Mortazavi and M. Rasooli, Synthesis and Photocatalytic Activity of TiO2 Monodisperse Nanoparticles at Low Temperatures , J. Nanoelectron. Optoelectron., 13 (2018) 156-162., 2018 Линк

Page 12: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 12/154

145. L. Wang, S. Xu, S. He and F.-S. Xiao, Rational construction of metal nanoparticles fixed in zeolite crystals as highly efficient heterogeneous catalysts, Nano Today, 20 (2018) 74-83., 2018 Линк

146. S. Murphy, Doped Titanium Dioxide Aerogels for Various Catalytic and Photocatalytic Applications, Ph. D. Thesis, University of Connecticut, Storrs, USA, 2018, 2018 Линк

147. I. Naboulsi, B. Lebeau, L. Michelin, C. Carteret, M.i Bonne and J.-L. Blin, Influence of crystallization conditions and of gaseous ammonia treatment on mesoporous TiO2 properties, Microporous Mesoporous, Mater., 262 (2018) 1-12., 2018 Линк

148. L. Mino, F. Pellegrino, S. Rades, J. Radnik, V. Hodoroaba, G. Spoto, V. Maurino and G. Martra, Beyond Shape Engineering of TiO2 Nanoparticles: Post-Synthesis Treatment Dependence of Surface Hydration, Hydroxylation, Lewis Acidity and Photocatalytic Activity of TiO2 Anatase Nanoparticles with Dominant {001} or {101} Facets, ACS Appl. Nano Mater., 1(2018) 5355-5365., 2018 Линк

149. Z. Wang, K. Wang, H. Wang, X. Chen, W. Dai and X. Fu, The correlation between surface defects and the behavior of hydrogen adsorption over ZnO under UV light irradiation, Catal. Sci. Technol., 8 (2018) 3260-3277., 2018 Линк

150. K.M. Omer, N.N. Mohammad and S.O. Baban, Up-Conversion Fluorescence of Phosphorous and Nitrogen Co-Doped Carbon Quantum Dots (CDs) Coupled with Weak LED Light Source for Full-Spectrum Driven Photocatalytic Degradation via ZnO-CDs Nanocomposites, Catal. Lett., 148 (2018) 2746-2755., 2018 Линк

151. Y. Wu, Y. Chen, H. Wang, C. Wang, A. Wang, S. Zhao, X. Li, D. Sun and J. Jiang, Efficient ORR electrocatalytic activity of peanut shell-based graphitic carbon microstructures, J. Mater. Chem. A, 6 (2018) 12 018-12028., 2018 Линк

152. U.S. Santos, Eestudo computacional das interações entre nanopartículas de dióxido de titânio envolvidas no processo de coalescência orientada, Ph. D. Thesis, Universidade federal de São Carlos, São Carlos, Brasil, 2018., 2018 Линк

153. P. Pletcher, A. Welle, A. Vantomme and B.M. Weckhuysen, Quality control for Ziegler-Natta catalysis via spectroscopic fingerprinting, J. Catal., 363 (2018) 128-135., 2018 Линк

154. R. Satheesh, S, Sankar and K.G. Gopchandran, in Plasma and Fusion Science: From Fundamental Research to Technological Applications (B. Raneesh, N. Kalarikkal, J. James and A.K. Nair, Eds.), CRC Press, London, 2018, p. 185., 2018 Линк

155. A. Shakib, Mechanistic Studies of Reducible Metal Oxides as Hydrodeoxygenation Catalysts, Ph. D. Thesis, University of Maine, USA, 2018., 2018 Линк

156. R. Sharma and D. Kumar, Nanoadsorbents: An Approach Towards Wastewater Treatment, in Nanotechnology for Sustainable Water Resources (A.K. Mishra and C.M. Hussain, Eds.), John Wiley & Sons, Hoboken, USA, 2018, p. 371-405., 2018 Линк

157. H. Shi, D. Zeng, J. Li and W. Wang, A melting-like process and the local structures during the anatase-to-rutile transition, Mater. Characterization, 146 (2018) 237-242., 2018 Линк

158. A. Abbasi and J.J. Sardroodi, Adsorption of toxic SOx molecules on heterostructured TiO2/ZnO nanocomposites for gas sensing applications: a DFT study, Adsorption, 24 (2018) 29-41., 2018 Линк

159. X. Sun, B. Tatarchuk, X. Cheng, M. Chi, J. Zheng, Z. Fan and H. Shao, 紫外光辅助吸附脱硫工艺及机理, J. Chem. Eng. Chin. Univ., 32

(2018) 458-463., 2018 Линк

160. I.S. Brandt, C.C. P. Cid, C.G.G. Azevedo, A.L.J. Pereira, L.C. Benetti, A.S. Ferlauto, J.H. Dias da Silva and A.A. Pasa, Influence of substrate on the structure of predominantly anatase TiO2 films grown by reactive sputtering, RSC Adv., 8 (2018) 7062-7071., 2018 Линк

161. W. Wan, X. Nie, M.J. Janik, C. Song and X. Guo, Adsorption, Dissociation and Spillover of Hydrogen over Au/TiO2 Catalysts: The Effects of Cluster Size and Metal-Support Interaction from DFT, J. Phys. Chem. C, 122 (2018) 17895–17916., 2018 Линк

162. M. Ghosh, J. Liu, S.S.C. Chuang and S.C. Jana, Fabrication of Hierarchical V2O5 Nanorods on TiO2 Nanofibers and Their Enhanced Photocatalytic Activity under Visible Light, ChemCatChem., 10 (2018) 3305-3318., 2018 Линк

163. P.M. Kibasomba, S. Dhlamini, M. Maaza, C. Liu, M.M. Rashad, D.A. Rayan and B.W. Mwakikunga, Strain and grain size of TiO2 nanoparticles from TEM, Raman spectroscopy and XRD: The revisiting of the Williamson-Hall plot method, Results Phys., 9 (2018) 628-635., 2018 Линк

164. X. Liu, X. Cao, Y. Liu, X. Li, M. Wang and M. Li, Branched multiphase TiO2 with enhanced photoelectrochemical water splitting activity, Int. J. Hydrogen Energy, 43 (2018) 21365 [ISI]., 2018 Линк

165. A.V. Vyboishchik and I.L. Kostiunina, IOP Conf. Ser.: Mater. Sci. Eng., 451 (2018) 01200 [ISI]., 2018

166. X. Li, K. Li, Y. Peng, X. Li, Y. Zhang, D. Wang, J. Chen and J. Li, Interaction of phosphorus with a FeTiOx catalyst for selective catalytic reduction of NOx with NH3: Influence on surface acidity and SCR mechanism, Chem. Eng. J., 347 (2018) 173-183., 2018 Линк

57. Klissurski, D., Petridis, D., Abadzhieva, N., Hadjiivanov, K.. MoO3 supported on montmorillonite type pillared clays: Characterization, surface acidity and catalytic properties towards the oxidation of methanol. Applied Clay Science, 10, 1996, DOI:10.1016/0169-1317(95)00044-5, 451-459. ISI IF:2.4

Цитира се в:

167. A.E.A. Said and M.N. Goda, Superior catalytic performance of CaMoO4 catalyst in direct dehydrogenation of methanol into anhydrous formaldehyde, Chem. Phys. Lett., 703 (2018) 44-51 [ISI]., 2018 Линк

168. B.K.G. Theng, Clay Mineral Catalysis of Organic Reaction, CRC Press, Boca Raton, USA, 2018 [GB]., 2018 Линк

Page 13: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 13/154

58. Iordanova, R., Dimitriev, Y., Dimitrov, V., Kassabov, S., Klissurski, D.. Glass formation and structure in the V2O5-Bi2O3-Fe2O3 glasses. Journal of Non-Crystalline Solids, 204, Elsevier, 1996, ISSN:00223093, DOI:10.1016/S0022-3093(96)00416-4, 141-150. SJR:0.753, ISI IF:1.766

Цитира се в:

169. Narwal, P., Yadav, A., Dahiya, M.S., Vishal, Rohit, Agarwal, A., Khasa, S. Spectroscopic and thermal properties of Sm3+ doped iron lead bismuthate glasses (2018) AIP Conference Proceedings, 1953, art. no. 090011, 2018 Линк

170. Cha, J., Jeong, H., Ryu, B. Changes in the Electrical Conductivity and Catalytic Property of Vanadium Iron Borophosphate Glasses with Crystallization (2018) Journal of the Korean Physical Society, 72 (10), pp. 1221-1227., 2018 Линк

171. Marzouk, M.A., El-Kheshen, A.A., Sayed Ahmed, S.A., Aboelenin, R.M.M. Spectroscopic Studies on Nano-Single Crystal BiVO4 Glass Ceramic as Dye Degradation for Wastewater Purification (2018) Silicon, 10 (2), pp. 509-517., 2018 Линк

59. Stambolova, I., Konstantinov, K.. The effect of the microstructure, phase and chemical composition on the humidity sensing characteristics of SnO2-Fe2O3 spray deposited thin films using different iron salts. Journal of Materials science, 31, 16, 1996, 4261-4265. SJR:0.8

Цитира се в:

172. Y. Wei, D. Luo; Ch. Zhang, JLiu, Y He, X.-D.Wen, Y Yang, Precursor controlled synthesis of graphene oxide supported iron catalysts for Fischer-Tropsch synthesis 2018Catalysis Science & Technology 8(11) DOI: 10.1039/C8CY00617B, 2018 Линк

60. Panayotov D., Khristova M., Velikova M.. Interactions NO-CO and O2-NO-CO on CuCO2O4/γ-Al2O3 and on γ- Al2O3- and CuCo2O4/γ-Al2O3-supported Pt, Rh and Pt-Rh catalysts, a transient response study. Applied Catalysis B: Environmental, 9, 1-4, 1996, DOI:10.1016/0926-3373(95)00085-2, 107-132. ISI IF:8.328

Цитира се в:

173. Zhang, L., Yao, X., Lu, Y., Sun, C., Tang, C., Gao, F., Dong, L. Effect of precursors on the structure and activity of CuO-CoOx/γ-Al2O3 catalysts for NO reduction by CO (2018) Journal of Colloid and Interface Science, 509, pp. 334-345., 2018 Линк

1997

61. Stambolova, I., Konstantinov, K., Kovacheva, D., Khristov, M., Peshev, P., Donchev, T. Spray pyrolysis deposition of polycrystalline magnesia films and their use as buffer layers in Bi(Pb)-Sr-Ca-Cu-O/MgO/Al2O3 (or glass ceramics) structures. Materials Letters, 30, 5-6, 1997, 333-337. ISI IF:2.437

Цитира се в:

174. Lupan, Oleg, et al. "Properties of a single SnO 2: Zn 2 SnO 4-functionalized nanowire based nanosensor." Ceramics International (2018) 44(5) 4859-4867 ., 2018 Линк

62. Alcantara, R., Lavela, P., Tirado, J. L., Stoyanova, E., Kuzmanova, E., Zhecheva, E.. Lithium-Nickel Citrate Precursors for the Preparation of LiNiO2 Insertion Electrodes. Chemistry of Materials, 9, 10, 1997, ISSN:0897-4756, 2145-2155. ISI IF:8.354

Цитира се в:

175. Chen, C., Eichel, R. A., & Notten, P. H. L. (2018). Ionic conductivity of metal oxides: An essential property for all-solid-state lithium-ion batteries. In Metal Oxide-Based Thin Film Structures (pp. 361-408)., 2018 Линк

63. Kostov, K.L., Gsell, M., Jakob, P., Moritz, T., Widdra, W., Menzel, D.. Observation of a novel high density 3O(2x2) structure on Ru(001). Surface Science, 394, 1-3, Elsevier, 1997, DOI:10.1016/S0039-6028(97)00787-5, L138-L144. ISI IF:1.925

Цитира се в:

176. Goian, V., Schumann, F.O., Widdra, W. Growth and lattice dynamics of ultrathin BaO films on Pt(0 0 1) (2018) Journal of Physics Condensed Matter, 30 (9), art. no. 095001, 2018 Линк

177. Townsend, P.S.M., 2018. Diffusion of light adsorbates on transition metal surfaces (Doctoral dissertation, University of Cambridge)., 2018

64. Braun, J., Kostov, K.L, Witte, G, Surnev, L., Skofronick, J.G., Safron, S.A., Wöll, Ch.. Surface phonon dispersion curves for a hexagonally close packed metal surface: Ru(0001). Surface Science, 372, 1-3, Elsevier, 1997, ISSN:00396028, DOI:10.1016/S0039-6028(96)01108-9, 132-144. SJR:0.768, ISI IF:1.925

Цитира се в:

178. C. Büchner, S. D. Eder, T. Nesse, D. Kuhness, P. Schlexer, G. Pacchioni, J. R. Manson, M. Heyde, B. Holst, and H.-J. Freund, Bending Rigidity of 2D Silica, Physical Review Letters 120, 226101, 2018., 2018 Линк

Page 14: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 14/154

179. Townsend, P.S.M., 2018. Diffusion of light adsorbates on transition metal surfaces (Doctoral dissertation, University of Cambridge)., 2018 Линк

65. Alcantara, R., Lavela, P., Tirado, J. L., Stoyanova, R., Zhecheva, E.. Structure and Electrochemical Properties of Boron-Doped LiCoO2. Journal of Solid State Chemistry, 134, 2, 1997, ISSN:0022-4596, 265-273. ISI IF:2.133

Цитира се в:

180. Chen, T., Li, X., Wang, H., Yan, X., Wang, L., Deng, B., ... & Qu, M. (2018). The effect of gradient boracic polyanion-doping on structure, morphology, and cycling performance of Ni-rich LiNi 0.8 Co 0.15 Al 0.05 O 2 cathode material. Journal of Power Sources, 374, 1-11., 2018 Линк

181. Zhang, M., Tan, M., Zhao, H., Liu, S., Shu, X., Hu, Y., Liu, J., Ran, Q., Li, H., Liu, X. "Enhanced high-voltage cycling stability and rate capability of magnesium and titanium co-doped lithium cobalt oxides for lithium-ion batteries". Applied Surface Science, 458, pp. 111-118, 2018, 2018 Линк

182. Wang, L., Chen, B., Ma, J., Cui, G., Chen, L. "Reviving lithium cobalt oxide-based lithium secondary batteries-toward a higher energy density". Chemical Society Reviews, 47 (17), pp. 6505-6602, 2018, 2018 Линк

183. Yang, M., Zhou, W., Luo, F., Zhu, D. "Dielectric and microwave absorption properties of LiCoO2 and its enhancement by micro-doping with metal ions". Journal of Materials Science: Materials in Electronics, 2018, 2018 Линк

66. Solé, R., Nikolov, V., Koseva, I., Peshev, P., Ruiz, X., Zaldo, C., Martín, M. J., Aguiló M., Díaz, F.. Conditions and Possibilities for Rare-Earth Doping of KTiOPO4 Flux-Grown Single Crystals. Chemistry of Materials, 9, American Chemical Society, 1997, ISSN:1520-5002, DOI:10.1021/cm960644z, 2745-2749. SJR:3.274, ISI IF:8.354

Цитира се в:

184. Gagarskiy, Sergey, et al. "Frequency Conversion in KTP Crystal and Its Isomorphs." Crystals 8.10 (2018): 386., 2018 Линк

67. Djonev, B., Tsyntsarski, B., Klissurski, D., Hadjiivanov, K.. IR spectroscopic study of NOxadsorption and NOx - O2coadsorption on Co2+/SiO2catalysts. Journal of the Chemical Society, Faraday Transactions, 93, 1997, DOI:10.1039/A703955G, 4055-4063. ISI IF:1.708

Цитира се в:

185. A. Bellmann, H. Atia, U. Bentrup and A. Brückner, Mechanism of the selective reduction of NOx by methane over Co-ZSM-5, Appl. Catal. B, 230 (2018) 184 [ISI]., 2018 Линк

186. S. Mosallanejad, B.Z. Dlugogorski, E.M. Kennedy and M. Stockenhuber, On the Chemistry of Iron Oxide Supported on γ-Alumina and Silica Catalysts, ACS Omega, 3 (2018) 5362 [ISI]., 2018 Линк

187. C. Negri, P.S. Hammershøi, T.V.W. Janssens, P. Beato, G. Berlier and S. Bordiga, Investigating the Low Temperature Formation of CuII‐(N, O) Species on Cu‐CHA Zeolites for the Selective Catalytic Reduction of NOx, Chem. Europ. J., 24 (2018) 12044 [ISI]., 2018 Линк

68. Hadjiivanov, K., Lamotte, J., Lavalley, J.-C.. FTIR Study of Low-Temperature CO Adsorption on Pure and Ammonia-Precovered TiO2 (Anatase). Langmuir, 13, 1997, DOI:10.1021/la962104m, 3374-3381. ISI IF:2.85

Цитира се в:

188. Д. Барсуков, Фотоокисление CО и летучих органических соединений на поверхности гидратиро-ванных полупроводниковых катализаторов, Диссертация кандидата химических наук, РАН, Москва, Русия, 2018 [Disser Cat]., 2018

189. M. Fabbiani, M. Pazzi, M. Vincenti, G. Tabacch, E. Fois and G. Martra, Does the Abiotic Formation of Oligopeptides on TiO2 Nanoparticles Require Special Catalytic Sites? Apparently Not, J. Nanosci. Nanotechnol., 18 (2018) 5854 [ISI]., 2018 Линк

190. F. Giraud, J. Couble, C. Geantet, N. Guilhaume, S. Loridant, S. Gros, L. Porcheron, M. Kanniche and D. Bianchi, Experimental Microkinetic Approach of De-NOx by NH3 on V2O5/WO3/TiO2 Catalysts. 6. NH3–H2O Coadsorption on TiO2-Based Solids and Competitive Temkin Model, J. Phys. Chem. C, 122 (2018) 24634 [ISI]., 2018 Линк

191. N. Sankova, V. Semeykina, D. Selishchev, T. Glazneva, E. Parkhomchuk, Y. Larichev and N. Uvarov, Influence of Tetraalkylammonium Compounds on Photocatalytic and Physical Properties of TiO2 , Catal. Lett., 148 (2018) 2391 [ISI]., 2018 Линк

192. F. Liu, Support Stability and Strong Metal-Support Effects in Catalysis: From Nanoparticles to Single Atoms, Ph. D. Thesis, Utrecht University, The Netherlands 2018 [GS]., 2018

69. Bauer, G., Nikolov, G.St., Trendafilova, N.. Molecular structure and vibrational spectra of bis-N,N'-diethyldithiocarbamate compounds with closed-shell metal ions. Journal of Molecular Structure, 415, Elsevier, 1997, 123-134. ISI IF:1.602

Цитира се в:

193. Volokh, M., Diab, M., Flomin, K., Mokari, T., Electrophoretic deposition of single-source precursors as a general approach for the formation of hybrid nanorod array heterostructures, Journal of Colloid and Interface Science, 515, pp. 221-231 (2018)., 2018 Линк

Page 15: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 15/154

70. Nikolov, I., Darkaoui, R., Zhecheva, E., Stoyanova, R., Dimitrov, N., Vitanov, T.. Electrocatalytic activity of spinel related cobaltites MxCo3-xO4 (M = Li, Ni, Cu) in the oxygen evolution reaction. Journal of Electrocnalytical Chemistry, 429, 1-2, 1997, ISSN:0022-0728, 157-166. ISI IF:2.729

Цитира се в:

194. Xie, T., Min, J., Liu, J., Chen, J., Fu, D., Zhang, R., Zhu, K., Lei, M. "Synthesis of mesoporous Co3O4nanosheet-assembled hollow spheres towards efficient electrocatalytic oxygen evolution". Journal of Alloys and Compounds, 754, pp. 72-77, 2018, 2018 Линк

195. Quiñonero, J., Gómez, R. "Iron and cobalt hydroxides: Describing the oxygen evolution reaction activity trend with the amount of electrocatalyst". Electrochimica Acta, 274, pp. 224-232, 2018, 2018 Линк

196. Li, J., Li, X., Luo, Y., Cen, Q., Ye, Q., Xu, X., Wang, F. "Cobalt carbonate hydroxide mesostructure with high surface area for enhanced electrocatalytic oxygen evolution". International Journal of Hydrogen Energy, 43 (20), pp. 9635-9643, 2018, 2018 Линк

197. Zhao, S., Yan, L., Luo, H., Mustain, W., Xu, H. "Recent progress and perspectives of bifunctional oxygen reduction/evolution catalyst development for regenerative anion exchange membrane fuel cells". Nano Energy, 47, pp. 172-198, 2018, 2018 Линк

198. Kim, J.S., Kim, B., Kim, H., Kang, K. "Recent Progress on Multimetal Oxide Catalysts for the Oxygen Evolution Reaction". Advanced Energy Materials, 8 (11), art. no. 1702774, 2018, 2018 Линк

199. Alam, H.M.B., Das, R., Shajahan, M., Atique Ullah, A.K.M., Kibria, A.K.M.F. "Surface characteristics and electrolysis efficiency of a Palladium-Nickel electrode". International Journal of Hydrogen Energy, 43 (4), pp. 1998-2008, 2018, 2018 Линк

200. Man, H.-W., Tsang, C.-S., Li, M.M.-J., Mo, J., Huang, B., Lee, L.Y.S., Leung, Y.-C., Wong, K.-Y., Tsang, S.C.E. "Tailored transition metal-doped nickel phosphide nanoparticles for the electrochemical oxygen evolution reaction (OER)". Chemical Communications, 54 (62), pp. 8630-8633, 2018, 2018 Линк

201. Wang, M.; Dang, Z.; Prato, M.; Shinde, D.V.; De Trizio, L.; Manna, L.; "Ni–Co–S–Se Alloy Nanocrystals: Influence of the Composition on Their in Situ Transformation and Electrocatalytic Activity for the Oxygen Evolution Reaction" ACS Appl. Nano Mater. 1 (2018) 5753–5762, 2018 Линк

202. Xiao, J.; Ge, X.; Liu, J.; Huang, L.; "One-Step Electrodeposition of Nanostructured NiCoOx Films for Highly Efficient Water Oxidation Reaction " . Journal of Nanoscience and Nanotechnology, Volume 18, Number 10, 2018, pp. 7183-7189(7), 2018 Линк

203. Honorato, A.M.B.; Khalid, M.; "Carbon nanomaterials for metal-free electrocatalysis". Applied Chemical Engineering (2018) 1(4) pp 1-6, 2018 Линк

204. Kang, K.E.; Kim, C.H.; Lee, M.S.; Jung, C.W.; Kim, Y.D.; Lee, J.H. "Stability of a Cu0.7Co2.3O4 electrode during the oxygen evolution reaction for alkaline anion-exchange membrane water electrolysis" Journal of the Korean Physical Society 72, Issue 1, pp 52–56, 2018 Линк

205. Rieck genannt Best, F.; Koch, J.; Lilienkamp, G.; Körkemeyer, F.; Maier, H.J.; Caro, J.; Lange, K. "Spiky Nickel Electrodes for Electrochemical Oxygen Evolution Catalysis by Femtosecond Laser Structuring" International Journal of Electrochemistry Volume 2018, Article ID 9875438, 12 pages, 2018 Линк

206. Huang, Q., Li, W., Lin, Q., Zheng, X., Pan, H., Pi, D., Shao, C., Hu, C., Zhang, H. "Catalytic performance of Pd–NiCo2O4/SiO2in lean methane combustion at low temperature". Journal of the Energy Institute, 91 (5), pp. 733-742, 2018, 2018 Линк

207. Merle, G., Abrahams, I., Barralet, J. "Powerful amorphous mixed metal catalyst for efficient water-oxidation". Materials Today Energy, 9, pp. 247-253, 2018, 2018 Линк

208. Singhal, A., Bisht, A., Irusta, S. "Enhanced oxygen evolution activity of Co3−xNixO4compared to Co3O4by low Ni doping". Journal of Electroanalytical Chemistry, 823, pp. 482-491, 2018, 2018 Линк

71. Radev D. D., Blaskob V., Klissurski D., Mitov I., Toneva A.. Effect of the mechanical activation of the reagents on the solid phase synthesis of iron (III) molybdate. Journal of Alloys and Compounds, 256, 1-2, 1997, ISSN:0925-8388, DOI:10.1016/S0925-8388(96)03052-6, 108-111. ISI IF:2.999

Цитира се в:

209. S. Cotte, V. Pelé, B. Pecquenard , F. Le Crasb , R. Griss, L. Bourgeois, M.T. Sougrati, H. Martinez, Iron molybdate thin films prepared by sputtering and their electrochemical behavior in Li batteries, Journal of Alloys and Compounds, 735 (2018) 1454-1462., 2018 Линк

72. Stambolova I., Konstantinov, K., Kovacheva, D., Peshev, P., Donchev, T.. Spray Pyrolysis Preparation and Humidity Sensing Characteristics of Spinel Zinc Stannate Thin Films. Journal of Solid State Chemistry, 2, 1997, ISI IF:2.133

Цитира се в:

210. Thien, Nguyen Duy, Luu Manh Quynh, and Nguyen Ngoc Long. "Phase transformation and photoluminescence of undoped and Eu 3+-doped zinc stannate (Zn 2 SnO 4) nanocrystals synthesized by hydrothermal method." Journal of Materials Science: Materials in Electronics: 1-8., 2018 Линк

211. Lupan, Oleg, et al. "Properties of a single SnO2: Zn2SnO4–Functionalized nanowire based nanosensor." Ceramics International 44.5 (2018): 4859-4867., 2018 Линк

212. Manasa, M. V., et al. "Molybdenum Oxide Nanoparticles: Synthesis, Characterization and Application in Green-House Gas Sensing." Journal of Advanced Physics 7.1 (2018): 70-76., 2018 Линк

Page 16: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 16/154

213. Ivetić, Tamara. "Zinc-Tin-Oxide-Based Porous Ceramics: Structure, Preparation and Properties." Recent Advances in Porous Ceramics. IntechOpen, 2018., 2018 Линк

73. Koleva, V., Stoilova, D., Mehandjiev, M.. On the Formation of Copper Manganese Oxides from CuxMn1-x(HCOO)2.2H2O Mixed Crystals. Journal of Solid State Chemistry, 133, Elsevier, 1997, ISSN:0022-4596, 416-422. ISI IF:2.133

Цитира се в:

214. Ye, Zhiping. (2018) "Plasma-catalytic processes with copper manganese oxide catalysts for the abatement of volatile organic compounds". PhD Thesis. Ghent University; ref. 177, 2018 Линк

1998

74. Mehandjiev, D., Zhecheva, E., Ivanov, G., Ioncheva, R.. Preparation and catalytic activity of nickel-manganese oxide catalysts with an ilmenite-type structure in the reactions of complete oxidation of hydrocarbons. Applied Catalysis A: General, 167, 2, 1998, ISSN:0926-860x, 277-282. SJR:1.234, ISI IF:3.19

Цитира се в:

215. Sanchez, J.S., Pendashteh, A., Palma, J., Anderson, M., Marcilla, R. "Synthesis and application of NiMnO3-rGO nanocomposites as electrode materials for hybrid energy storage devices" (2018). Applied Surface Science, 460, pp. 74-83, 2018 Линк

216. Duplančić, M., Tomašić, V., Gomzi, Z. "Catalytic oxidation of toluene: comparative study over powder and monolithic manganese-nickel mixed oxide catalysts" (2018). Environmental Technology (United Kingdom), 39 (15), pp. 2004-2016, 2018 Линк

217. Jha, M., Kumar, S., Garg, N., Ramanujachary, K.V., Lofland, S.E., Ganguli, A.K. "Microemulsion based approach for nanospheres assembly into anisotropic nanostructures of NiMnO3and their magnetic properties" (2018) Journal of Solid State Chemistry, 258, pp. 722-727, 2018 Линк

75. Stoyanova, D., Christova, M., Dimitrova, P, Marinova, J., Kasabova, N., Panayotov, D.. Copper–cobalt oxide spinel supported on high-temperature aluminosilicate carriers as catalyst for CO–O2 and CO–NO reactions. Applied Catalysis B: Environmental, 17, 3, Elsevier Science B.V., 1998, ISSN:0926-3373, DOI:http://dx.doi.org/10.1016/S0926-3373(98)00011-3, 233-244. SJR:3.15, ISI IF:7.435

Цитира се в:

218. Lingling Zhang, Xiaojiang Yao, Yiyang Lu, Chuanzhi Sun, Changjin Tan, Fei Gao, Lin Dong, “Effect of precursors on the structure and activity of CuO-CoOx /γ-Al2O3 catalysts for NO reduction by CO” , Journal of Colloid and Interface Science •2018, 509:334-345 DOI: 10.1016/j.jcis.2017.09.031, 2018

219. Srashti Jain, Apurva Patrike, Satish Shivaji Badadhe, Monika Bhardwaj, Satishchandra Ogale, “Room-Temperature Ammonia Gas Sensing Using Mixed-Valent CuCo2O4 Nanoplatelets: Performance Enhancement through Stoichiometry Control”, ACS Omega 2018, 3, 1977-1982. DOI 10.1021/acsomega.7b01958, 2018

220. Waqas, M., El Kasmi, A., Wang, Y., Mountapmbeme Kouotou, P., Tian, Z.-Y. “CVD synthesis of Cu-doped cobalt spinel thin film catalysts for kinetic study of propene oxidation”, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 556, 5, 2018, p: 195-200, 2018

221. Hari Prasad Reddy Kannapu, Young-Woong Suh, Veeralakshmi Vaddeboina, Anand Narani, David Raju Burri, Seetha Rama Rao Kamaraju, Characterization and Application of Nanomaterials, Online 2018; DOI: 10.24294/can.v0i0.523, 2018 Линк

76. Dimitrov, D., Tzocheva, D., Kovacheva, D.. Calorimetric study of amorphous Sb-Se thin films. Thin Solid Films, 323, 1-2, 1998, ISSN:0040-6090, 79-84. ISI IF:1.759

Цитира се в:

222. Tiwari, Kunal J., et al. "Mechanochemical bulk synthesis and e-beam growth of thin films of Sb 2 Se 3 photovoltaic absorber." Solar Energy 160 (2018): 56-63., 2018 Линк

223. Rao, Vandita, et al. "Effect of antimony on glass transition and thermal stability of Se 78− x Te 18 Sn 2 Sb x (x = 0, 2, 4 and 6 at.%) multicomponent glassy alloys." (2018) Journal of Thermal Analysis and Calorimetry: 1-8., 2018 Линк

224. Yadav, Sarish, et al. "Study of thermal stability in Se90Sb10-xAgx glassy alloys." Indian Journal of Pure & Applied Physics (IJPAP) 56.11 (2018): 884-889., 2018 Линк

77. Hadjiivanov, K.. FTIR study of CO and NH3 co-adsorption on TiO2 (rutile). Applied Surface Science, 135, 1998, DOI:10.1016/S0169-4332(98)00298-0, 331-338. ISI IF:1.045

Цитира се в:

225. D.M. Driscoll, D. Troya, P.M. Usov, A.J. Maynes, A.J. Morris and J.R. Morris, Characterization of Undercoordinated Zr Defect Sites in UiO-66 with Vibrational Spectroscopy of Adsorbed CO , J. Phys. Chem. C, 122 (2018) 14582 [ISI]., 2018 Линк

226. F. Jiang, Y. Yu, A. Feng and L. Song, Effects of ammonia on graphene preparation via microwave assisted intercalation exfoliation method , Ceram. Int., 44 (2018) 12763 [ISI]., 2018 Линк

Page 17: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 17/154

227. W. Li, D. He, G. Hu, X. Li, G. Banerjee, J. Li, S.H. Lee, Q. Dong, T. Gao, G.W. Brudvig, M.M. Waegele, D. Jiang and D. Wang, Selective CO Production by Photoelectrochemical Methane Oxidation on TiO2 , ACS Cent. Sci., 4 (2018) 631 [ISI]., 2018 Линк

228. W. Li, Understanding and Controlling Photoelectrode Surface for Solar Fuel Production and Beyond, Ph. D. Thesis, Boston College, Boston, USA, 2018 [GS]., 2018

229. A. Wanag, P. Rokicka, E. Kusiak-Nejman, J. Kapica-Kozar, R.J. Wrobel, A. Markowska-Szczupak and A.W. Morawski, Antibacterial properties of TiO2 modified with reduced graphene oxide , Ecotoxicol. Environ. Safety, 147 (2018) 788., 2018 Линк

230. Y. Yang, M. Faheem, L. Wang, Q. Meng, H. Sha, N. Yang, Y. Yuan and G. Zhu, Surface Pore Engineering of Covalent Organic Frameworks for Ammonia Capture through Synergistic Multivariate and Open Metal Site Approaches , ACS Cent. Sci., 4 (2018) 748 [ISI]., 2018 Линк

231. F. Liu, Support Stability and Strong Metal-Support Effects in Catalysis: From Nanoparticles to Single Atoms, Ph. D. Thesis, Utrecht University, The Netherlands 2018 [GS]., 2018

78. Kovacheva, D., Petrov, K.. Preparation of crystalline ZnSnO3 from Li2SnO3 by low-temperature ion exchange. Solid State Ionics, 109, 3-4, 1998, ISSN:0167-2738, 327-332. ISI IF:2.561

Цитира се в:

232. Shu, Shaoming, Chao Wang, and Shantang Liu. "Facile synthesis of perfect ZnSn (OH) 6 octahedral microcrystallines with controlled size and high sensing performance towards ethanol." Frontiers of Materials Science 12.2 (2018): 176-183., 2018 Линк

233. Vladut, Cristina Maria, et al. "Thermal investigations of the Sn–Zn–O gels obtained by sol–gel method." Journal of Thermal Analysis and Calorimetry (2018): 1-10., 2018 Линк

234. Rovisco, Ana, et al. "Seed-Layer Free Zinc Tin Oxide Tailored Nanostructures for Nanoelectronic Applications: Effect of Chemical Parameters." ACS applied nano materials 1.8 (2018): 3986-3997., 2018 Линк

79. Hadjiivanov, K., Lavalley, J.-C., Lamotte, J., Mauge, F., Saint-Just , J., Che, M.. FTIR Study of CO Interaction with Ru/TiO2Catalysts. Journal of Catalysis, 176, 1998, DOI:10.1006/jcat.1998.2038, 415-425. ISI IF:2.99

Цитира се в:

235. J. An, Y. Wang, J. Lu, J. Zhang, Z. Zhang, S. Xu, X. Liu, T. Zhang, M. Gocyla, M. Heggen, R.E. Dunin-Borkowski, P. Fornasiero and F. Wang. "Acid-Promoter-Free Ethylene Methoxycarbonylation over Ru-Clusters/Ceria: The Catalysis of Interfacial Lewis Acid–Base Pair". J. Am. Chem. Soc., 140 (2018) 4172, 2018 Линк

236. M. Guo, J. Peng, Q. Yang and C. Li. "Highly Active and Selective RuPd Bimetallic NPs for the Cleavage of the Diphenyl Ether C-O Bond". ACS Catal. (2018) 11174, 2018 Линк

237. E. Jiménez-Barrera, P. Bazin, C. Lopez-Cartes, F. Romero-Sarria, M. Daturi and J.A. Odriozola. "CO/H2 adsorption on a Ru/Al2 O3 model catalyst for Fischer Trospch: Effect of water concentration on the surface species". Appl. Catal. B, 237 (2018) 986, 2018 Линк

238. G. Lan, Y. Zhou, H. Shen, H. Tang ans Y. Li. "Formation mechanism of highly dispersed semi-embedded ruthenium nanoparticles in porous carbon matrix determined by in situ temperature-programmed infrared spectroscopy ". Chin. J. Catal., 39 (2018) 146, 2018 Линк

239. Z. Zheng, Z. Luo and C. Zhao. "Morphologically Cross-Shaped Ru/HZSM-5 Catalyzes Tandem Hydrogenolysis of Guaiacol to Benzene in Water". ChemCatChem, 10 (2018) 1376, 2018 Линк

240. F. Liu, Support Stability and Strong Metal-Support Effects in Catalysis: From Nanoparticles to Single Atoms, Ph. D. Thesis, Utrecht University, The Netherlands 2018 [GS]., 2018

80. Witte, G., Weiss, K., Jakob, P., Braun, J., Kostov, K.L., Wöll, Ch.. Damping of molecular motion on a solid substrate: evidence for electron-hole pair creation. Physical review letters, 80, 1, American Physical Society, 1998, ISSN:0031-9007, DOI:10.1103/PhysRevLett.80.121, 121-124. ISI IF:7.645

Цитира се в:

241. Butt, H.J. and Kappl, M., 2018. Surface and interfacial forces. John Wiley & Sons., 2018 Линк

242. Benedek, G. and Toennies, J.P., 2018. Experimental Results: Vibrations of Adsorbates and Thin Films. In Atomic Scale Dynamics at Surfaces (pp. 441-486). Springer, Berlin, Heidelberg., 2018 Линк

81. Hadjiivanov , K., H. Knözinger. Low-temperature CO Adsorption on Ag+/SiO2 and Ag–ZSM-5: An FTIR Study. J. Phys. Chem. B, 102, 52, American Chemical Society, 1998, DOI:10.1021/jp983367n, 10936-10940. ISI IF:2.693

Цитира се в:

243. E. Kolobova, Y. Kotolevich, E. Pakrieva, G. Mamontov, M.H. Farias, V.C. Corberán, N. Bogdanchikova, J. Hemming, A. Smeds, P. Mäki-Arvela, D.Yu. Murzin and A. Pestryakov. "Modified Ag/TiO2 systems: Promising catalysts for liquid-phase oxidation of alcohols". Fuel, 234 (2018) 110, 2018 Линк

244. N. Popovych, O. Larina, S. Orlyk, P. Kyriienko, S. Soloviev and S. Dzwigaj. "Design of Bifunctional Catalysts Based on Bea Zeolites for Tandem Processes with Participation of Ethanol". Theor. Exp. Chem., 54 (2018) 255, 2018 Линк

Page 18: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 18/154

82. Hadjiivanov, K., Saussey, J., Freysz, J.-L., Lavalley, J.-C.. FT-IR study of NO + O2 co-adsorption on H-ZSM-5: re-assignment of the 2133 cm-1 band to NO+ species. Catalysis Letters, 52, 1, Springer International Publishing AG, 1998, DOI:10.1023/A:1019059117488, 103-108. ISI IF:2.307

Цитира се в:

245. O. Mihai, L. Trandafilović, T. Wentworth, F.F. Torres and L. Olsson. "The Effect of Si/Al Ratio for Pd/BEA and Pd/SSZ-13 Used as Passive NOx Adsorbers" Top. Catal. 61 (2018) 2007-2020., 2018 Линк

246. K. Khivantsev, F. Gao, L. Kovarik, Y. Wang and J. Szanyi. "Palladium/Beta zeolite passive NOx adsorbers (PNA): Clarification of PNA chemistry and the effects of CO and zeolite crystallite size on PNA performance" J. Phys. Chem. C, 122 (2018) 10820., 2018 Линк

247. C. Negri, P.S. Hammershøi, T.V.W. Janssens, P. Beato, G. Berlier and S. Bordiga. "Investigating the Low Temperature Formation of CuII-(N, O) Species on Cu-CHA Zeolites for the Selective Catalytic Reduction of NOx " Chem. Europ. J., 24 (2018) 12044, 2018 Линк

248. M. Bendrich, A. Scheuer, R.E. Hayes, M. Votsmeier, "Unified mechanistic model for Standard SCR, Fast SCR, and NO2 SCR over a copper chabazite catalyst" Appl. Catal. B, 222 (2018) 76, 2018 Линк

249. S. Tang, L. Ma, M. Luo, Z. Zhang, X. Cao, Z. Huang, R. Xia, Y. Qiu, S. Feng, P. Zhang, C. Xia, Y. Jin and D. Xu. "Heterogeneous reaction of Cl2 and NO2 on Γ-Al2 O3 : A potential formation pathway of secondary aerosols". Atmospher. Environ., 188 (2018) 25, 2018 Линк

250. G. Zhao, E. Kennedy and M. Stockenhuber. "Direct oxidation of methane to value -added products using N2O over Fe-ZSM-5, Fe-Beta and Fe-FER catalysts". Proc., 8th Tokyo Conf. Adv. Catal. Sci. Technol. (TOCAT8), August 5-10, 2018, Yokohama, Japan, OF114, 2018 Линк

251. X. Li, W. Zhang, W. Cui, Y. Sun, G. Jiang, Y. Zhang, H. Huang and F. Dong, "Bismuth spheres assembled on graphene oxide: Directional charge transfer enhances plasmonic photocatalysis and in situ DRIFTS studies" Appl. Catal. B, 221 (2018) 482-489., 2018 Линк

252. K. Khivantsev, N. Jaegers, L. Kovarik, J. Hanson, F. Tao, Y. Tang, X. Zhang, I. Koleva, H. Aleksandrov, G. Vayssilov, Y. Wang, F. Gao and J. Szanyi, Achieving Atomic Dispersion of Highly Loaded Transition Metals in Small‐Pore Zeolite SSZ‐13: High‐Capacity and High‐Efficiency Low‐Temperature CO and Passive NOx Adsorbers, Angew. Chem. Int. Ed., 57 (2018) 16672 [ISI]., 2018 Линк

83. Iordanova, R., Dimitriev, Y., Dimitrov, V., Kassabov, S., Klissurski, D.. Glass formation and structure in the MoO3-Bi2O3-Fe2O3 glasses. Journal of Non-Crystalline Solids, 231, 3, Elsevier, 1998, ISSN:00223093, DOI:10.1016/S0022-3093(98)00456-6, 227-233. SJR:0.753, ISI IF:1.766

Цитира се в:

253. Rao, M.V.S., Kumar, A.S., Ram, G.C., Tirupataiah, C.H., Rao, D.K. Assessment of role of iron ions on the physical and spectroscopic properties of multi-component Na2O-PbO-Bi2O3-SiO2 glass ceramics (2018) Phase Transitions, 91 (1), pp. 91-107., 2018 Линк

254. Lenkennavar, S.K., Madhu, A., Eraiah, B., Kokila, M.K. Structural properties of alkaline sodium lead fluoride borate glasses incorporated with Praseodymium ion (2018) AIP Conference Proceedings, 1953, art. no. 090025, ., 2018 Линк

255. Koçyiğit, S. Boron and praseodymium doped bismuth oxide nanocomposites: Preparation and sintering effects (2018) Journal of Alloys and Compounds, 740, pp. 941-948., 2018 Линк

256. Rajaramakrishna, R., Ruangtawee, Y., Kaewkhao, J. Sm3+-doped molybdenum gadolinium borate glasses for orange emission laser active medium (2018) Ukrainian Journal of Physics, 63 (8), pp. 721-732., 2018 Линк

84. Khristova M., Mehandjiev D.. Conversion of NO on a Ni impregnated-active carbon catalyst in the presence of oxygen (1998) Carbon, 36 (9), pp. 1379-1385. Carbon, 36, 9, 1998, 1379-1385. ISI IF:6.198

Цитира се в:

257. Wang, L., Cheng, X., Wang, Z., Huang, H., Ma, C., Qin, Y. Effect of the NO + CO reaction on the consumption of carbon supports: An in situ TG-FTIR analysis (2018) Chemical Engineering Journal, 352, pp. 90-102., 2018

85. Hadjiivanov , K.. IR Study of CO and NOx Sorption on Ag–ZSM-5. Microporous and Mesoporous Materials, 24, 1-3, Elsevier, 1998, DOI:doi:10.1016/S1387-1811(98)00147-4, 41-49. ISI IF:3.453

Цитира се в:

258. E. Kolobova, Y. Kotolevich, E. Pakrieva, G. Mamontov, M.H. Farias, V.C. Corberán, N. Bogdanchikova, J. Hemming, A. Smeds, P. Mäki-Arvela, D.Yu. Murzin and A. Pestryakov. "Modified Ag/TiO2 systems: Promising catalysts for liquid-phase oxidation of alcohols". Fuel, 234 (2018) 110, 2018 Линк

259. Q. Li, S. Gao, J. Hu, H. Wang and Z. Wu. "Superior NOx photocatalytic removal over hybrid hierarchical Bi/BiOI with high non-NO2 selectivity: Synergistic effect of oxygen vacancies and bismuth nanoparticles". Catal. Sci. Technol., 8 (2018) 5270, 2018 Линк

260. Y.-X. Li, S.-S. Li, D.-M. Xue, X.-Q. Liu, M.-M. Jin and L.-B. Sun. "Incorporation of Cu(ii) and its selective reduction to Cu(i) within confined spaces: Efficient active sites for CO adsorption". J. Mater. Chem. A, 6 (2018) 8930, 2018 Линк

Page 19: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 19/154

86. Alcantara, R., Lavela, P., Tirado, J. L., Stoyanova, R., Zhecheva, R.. Changes in structure and cathode performance with composition and preparation temperature of lithium cobalt nickel oxide. Journal of the Electrochemical Society, 145, 3, 1998, ISSN:0013-4651, 730-736. ISI IF:2.76

Цитира се в:

261. Li, X., Long, J., Su, Z., Wang, R., Xu, C., Lei, J. "Preparation and electrochemical performances of xLi2MnO3·(1-x) LiNi0.45Co0.2Mn0.35O2(0 ≤ x ≤ 1) for high-power lithium-ion batteries". Ceramics International, 44 (14), pp. 17062-17068, 2018, 2018 Линк

1999

87. Hadjiivanov, K., Tsyntsarski, B., Nikolova, T.. Stability and reactivity of the nitrogen-oxo species formed after NO adsorption and NO+O2 coadsorption on Co-ZSM-5: An FTIR spectroscopic study. Physical Chemistry Chemical Physics, 1, 1999, DOI:10.1039/A904992D, 4521-4528. ISI IF:4.49

Цитира се в:

262. A. Bellmann, H. Atia, U. Bentrup and A. Brückner. "Mechanism of the selective reduction of NOx by methane over Co-ZSM-5". Appl. Catal. B, 230 (2018) 184, 2018 Линк

88. Alcantara, R., Lavela, P., Tirado, J. L., Zhecheva, E., Stoyanova, R.. Recent advances in the study of layered lithium transition metal oxides and their application as intercalation electrodes. Journal of Solid State Electrochemistry, 3, 3, 1999, ISSN:1432-8488, 121-134. ISI IF:2.446

Цитира се в:

263. Ding, C.-C., Wu, S.-Y., Xu, Y.-Q., Zhang, L.-J. "Studies on the local structures for the trigonal Ni3+centers in cathode materials LiAlyCo1–yO2(y = 0, 0.1, 0.5, and 0.8)". Magnetic Resonance in Chemistry, 56 (9), pp. 803-809, 2018, 2018 Линк

264. Mohammadi, H., Khosravi, M., Jafari, S.M. "Lithium cobalt oxide as lithium ion battery cathode materials prepared by flame spray pyrolysis method". Analytical and Bioanalytical Electrochemistry, 10 (1), pp. 1-17, 2018, 2018 Линк

89. Tyuliev, G., Kostov, K.L.. XPS/HREELS study of NiO films grown on Ni(111). Physical Review B, 60, 4, American Physical Society, 1999, DOI:10.1103/PhysRevB.60.2900, 2900-2907. ISI IF:3.736

Цитира се в:

265. Liu, L., Wang, S., Liu, S., Guo, Q. and Guo, J., Interaction of water with faceted NiO (1 1 1) surface tuned by films thickness. Surface Science, 667, pp.8-12, 2018., 2018

266. Zhang, H., Wang, W., Chen, M. and Wan, H., Reaction of propane with the ordered NiO/Rh (1 1 1) studied by XPS and LEISS. Applied Surface Science, 439, pp.569-576, 2018., 2018

267. Zheng, L., Bao, C., Lei, S., Wang, J., Li, F., Sun, P., Huang, N., Fang, L. and Sun, X., 2018. In situ growing CNTs encapsulating nickel compounds on Ni foils with ethanol flame method as superior counter electrodes of dye-sensitized solar cells. Carbon, 133, pp.423-434., 2018

268. Noh, M.C., Kim, J., Doh, W.H., Kim, K.J. and Park, J.Y., 2018. Reversible Oxygen‐Driven Nickel Oxide Structural Transition on the Nickel (1 1 1) Surface at Near‐Ambient Pressure. ChemCatChem, 10(9), pp.2046-2050., 2018

269. Kaichev, V.V., Saraev, A.A., Gladky, A.Y., Prosvirin, I.P., Knop-Gericke, A. and Bukhtiyarov, V.I., 2018. In Situ Study of Self-sustained Oscillations in Propane Oxidation and Propane Steam Reforming with Oxygen Over Nickel. Catalysis Letters, pp.1-9, 2018

270. Duan Yuan; Chen Mingshu; Wan Huilin Adsorption and Activation of O-2 and CO on the Ni(111) Surface ACTA PHYSICO-CHIMICA SINICA Volume: 34 Issue: 12 Pages: 1358-1365 Published: 2018, 2018 Линк

90. Spassova I., Khristova M., Panayotov D., Mehandjiev D.. Coprecipitated CuO-MnOx for Low-Temperature CO-NO and CO-NO-O2 Reactions. Journal of Catalysis, 185, 1, Elsevier, 1999, 43-57. ISI IF:6.921

Цитира се в:

271. Norsic, C., Tatibouët, J. M., Batiot-Dupeyrat, C., & Fourré, E. (2018). Methanol oxidation in dry and humid air by dielectric barrier discharge plasma combined with MnO2–CuO based catalysts. Chemical Engineering Journal, 347, 944-952., 2018

272. Gholami, Z., & Luo, G. (2018). Low-Temperature Selective Catalytic Reduction of NO by CO in the Presence of O2 over Cu: Ce Catalysts Supported by Multiwalled Carbon Nanotubes. Industrial & Engineering Chemistry Research, 57(27), 8871-8883., 2018

273. Cheng, X., Zhang, X., Su, D., Wang, Z., Chang, J., & Ma, C. (2018). NO reduction by CO over copper catalyst supported on mixed CeO2 and Fe2O3: Catalyst design and activity test. Applied Catalysis B: Environmental, 239, 485-501., 2018

274. Yamashita, S., Yamamoto, Y., Kawabata, H., Niwa, Y., Katayama, M., & Inada, Y. (2018). Dynamic chemical state conversion of nickel species supported on silica under CO–NO reaction conditions. Catalysis Today, 303, 33-39., 2018

275. Liu, K., Yu, Q., Qin, Q., & Wang, C. (2018). Selective catalytic reduction of nitric oxide with carbon monoxide over alumina-pellet-supported catalysts in the presence of excess oxygen. Environmental technology, 39(15), 1878-1885., 2018

Page 20: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 20/154

276. Singh, S., & Bhatia, D. (2018). Modeling the role of CO and C3H6 in NOx reduction on a Cu-CHA SCR catalyst. Chemical Engineering Journal. https://doi.org/10.1016/j.cej.2018.11.009, 2018

277. Zhao, H., Zhou, X., Huang, W., Pan, L., Wang, M., Li, Q., ... & Chen, H. (2018). Effect of Potassium Nitrate Modification on the Performance of Copper‐Manganese Oxide Catalyst for Enhanced Soot Combustion. ChemCatChem, 10(6), 1455-1463., 2018

91. Hadjiivanov , K., Mihaylov, M., Klissurski, D., Stefanov, P., P. N. Abadjieva, E. Vassileva, L. Minchev. Characterization of Ni/SiO2 Catalysts Prepared by Successive Deposition - Reduction of Ni2+ Ions. Journal of Catalysis, 185, 2, Elsevier, 1999, DOI:doi:10.1006/jcat.1999.2521, 314-323. ISI IF:6.921

Цитира се в:

278. Escobar, J., Barrera, M.C., Gutiérrez, A.W., Cortés-Jacome, M.A., Angeles-Chávez, C., Toledo, J.A., Solís-Casados, D.A., Highly active P-doped sulfided NiMo/alumina HDS catalysts from Mo-blue by using saccharose as reducing agents precursor, (2018) Applied Catalysis B: Environmental, 237, pp. 708-720., 2018 Линк

279. Umegaki, T., Yamamoto, Y., Xu, Q., Kojima, Y., Influence of the Water/Titanium Alkoxide Ratio on the Morphology and Catalytic Activity of Titania–Nickel Composite Particles for the Hydrolysis of Ammonia Borane, (2018) ChemistryOpen, 7 (8), pp. 611-616., 2018 Линк

280. Li, F.-X., Wang, X.-F., Zheng, Y., Chen, J.-X., Influence of metallic promoters on the performance of Ni/SiO2 catalyst in the hydrodeoxygenation of anisole (2018) Ranliao Huaxue Xuebao/Journal of Fuel Chemistry and Technology, 46 (1), pp. 75-83., 2018 Линк

281. Yang, Z., Wei, X.-Y., Zhang, M., Zong, Z.-M., Catalytic hydroconversion of aryl ethers over a nickel catalyst supported on acid-modified zeolite 5A, (2018) Fuel Processing Technology, 177, pp. 345-352., 2018 Линк

282. Li, B., Lin, X., Luo, Y., Yuan, X., Wang, X., Design of active and stable bimodal nickel catalysts for methane reforming with CO2 (2018) Fuel Processing Technology, 176, pp. 153-166., 2018 Линк

283. Carraro, P.M., Sapag, K., Oliva, M.I., Eimer, G.A., Comparative study of hydrogen storage on metal doped mesoporous materials (2018) Chemical Physics Letters, 701, pp. 93-97. DOI: 10.1016/j.cplett.2018.04.044, 2018 Линк

284. R. Henry, M. Komurcu, Y. Ganjkhanlou, R.Y. Brogaard, L. Lu, K.-J. Jens, G. Berlier and U. Olsbye, Ethene oligomerization on nickel microporous and mesoporous-supported catalysts: Investigation of the active sites, Catal. Today, 299 (2018) 154 [ISI]., 2018 Линк

285. X.H. Lu, Y. Shen, J. He, R. Jing, P.P. Tao, A. Hu, R.F. Nie, D. Zhou and Q.H. Xia, Selective hydrogenation of benzoic acid to cyclohexane carboxylic acid over microwave-activated Ni/carbon catalysts, Mol. Catal., 444 (2018) 53 [ISI]., 2018 Линк

286. X. Wang and J. Chen., Effects of indium on Ni/SiO2 catalytic performance in hydrodeoxygenation of anisole as model bio-oil compound: Suppression of benzene ring hydrogenation and C–C bond hydrogenolysis, Chin. J. Catal., 38 (2018) 1818 [ISI]., 2018 Линк

287. S. Moussa, P. Concepción, M.A. Arribas and A. Martinez, Nature of Active Nickel Sites and Initiation Mechanism for Ethylene Oligomerization on Heterogeneous Ni-beta Catalysts, ACS Catal., 8 (2018) 3903 [ISI]., 2018 Линк

288. P. Concepción, in Infrared Spectroscopy - Principles, Advances, and Applications, IntechOpen, 2018, p. 1 [ISI]., 2018

289. M.J. Menart, The Role of Acidity in Heterogeneous Nickel Catalysts for the Oligomerization of Light Olefins, Ph. D. Thesis, Colorado School of Mines, USA, 2018 [GS]., 2018

290. L. Wang, F. Li, Y. Chen and J. Chen, Selective hydrogenation of acetylene on SiO2-supported Ni-Ga alloy and intermetallic compound, J. Energy Chem., 29 (2018) 40-49 [ISI]., 2018 Линк

92. Zhecheva, E. N., Gorova, M. Y., Stoyanova, R. K.. Microstructure of Li (1 + x)Mn(2 -x) O4 spinels obtained from metal- organic precursors. Journal of Materials Chemistry, 9, 7, 1999, ISSN:0959-9428, 1559-1567. ISI IF:6.626

Цитира се в:

291. Michalska, M., Ziółkowska, D.A., Jasiński, J.B., Lee, P.-H., Ławniczak, P., Andrzejewski, B., Ostrowski, A., Bednarski, W., Wu, S.-H., Lin, J.-Y. "Improved electrochemical performance of LiMn2O4 cathode material by Ce doping". Electrochimica Acta, 276, pp. 37-46, 2018, 2018 Линк

93. Hadjiivanov , K., H. Knözinger. FTIR Spectroscopic Evidence of Formation of Geminal Dinitrogen Species during the Low-temperature N2 Adsorption on NaY Zeolites. Catalysis Letters, 58, 1, Springer US, 1999, ISSN:1011-372X, DOI:10.1023/A:1019040825491, 21-26. ISI IF:2.307

Цитира се в:

292. R.L. Hudson "N2 Chemistry in Interstellar and Planetary Ices: Radiation-driven Oxidation". Astrophys. J., 867 (2018) 160, 2018 Линк

94. Hadjiivanov , K., H. Knözinger, B. Tsyntsarski, L. Dimitrov. Effect of Water on the Reduction of NOx with Propane on Fe–ZSM-5. An FTIR Mechanistic Study. Catalysis Letters, 62, 1, Springer US, 1999, ISSN:1011-372X, DOI:10.1023/A:1019034619440, 35-40. ISI IF:2.307

Цитира се в:

Page 21: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 21/154

293. Y. Song, H. Wang, J. Xiong, B. Guo, S. Liang and L. Wu, Photocatalytic hydrogen evolution over monolayer H1. 07Ti1. 73O4· H2O nanosheets: Roles of metal defects and greatly enhanced performances, Appl. Catal. B, 221 (2018) 473 [ISI]., 2018 Линк

294. S. Wang, H. Persson, W. Yang and P. Jonsson. "Effect of H2 as Pyrolytic Agent on the Product Distribution during Catalytic Fast Pyrolysis of Biomass Using Zeolites" Energy Fuels 32 (2018) 8530–8536., 2018 Линк

295. X. Wang, Partial Oxidation of Methane over Functionalised Zeolites and Zeotypes, Ph. D. Thesis, Chalmers University of Technology, Gothenburg, Sweden, 2018 Линк

95. Hadjiivanov , K., B.M. Reddy, H. Knözinger. FTIR study of low-temperature adsorption and co-adsorption of 12CO and 13CO on a TiO2–SiO2 mixed oxide. Applied Catalysis A: General, 188, 1-2, Elsevier, 1999, DOI:10.1016/S0926-860X(99)00234-3, 355-360. ISI IF:3.942

Цитира се в:

296. L. Mino, F. Pellegrino, S. Rades, J. Radnik, V. Hodoroaba, G. Spoto, V. Maurino and G. Martra. "Beyond Shape Engineering of TiO2 Nanoparticles: Post-Synthesis Treatment Dependence of Surface Hydration, Hydroxylation, Lewis Acidity and Photocatalytic Activity of TiO2 Anatase Nanoparticles with Dominant {001} or {101} Facets". ACS Appl. Nano Mater., 1 (2018) 5355, 2018 Линк

96. Hadjiivanov , K., H. Knözinger. FTIR Study of the Low-temperature Adsorption and Co-adsorption of CO and N2 on NaY Zeolite: Evidence of Simultaneous Coordination of Two Molecules to One Na+ Site. Chemical Physics Letters, 303, 5-6, Elsevier, 1999, DOI:10.1016/S0009-2614(99)00229-8, 513-520. ISI IF:1.897

Цитира се в:

297. L. Mino, M. Signorile, V. Crocellà and C. Lamberti, Chem. Record, (2018), 18, 1–19, doi: 10.1002/tcr.201800108 [ISI]., 2018

97. Hadjiivanov , K., L. Dimitrov. IR spectroscopy study of CO and NOx adsorption on a Cu/Zr-HMS catalyst. Microporous and Mesoporous Materials, 27, 1, Elsevier, 1999, DOI:10.1016/S1387-1811(98)00229-7, 49-56. ISI IF:3.453

Цитира се в:

298. S. Li, K. Li, J. Hao, P. Ning, L. Tang and C. Wang. "Simultaneous adsorption/oxidation of NO and SO2 over al-cu composite metal oxides supported on MCM-41 at low temperature". J. Chem. Eng. Japan, 50 (2018) 376, 2018 Линк

299. J. Woo, K. Leistner, D. Bernin, H. Ahari, M. Shost. "Effect of various structure directing agents (SDAs) on low-temperature deactivation of Cu/SAPO-34 during NH3 -SCR reaction". M. Zammit and L. Olsson, Catal. Sci. Technol., 8 (2018) 3090, 2018 Линк

300. X. Cheng, D. Su, Z. Wang, C. Ma and M. Wang. "Catalytic reduction of nitrogen oxide by carbon monoxide, methane and hydrogen over transition metals supported on BEA zeolites". Int. J. Hydrogen Energy 43 (2018) 21969-21981 [ISI]., 2018 Линк

2000

98. Spassova I., Mehandjiev D.. Mechanism of NO conversion over a coprecipitated CuO-MnOx spinel-like catalyst.. Reaction Kinetics and Catalysis Letters, 69, 2, 2000, 231-237. ISI IF:1.108

Цитира се в:

301. Liu, K., Yu, Q., Qin, Q., & Wang, C. (2018). Selective catalytic reduction of nitric oxide with carbon monoxide over alumina-pellet-supported catalysts in the presence of excess oxygen. Environmental technology, 39(15), 1878-1885., 2018

302. Fang, D., He, F., Liu, X. Q., & Xie, J. L. (2018). NH3-SCR Performance and Applicability of Mn-Based Spinels over TiO2 Catalyst. In Materials Science Forum (Vol. 921, pp. 29-34). Trans Tech Publications., 2018

99. Stefanov, P., Stoychev, D., Stoycheva, M., Ikonomov, J., Marinova Ts.. XPS and SEM characterization of zirconia thin films prepared by electrochemical deposition. Surface and Interface Analysis, 30, 1, Wiley, 2000, ISSN:0142-2421, 628-631. ISI IF:1.132

Цитира се в:

303. Lopes, N.I.A., Henrique Jardim Freire, N., Resende, P.D., Santos, L.A., Buono, V.T.L. Electrochemical deposition and characterization of ZrO2ceramic nanocoatings on superelastic NiTi alloy (2018) Applied Surface Science, 450, pp. 21-30., 2018 Линк

304. Opra, D.P., Gnedenkov, S.V., Sinebryukhov, S.L., Voit, E.I., Sokolov, A.A., Ustinov, A.Y., Zheleznov, V.V. Zr4+/F– co-doped TiO2(anatase) as high performance anode material for lithium-ion battery (2018) Progress in Natural Science: Materials International, 28 (5), pp. 542-547, 2018 Линк

100. Stoyanova, R., Zhecheva, E., Gorova, M.. EPR evidence on short-range Co/Mn order in LiCoMnO4 spinels. Journal of Materials Chemistry, 10, 6, RSC Publisihing, 2000, DOI:10.1039/A909066E, 1377-1381. ISI IF:6.623

Цитира се в:

305. Sun, R., Jakes, P., Eurich, S., van Holt, D., Yang, S., Homberger, M., Simon, U., Kungl, H., Eichel, R.-A. "Secondary-Phase Formation in Spinel-Type LiMn2O4-Cathode Materials for Lithium-Ion Batteries: Quantifying Trace Amounts of Li2MnO3by Electron Paramagnetic Resonance Spectroscopy". Applied Magnetic Resonance, 49 (4), pp. 415-427, 2018, 2018 Линк

Page 22: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 22/154

306. Babu, B., Kadam, A. N., Rao, G. T., Lee, S. W., Byon, C., & Shim, J. Enhancement of visible-light-driven photoresponse of Mn-doped SnO2 quantum dots obtained by rapid and energy efficient synthesis. Journal of Luminescence., Volume 195, March 2018, Pages 283-289., 2018 Линк

101. Khrussanova M., Bobet, J-L, Terzieva, M, Chevalier, B., Radev, D.D., Peshev, P.. Hydrogen Storage Characteristics of Magnesium Mechanically Alloyed with YNi5-xAlx(x=0,1 and3) Intermetallics. Journal of Alloys and Compounds, 307, 1-2, 2000, ISSN:0925-8388, 283-289. ISI IF:2.808

Цитира се в:

307. Jiwen He. Redox Behavior of Yttrium and Electrochemical Formation of Y-Al Alloys in Molten Chlorides. J. Electrochem. Soc. 2018 volume 165, issue 11, E598-E603, 2018 Линк

308. Choi, E., Kwak, Y.J. & Song, M.Y. Development of an Mg-Based Alloy with a Hydrogen-Storage Capacity over 6 wt% by Adding Graphene, Met. Mater. Int. (2018) 24: 1403. https://doi.org/10.1007/s12540-018-0151-2;, 2018 Линк

309. Myoung Youp Song. Hydrogen Storage Properties of Mg-Graphene Composites, Korean Journal of Metals and Materials 2018; 56(7): 524-531, 2018 Линк

102. Stoyanova, R., Gorova, M., Zhecheva, E.. EPR of Mn 4+ in spinels Li 1+ x Mn 2− x O 4 with 0≤ x≤ 0.1. Journal of Physics and Chemistry of Solids, 61, 4, Elsevier BV, 2000, ISSN:0022-3697, DOI:10.1016/S0022-3697(99)00244-9, 609-614. SJR:0.632, ISI IF:1.853

Цитира се в:

310. Zhang, X., Nie, J., Liu, S., Li, Y., Qiu, J. "Deep-red photoluminescence and long persistent luminescence in double perovstkite-type La2MgGeO6:Mn4+". Journal of the American Ceramic Society, 101 (4), pp. 1576-1584, 2018, 2018 Линк

103. Alcantara, R., Fernandes-Madrigal, F. J., Lavela, P., Tirado, J. L., Jimenez-Mateos J. M., Gomez De Salazar, C., Stoyanova, R., Zhecheva, E.. Characterization of mesocarbon microbeads (MCMB) as active electrode material in lithium and sodium cells. Carbon, 38, 7, 2000, ISSN:0008-6223, 1031-1041. ISI IF:6.106

Цитира се в:

311. Zhang, Y., Li, X., Dong, P., Wu, G., Xiao, J., Zeng, X., Zhang, Y., Sun, X. "Honeycomb-like Hard Carbon Derived from Pine Pollen as High-Performance Anode Material for Sodium-Ion Batteries". ACS Applied Materials and Interfaces, 10, Issue 49, 12 December 2018, Pages 42796-42803, 2018 Линк

312. Izanzar, I., Dahbi, M., Kiso, M., Doubaji, S., Komaba, S., Saadoune, I. "Hard carbons issued from date palm as efficient anode materials for sodium-ion batteries". Carbon, 137, pp. 165-173, 2018, 2018 Линк

313. Al Aiti, M., Jehnichen, D., Fischer, D., Brünig, H., Heinrich, G. "On the morphology and structure formation of carbon fibers from polymer precursor systems". Progress in Materials Science, 98, pp. 477-551, 2018, 2018 Линк

314. Saurel, D., Orayech, B., Xiao, B., Carriazo, D., Li, X., Rojo, T. "From Charge Storage Mechanism to Performance: A Roadmap toward High Specific Energy Sodium-Ion Batteries through Carbon Anode Optimization". Advanced Energy Materials, 8 (17), art. no. 1703268, 2018, 2018 Линк

315. Han, Y., Liu, S.-Y., Cui, L., Xu, L., Xie, J., Xia, X.-K., Hao, W.-K., Wang, B., Li, H., Gao, J. "raphene-immobilized flower-like Ni3S2nanoflakes as a stable binder-free anode material for sodium-ion batteries". International Journal of Minerals, Metallurgy and Materials, 25 (1), pp. 88-93, 2018, 2018 Линк

316. Zhu, Z., Liang, F., Zhou, Z., Zeng, X., Wang, D., Dong, P., Zhao, J., Sun, S., Zhang, Y., Li, X. "Expanded biomass-derived hard carbon with ultra-stable performance in sodium-ion batteries". Journal of Materials Chemistry A, 6 (4), pp. 1513-1522, 2018, 2018 Линк

317. Shi, M.; Chen, Y.; Wena, H.; Liua, Y. "One-step heat treatment to process semi-coke powders as an anode material with superior rate performance for Li-ion batteries" RSC Adv. 2018, 8, 41207-41217, 2018 Линк

104. Hadjiivanov, K. Identification of Neutral and Charged Surface NOx Species by IR Spectroscopy. Catal. Rev. - Sci. Eng., 42, Taylor &amp; Francic, 2000, DOI:10.1081/CR-100100260, 71-144. ISI IF:8.417

Цитира се в:

318. W. Yao, Y. Liu and Z. Wu, "The promoting effect of CeO2 Ce-O-P multi-core shell structure on SO2 tolerance for selective catalytic reduction of NO with NH3 at low temperature", Appl. Surf. Sci., 442 (2018) 156 [ISI], 2018 Линк

319. X. Tang, J. Wang, H. Yi, S. Zhao, F. Gao and C. Chu, "Nitrogen Fixation and NO Conversion using Dielectric Barrier Discharge Reactor: Identification and Evolution of Products", Plasma Chem. Plasma Proc., 38 (3) (2018) 485 [ISI], 2018 Линк

320. X. Cheng, D. Su, Z. Wang, C. Ma and M. Wang, Int. J. Hydrogen Energy, 43 (2018) 21969 [ISI]., 2018

321. X. Yao, L. Chen, J. Cao, F. Yang, W. Tan and L. Dong, "Morphology and Crystal-Plane Effects of CeO2 on TiO2 /CeO2 Catalysts during NH3 -SCR Reaction", Ind. Eng. Chem. Res., 57 (37) (2018) 12407 [ISI], 2018 Линк

322. Y. Fu, X. Zhong and J. Li, Mechanism study on CO-SCR over Ce-Co-Oxmixed oxides catalysts. | [铈钴复合氧化物催化剂催化CO-SCR

反应机理研究], China Environ. Sci., 38 (2018) 2934 [ISI]., 2018 Линк

323. N. Itouyama, T. Imasaka and K. Hori, Sci. Tech. Energetic. Mater., 79 (2018) 103 [GS]., 2018

Page 23: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 23/154

324. T.H. Vuong, S. Bartling, U. Bentrup, H. Lund, J. Rabeah, H. Atia, U. Armbruster and A. Brückner, Catal. Sci. Technol., 8 (2018) 6360 [ISI]., 2018

325. K. Wang, B. Guan, K. Li, R. Zhan, H. Lin and Z. Huang, J. Shanghai Jiao Tong Univ. (Sci.) 23 (2018) 18 [ISI]., 2018

326. Y. Geng, S. Xiong, B. Li, Y. Liao, X. Xiao and S. Yang, "H3PW12O40 Grafted on CeO2: A High-Performance Catalyst for the Selective Catalytic Reduction of NOx with NH3" , Ind. Eng. Chem. Res., 57 (3) (2018) 856, 2018 Линк

327. H. Yi, X. Yang, X. Tang, S. Zhao, Y. Huang, X. Cui, T. Feng and Y. Ma, "Removal of Toluene from Industrial Gas by Adsorption–Plasma Catalytic Process: Comparison of Closed Discharge and Ventilated Discharge", Plasma Chem. Plasma Proc., 38 (2018) 331 [ISI], 2018 Линк

328. M.-L. Tarot, M. Barreau, D. Duprez, V. Lauga, E.E. Iojoiu, X. Courtois and F. Can, "Influence of the sodium impregnation solvent on the deactivation of Cu/FER-exchanged zeolites dedicated to the SCR of NOx with NH3", Catalysts, 8 (1) (2018) 3 [ISI], 2018 Линк

329. K. Yoshida, "The effect of NO pre-oxidizing in a temperature-swing-adsorption system for diesel NOx aftertreatment—Mechanisms to enhance its performance", J. Taiwan Inst. Chem. Eng., 86 (2018) 141 [ISI], 2018 Линк

330. Y. You, C. Shi, H. Chang, L. Guo, L. Xua and J. Li, "The promoting effects of amorphous CePO4 species on phosphorus-doped CeO2 /TiO2 catalysts for selective catalytic reduction of NOx by NH3", Mol. Catal., 453 (2018) 47 [ISI], 2018 Линк

331. R. Goldoust and S. Rahbarpour, "Design and implementation of a preconcentrator with Zeolite NaY for sensitivity enhancement of commercial gas sensors at low NO2 concentrations", Mater. Res. Express, 6 (2018) 015506, 2018 Линк

332. X. Li, X. Li, T. Zhu, Y. Peng, J. Li and J. Hao, "Extraordinary Deactivation Offset Effect of Arsenic and Calcium on CeO2 -WO3 SCR Catalysts", Environ. Sci. Technol., 52 (15) (2018) 8578 [ISI], 2018 Линк

333. S. Yu, S. Xu, B. Sun, Y. Lu, L. Li, W. Zou, P. Wang, F. Gao, C. Tang and L. Dong, "Synthesis of CrOX /C catalysts for low temperature NH3 -SCR with enhanced regeneration ability in the presence of SO2", RSC Adv., 8 (7) (2018) 3858 [ISI], 2018 Линк

334. Y. Jiang, G. Liang, C. Bao, M. Lu, C. Lai and W. Shi, "The poisoning effect of PbO and PbCl2 on CeO2-TiO2 catalyst for selective catalytic reduction of NO with NH3", J. Colloid Interface Sci., 528 (2018) 82-91, 2018 Линк

335. M. Yuan, W. Deng, S. Dong, Q. Li, B. Zhao and Y. Su, "Montmorillonite based porous clay heterostructures modified with Fe as catalysts for selective catalytic reduction of NO with propylene", Chem. Eng. J., 353 (2018) 839 [ISI], 2018 Линк

336. Y. Li, Y. Sun, W. Ho, Y. Zhang, H. Huang, Q. Cai and F. Dong, "Highly enhanced visible-light photocatalytic NOx purification and conversion pathway on self-structurally modified g-C3 N4 nanosheets", Sci. Bull., 63 (10) (2018) 609 [ISI], 2018 Линк

337. J. Grzybek, B. Gil, W.J. Roth, M. Skoczek, A. Kowalczyk and L. Chmielarz, "Characterization of Co and Fe-MCM-56 catalysts for NH3-SCR and N2O decomposition: An in situ FTIR study", Spectrochim. Acta A, 196 (2018) 281 [ISI], 2018

338. Y. Lin, Y. Li, Z. Xu, J. Xiong and T. Zhu, "Transformation of functional groups in the reduction of NO with NH3 over nitrogen-enriched activated carbons", Fuel, 223 (2018) 312 [ISI], 2018 Линк

339. D. Wang, J. Chen, Y. Peng, W. Si, X. Li, B. Li and J. Li, "Dechlorination of chlorobenzene on vanadium-based catalysts for low-temperature SCR", Chem. Commum., 54 (16) (2018) 2032 [ISI], 2018 Линк

340. Y. Zeng, Y. Wang, S. Zhang, Q. Zhong, W. Rong and X. Li, "One-pot synthesis of ceria and cerium phosphate (CeO2-CePO4) nanorod composites for selective catalytic reduction of NO with NH3: Active sites and reaction mechanism", J. Colloid Interface Sci., 524 (2018) 8 [ISI], 2018 Линк

341. X. Lü, J. Cao, X. Li, J. Cao, X. Zhang and F. Dong, "Mechanism of MgAl-LDH-induced enhancement in the plasmonic photocatalytic performance over bismuth nanospheres", Chin. Sci. Bull., 63 (25) (2018) 2620 [ISI]., 2018 Линк

342. L. Zhang, J. Sun, L. Li, S. Ran, G. Li, C. Li, C. Ge and L. Dong, "Selective Catalytic Reduction of NO by NH3 on CeO2 -MOx (M = Ti, Si, and Al) Dual Composite Catalysts: Impact of Surface Acidity", Ind. Eng. Chem. Res., 57 (2018) 490 [ISI], 2018 Линк

343. B. Guan, H. Lin, R. Zhan and Z. Huang, "Catalytic combustion of soot over Cu, Mn substitution CeZrO2-δ nanocomposites catalysts prepared by self-propagating high-temperature synthesis method", Chem. Eng. Sci., 189 (2018) 320 [ISI], 2018 Линк

344. F. Liu, W. Shan, Z. Lian, J. Liu and H. He, "The smart surface modification of Fe2 O3 by WOx for significantly promoting the selective catalytic reduction of NOx with NH3", Appl. Catal. B, 230 (2018) 165 [ISI], 2018 Линк

345. B. Guan, Y. Huang, H. Lin and Z. Huang, "Promoting Effects of Barium Substitution on the Catalytic Performances of FeCeO2−δ for Soot Oxidation", Ind. Eng. Chem. Res., 57 (26) (2018) 8635 [ISI], 2018 Линк

346. Q. Zhang, Y. Huang, S. Peng, T. Huang, J. Cao, W. Ho and S. Lee, "Synthesis of SrFex Ti1-x O3- Δ nanocubes with tunable oxygen vacancies for selective and efficient photocatalytic NO oxidation", Appl. Catal. B, 239 (2018) 1 [ISI], 2018 Линк

347. T. Zhang, H. Chang, K. Li, Y. Peng, X. Li and J. Li, "Different exposed facets VOx /CeO2 catalysts for the selective catalytic reduction of NO with NH3", Chem. Eng. J., 349 (2018) 184 [ISI], 2018 Линк

348. H. Wang, W. He, X. Dong, H. Wang and F. Dong, "In situ FT-IR investigation on the reaction mechanism of visible light photocatalytic NO oxidation with defective g-C3 N4", Sci. Bull., 63 (2) (2018) 117 [ISI], 2018 Линк

349. X. Zhang, H. Zhong, L. Xu, S. Wang, H. Chi, Q. Pan and G. Zhang, "Fabrication of Co3O4/PEI-GO composites for gas-sensing applications at room temperature", Mater. Res. Bull., 102 (2018) 108 [ISI], 2018 Линк

350. L. Guo, T. Zhang, H. Chang and J. Li, , "Study on Ce-doped Ni-Al-Ox catalysts for NO reduction by CO", Zhongguo Huanjing Kexue/China Environmental Science 38(9), (2018) 3313-3321, 2018 Линк

351. D. Ponnuvelu, S. Abdulla and B. Pullithadathil, "Novel Electro‐Spun Nanograined ZnO/Au Heterojunction Nanofibers and Their Ultrasensitive NO2 Gas Sensing Properties" Chem. Select, 3 (2018) 7156 [ISI]., 2018 Линк

Page 24: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 24/154

352. D. Hamann, S.H. Guiance, O. Caráttoli, J. Botti, A. Caro, L. Castiglione, J. Dotti and R. Vallejo, "Adsorción y reducción catalítica de óxidos de nitrógeno sobre Cr2O3/γ- Al2O3", Energeia, 15 (2018) 53 [GS], 2018 Линк

353. X. Zhang, X. Cheng, C. Ma, X. Wang and Z. Wang, "Effect of a ZrO2 support on Cu/Fe2 O3 -CeO2 /ZrO2 catalysts for NO removal by CO using a rotary reactor", Catal. Sci. Technol., 8 (2018) 5623 [ISI], 2018 Линк

354. K. Stawicka, P. Decyk, A. Wojtaszek-Gurdak and M. Ziolek, "Comparative study of acid-basic properties of MCF impregnated with niobium and cerium species" , Catal. Today, xx (2018) doi.org/10.1016/j.cattod.2018.05.025 [ISI], 2018 Линк

355. J. Liu, J. Liu, Z. Zhao, Z. Duan, Y. Wei, W. Song and Y. Sun, "Fe/Beta Meso-CeO2 Nanostructure Core–Shell Catalyst: Remarkable Enhancement of Potassium Poisoning Resistance", Catal. Curv. Asia, 22 (4) (2018) 181 [ISI], 2018 Линк

356. H. Wang, Y. Sun, G. Jiang, Y.X. Zhang, H. Huang, Z. Wu, S.C. Lee and F. Dong, "Unraveling the Mechanisms of Visible Light Photocatalytic NO Purification on Earth-Abundant Insulator-Based Core-Shell Heterojunctions", Environ. Sci. Technol., 52 (3) (2018) 1497 [ISI], 2018 Линк

357. J. Balbuena, J.M. Calatayud, M. Cruz, P. Pardo, F. Martín, J. Alarcón and L. Sanchez, "Mesocrystalline anatase nanoparticles synthesized using a simple hydrothermal approach with enhanced light harvesting for gas-phase reaction", Dalton Trans., 47 (18) (2018) 6590 [ISI]., 2018 Линк

358. B.S. Barth, Untersuchungen zur Adsorption von Stickstoffmonoxid in metall-organischen Gerüstverbin-dungen, Ph. D. Thesis, Friedrich-Alexander-Universität, Erlangen-Nürnberg, Germany, 2018 [GS]., 2018

359. A. Bellmann, H. Atia, U. Bentrup and A. Brückner, "Mechanism of the selective reduction of NOx by methane over Co-ZSM-5", Appl. Catal. B, 230 (2018) 184-193 [ISI], 2018 Линк

360. L. Ma, C.Y. Seo, M. Nahata, X. Chen, J. Li and J.W. Schwank, "Shape dependence and sulfate promotion of CeO2 for selective catalytic reduction of NOx with NH3", Appl. Catal. B, 232 (2018) 246 [ISI], 2018 Линк

361. Y. Wang, H. Zhao, J. Zheng, G. Chen, J. Yang and J. Xu, "Easy synthesis of three-dimensionally ordered macroporous CuO-CeO2 mixed oxide catalysts and their high activities for the catalytic combustion of soot", J. Chin. Chem. Soc., 65 (2018)1028 doi: 10.1002/ jccs.201800089, 2018 Линк

362. A. Marikutsa, L. Yang, M. Rumyantseva, M. Batuk, J. Hadermann and A. Gaskov, "Sensitivity of nanocrystalline tungsten oxide to CO and ammonia gas determined by surface catalysts", Sensors Actuators B, 277, (2018) 336 [ISI], 2018 Линк

363. S. Mosallanejad, B.Z. Dlugogorski, E.M. Kennedy and M. Stockenhuber, "On the Chemistry of Iron Oxide Supported on γ-Alumina and Silica Catalysts", ACS Omega, 3 (2018) 5362 [ISI], 2018 Линк

364. Y.S. Ryou, J. Lee, H. Lee, C.H. Kim and D.H. Kim, "Low temperature NO adsorption over hydrothermally aged Pd/CeO2 for cold start application" Catal. Today, 307 (2018) 93-101, 2018 Линк

365. L.P.F. Benício, D. Eulálio, L.M. Guimarães, F.G. Pinto, L.M. da Costac and J. Tronto, Materials Research 21(6) (2018) e20171004 [ISI]., 2018 Линк

366. J. Mosrati, H. Atia, R. Eckelt, H. Lund, G. Agostini, U. Bentrup, N. Rockstroh, S. Keller, U. Armbruster and M. Mhamdi, "Nb-modified Ce/Ti oxide catalyst for the selective catalytic reduction of NO with NH3 at low temperature" , Catalysts, 8 (5) (2018) 175 [ISI], 2018 Линк

367. V. Shadravan, E. Kennedy and M. Stockenhuber, "An experimental investigation on the effects of adding a transition metal to Ni/Al2O3 for catalytic hydrogenation of CO and CO2 in presence of light alkanes and alkenes" Catal. Today, 307 (2018) 277-285, 2018 Линк

368. C. Negri, P.S. Hammershøi, T.V.W. Janssens, P. Beato, G. Berlier and S. Bordiga, "Investigating the Low Temperature Formation of CuII-(N, O) Species on Cu-CHA Zeolites for the Selective Catalytic Reduction of NOx", Chem. Europ. J., 24 (46) (2018) 12044 [ISI], 2018 Линк

369. F. Caron, M. Rivallan, S. Humbert, A. Daudin, S. Bordiga and P. Raybaud, "Active sites speciation of supported CoMoS phase probed by NO molecule: A combined IR and DFT study", J. Catal., 361 (2018) 62 [ISI], 2018 Линк

370. X. Cheng, Y. Cheng, Z. Wang and C. Ma, "Comparative study of coal based catalysts for NO adsorption and NO reduction by CO" Fuel, 214 (2018) 230, 2018 Линк

371. H. Wang, Y. Sun, W. He, Y. Zhou, S.C. Lee and F. Dong, "Visible light induced electron transfer from a semiconductor to an insulator enables efficient photocatalytic activity on insulator- based heterojunctions", Nanoscale, 10 (2018) 15513-15520., 2018 Линк

372. H. Chen, Y. Wang and Y.-K. Lyu, "High catalytic activity of Mn-based catalyst in NO oxidation at low temperature and over a wide temperature span", Mol. Catal., 454 (2018) 21 [ISI], 2018 Линк

373. A. Porta, T. Pellegrinelli, L. Castoldi, R. Matarrese, S. Morandi, S. Dzwigaj and L. Lietti, "Low Temperature NOx Adsorption Study on Pd-Promoted Zeolites", Top. Catal. 61(18-19) (2018) 2021 [ISI], 2018 Линк

374. H. Wang, S. Luo, M. Zhang, W. Liu, X. Wu and S. Liu, "Roles of oxygen vacancy and Ox − in oxidation reactions over CeO2 and Ag/CeO2 nanorod model catalysts", J. Catal., 368 (2018) 365 [ISI], 2018 Линк

375. K. Qi, J. Xie, D. Mei, F. De and D. Fang, "The utilization of fly ash-MnOx /FA catalysts for NOx removal", Mater. Res. Express, 5 (6) (2018) 065526 [ISI], 2018 Линк

376. M. Ran, J. Li, W. Cui, Y. Li, P. Li and F. Dong, "Efficient and stable photocatalytic NO removal on C self-doped g-C3 N4 : Electronic structure and reaction mechanism", Catal. Sci. Technol., 8 (13) (2018) 3387 [ISI], 2018 Линк

377. Y. Ryou, "Low temperature NO adsorption over Pd-based catalysts for cold start application", Ph. D. Thesis, Seoul National University, Seoul, South Korea, 2018 [GS], 2018

Page 25: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 25/154

378. C. Shi, H. Chang, C. Wang, T. Zhang, Y. Peng, M. Li, Y. Wang and J. Li, "Improved Activity and H2 O Resistance of Cu-Modified MnO2 Catalysts for NO Oxidation", Ind. Eng. Chem. Res., 57 (3) (2018) 920 [ISI], 2018 Линк

379. W. He, Y. Sun, G. Jiang, H. Huang, X. Zhang and F. Dong, "Activation of amorphous Bi2WO6 with synchronous Bi metal and Bi2 O3 coupling: Photocatalysis mechanism and reaction pathway", Appl. Catal. B, 232 (2018) 340 [ISI], 2018 Линк

380. K. Wang, Z. Gong, H. Luo, K. Jin, Y. Hua and W. Wu, "DRIFT Study of the Adsorption of NH3 and NOx over Rare Earth Concentrate Enriched from Bayan Obo Tailings", Combustion Sci. Technol., 190 (5) (2018) 770 [ISI], 2018 Линк

381. N. López, G. Aguila, P. Araya and S. Guerrero, "Highly active copper-based Ce TiO2 core-shell catalysts for the selective reduction of nitric oxide with carbon monoxide in the presence of oxygen" Catal. Commun., 104 (2018) 17, 2018 Линк

382. J.-W. Shi, Z. Fan, C. Gao, G. Gao, B. Wang, Y. Wang, C. He and C. Niu, "Mn−Co Mixed Oxide Nanosheets Vertically Anchored on H2 Ti3 O7 Nanowires: Full Exposure of Active Components Results in Significantly Enhanced Catalytic Performance", ChemCatChem, 10 (13) (2018) 2833 [ISI], 2018 Линк

383. W. He, Y. Sun, G. Jiang, Y. Li, X. Zhang, Y. Zhang, Y. Zhou and F. Dong, "Defective Bi4MoO9/Bi metal core/shell heterostructure: Enhanced visible light photocatalysis and reaction mechanism", Appl. Catal. B, 239 (2018) 619 [ISI], 2018 Линк

384. T. Higo, "Modification of perovskite supported metal catalyst with alkaline earth metal and its catalysis", Ph. D. Thesis, Waseda University, Tokyo, Japan, 2018 [GS]., 2018

385. L. Ma, C.Y. Seo, X. Chen, K. Sun and J.W. Schwank, "Indium-doped Co3O4 nanorods for catalytic oxidation of CO and C3H6 towards diesel exhaust" Appl. Catal. B, 222 (2018) 44, 2018 Линк

386. D. Ponnuvelu, S. Abdulla and B. Pullithadathil, "Highly monodispersed mesoporous, heterojunction ZnO Au micro-spheres for trace-level detection of NO2 gas" Microporous Mesoporous Mater., 255 (2018) 156, 2018 Линк

387. H. Hu, Z. Wang, X. Zhang, X. Su, X. Yang and R. Shi, "Performance of Fe-Cu/ZSM-5 catalyst in the DeNOx process via NH3 -SCR", J. Fuel Chem. Technol., 46 (2) (2018) 225 [ISI], 2018 Линк

388. E. Iojoiu, V. Lauga, J. Abboud, G. Legros, J. Bonnety, P. Da Costa, J. Schobing, A. Brillard, G. Leyssens, V. Tschamber, P. Anguita, J.G. Vargas, L. Retailleau, S. Gil, A. Giroir-Fendler, M.-L. Tarot, F. Can, D. Duprez and X. Courtois, "Biofuel Impact on Diesel Engine After-Treatment: Deactivation Mechanisms and Soot Reactivity", Emission Control Sci. Technol., 4 (1) (2018) 15 [ISI], 2018 Линк

389. H. Wang, W. Zhang, X. Li, J. Li, W. Cen, Q. Li and F. Dong, "Highly enhanced visible light photocatalysis and in situ FT-IR studies on Bi metal defective BiOCl hierarchical microspheres" Appl. Catal. B, 225 (2018) 218-227, 2018 Линк

390. L. Ström, P. Carlsson, M. Skoglundh and H. Härelind, "Surface species and metal oxidation state during H2 ‐assisted NH3 ‐SCR of NOx over alumina‐supported silver and indium", Catalysts, 8 (1) (2018) 38 [ISI], 2018 Линк

391. L. Ström, "Active sites and influence of reaction conditions on the selective catalytic reduction of NOx over the silver-alumina catalyst", Ph. D. Thesis, Chalmers University of Technology, Goteborg, Sweden, 2018 [GS], 2018

392. L. Zhang, X. Yao, Y. Lu, C. Sun, C. Tang, F. Gao and L. Dong, "Effect of precursors on the structure and activity of CuO-CoOx/γ-Al2O3 catalysts for NO reduction by CO" J. Colloid Interface Sci., 509 (2018) 334, 2018 Линк

393. X. Cheng, X. Zhang, D. Su, Z. Wang, J. Chang and C. Ma, "NO reduction by CO over copper catalyst supported on mixed CeO2 and Fe2O3: Catalyst design and activity test", Appl. Catal. B, 239 (2018) 485, 2018 Линк

394. M. Jabłońska, A.M. Beale, M. Nocuń and R. Palkovits, "Ag-Cu based catalysts for the selective ammonia oxidation into nitrogen and water vapour", Appl. Catal. B, 232 (2018) 275 [ISI]., 2018 Линк

395. Y. Ji, D. Xu, M. Crocker, J. Theis, C. Lambert, A. Bueno-Lopez, D. Harris and D. Scapens, "Mn-based mixed oxides for low temperature NOx adsorber applications", Appl. Catal. A, 567 (2018) 90 [ISI], 2018 Линк

396. L. Xu, X. Zhang, C. Wang, D. Guo, L. Zhou, Q. Pang, G. Zhang and S. Wang, "Design and Synthesis of p-n Conversion Indium-Oxide-Based Gas Sensor with High Sensitivity to NOx at Room-Temperature", Chem. Select., 3 (8) (2018) 2298 [ISI], 2018 Линк

397. G. Jiang, J. Cao, M. Chen, X. Zhang and F. Dong, "Photocatalytic NO oxidation on N-doped TiO2 /g-C3 N4 heterojunction: Enhanced efficiency, mechanism and reaction pathway", Appl. Surf. Sci., 458 (2018) 77 [ISI], 2018 Линк

398. W. Cui, J. Li, Y. Sun, H. Wang, G. Jiang, S.C. Lee and F. Dong, "Enhancing ROS generation and suppressing toxic intermediate production in photocatalytic NO oxidation on O/Ba co-functionalized amorphous carbon nitride", Appl. Catal. B, 237 (2018) 938, 2018 Линк

399. P. Sun, X. Cheng, Z. Wang, Y. Lai, C. Ma and J. Chang, "NOx reduction by CO over ASC catalysts in a simulated rotary reactor: Effect of reaction conditions", J. Energy Inst., (2018), https://doi.org/10.1016/j.joei.2018.04.009, 2018 Линк

400. V. Alcalde-Santiago, A. Davo-Quinonero, I. Such-Basanez, D. Lozano-Castello and A. Bueno-Lopez, "Macroporous carrier-free Sr-Ti catalyst for NOx storage and reduction" Appl. Catal. B, 220 (2018) 524, 2018 Линк

401. W. Deng, A. Yin, J. Ma and Y. Su, "Investigation of NO conversion by different types of sewage sludge chars under low temperature", J. Environ. Management, 209 (2018) 236, 2018 Линк

402. A.H. Khan, B. Barth, M. Hartmann, J. Haase and M. Bertmer, "Nitric Oxide Adsorption in MIL-100(Al) MOF Studied by Solid-State NMR", J. Phys. Chem. C, 122 (24) (2018) 12723 [ISI], 2018 Линк

403. P. Sun, X. Cheng, Y. Lai, Z. Wang, C. Ma and J. Chang, "NOx reduction by CO over ASC catalysts in a simulated rotary reactor: effect of CO2 , H2 O and SO2", RSC Adv., 8 (64) (2018) 36604 [ISI], 2018 Линк

404. X. Dong, J. Li, Q. Xing, Y. Zhou, H. Huang and F. Dong, "The activation of reactants and intermediates promotes the selective photocatalytic NO conversion on electron-localized Sr-intercalated g-C3N4", Appl. Catal. B, 232 (2018) 69, 2018 Линк

Page 26: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 26/154

405. A. Filtschew and C. Hess, "Unravelling the mechanism of NO and NO2 storage in ceria: The role of defects and Ce-O surface sites", Appl. Catal. B, 237 (2018) 1066, 2018 Линк

406. A. Khartchenko, V.L. Zholobenko, A. Vicente, C. Fernandez, H. Vezin, V. De Waele and S. Mintova, "Formation of copper nanoparticles in LTL nanosized zeolite: Spectroscopic characterization", Phys. Chem. Chem. Phys., 20 (4) (2018) 2880 [ISI], 2018 Линк

407. A. Filtschew, Ceroxid-haltige Materialien als passive NOx-Adsorber: methodische Weiterentwicklungen und in situ-Untersuchungen des NOx-Einspeichermechanismus, Ph. D. Thesis, Technische Universitat Darmstadt, Darmstadt, Germany, 2018 [GS]., 2018

408. K. Khivantsev, F. Gao, L. Kovarik, Y. Wang and J. Szanyi, "Molecular Level Understanding of How Oxygen and Carbon Monoxide Improve NOx Storage in Palladium/SSZ-13 Passive NOx Adsorbers: The Role of NO+ and Pd(II)(CO)(NO) Species", J. Phys. Chem. C, 122 (20) (2018) 10820 [ISI], 2018 Линк

409. J. Yang, Y. Chang, W. Dai, G. Wu, N. Guan and L. Li, "Ru-In/H-SSZ-13 for the selective reduction of nitric oxide by methane: Insights from temperature-programmed desorption studies", Appl. Catal. B, 236 (2018) 404 [ISI], 2018 Линк

410. N. Kosinov, C. Liu, E.J.M. Hensen and E.A. Pidko, "Engineering of Transition Metal Catalysts Confined in Zeolites", Chem. Mater., 30 (10) (2018) 3177 [ISI]., 2018 Линк

411. X. Leng, Z. Zhang, Y. Li, T. Zhang, S. Ma, F. Yuan, X. Niu and Y. Zhu, "Excellent low temperature NH3 -SCR activity over Mna Ce0.3 TiOx (a  =  0.1–0.3) oxides: Influence of Mn addition", Fuel Process. Technol., 181 (2018) 33 [ISI], 2018 Линк

412. J. Li, C. Luo, D. Zhang, M. Song, C. Mengke, J.L. Xix, G. Zhang, "Autochthonous Bioaugmentation-Modified Bacterial Diversity of Phenanthrene Degraders in PAH-Contaminated Wastewater as Revealed by DNA-Stable Isotope Probing", ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2018, 52(5): 2934-2944., 2018 Линк

413. G. Li, B. Wang, Z. Wang, Z. Li, Q. Sun, W.Q. Xu and Y. Li, "Reaction Mechanism of Low-Temperature Selective Catalytic Reduction of NOx over Fe-Mn Oxides Supported on Fly-Ash-Derived SBA-15 Molecular Sieves: Structure-Activity Relationships and in Situ DRIFT Analysis", J. Phys. Chem. C, 122 (35) (2018) 20210 [ISI], 2018 Линк

414. W. Suprun, D. Worch and K. Soja, Adsorption of nitrogrnoxides on Ag+, Cu+, and Fe+ oxide supported catalysts, Изв. Санкт-Петерб. Гос. Технол. Инст., 42 (2018) 4, 2018 Линк

415. X. Li, K. Li, Y. Peng, X. Li, Y. Zhang, D. Wang, J. Chen and J. Li, "Interaction of phosphorus with a FeTiOx catalyst for selective catalytic reduction of NOx with NH3 : Influence on surface acidity and SCR mechanism", Chem. Eng. J., 347 (2018) 173 [ISI], 2018 Линк

416. S. Chen, H. Wang, M. Shi, H. Ye and Z. Wu, Deep Oxidation of NO by a Hybrid System of Plasma-N-Type Semiconductors: High-Energy Electron-Activated "Pseudo Photocatalysis" Behavior., Environ. Sci. Technol., (2018) 8568 [ISI] doi: 10.1021/acs.est.8b00655., 2018 Линк

417. S.P. Del Valle, O. Marie and H.P. Nguyen, "Effect of support material Al2O3 vs ZrO2-TiO2 on the Ba availability for NSR catalyst: An in situ and operando IR study" Appl. Catal. B, 223 (2018) 116-124, 2018 Линк

418. C. Gao, J.-W. Shi, Z. Fan, B. Wang, Y. Wang, C. He, X. Wang, J. Li and C. Niu, "Fast SCR" reaction over Sm-modified MnOx-TiO2 for promoting reduction of NOx with NH3", Appl. Catal. A, 564 (2018) 102 [ISI], 2018 Линк

419. K. Tamai, S. Hosokawa, H. Asakura, K. Teramura and T. Tanaka, "Low-temperature NOx trapping on alkali or alkaline earth metal modified TiO2 photocatalyst", Catal. Today, (2018) doi: 10.1016/j.cattod.2018.07.045 [ISI]., 2018 Линк

420. W. Yang, M. Chen, W. Xiao, Y. Guo, J. Ding, L. Zhang and H. He, "Molecular Insights into NO-Promoted Sulfate Formation on Model TiO2 Nanoparticles with Different Exposed Facets", Environ. Sci. Technol.52 (2018)14110 doi: 10.1021/acs.est.8b02688 [ISI], 2018 Линк

105. Stefanov, P., Stoychev, D., Stoycheva, M., Ts. Marinova,. XPS and SEM studies of chromium oxide films chemically formed on stainless steel 316 L. Materials Chemistry and Physics, 65, 2, Elsevier Sequoia SA,Lausanne, Switzerland, 2000, ISSN:0254-0584, DOI:10.1016/S0254-0584(00)00249-2, 212-215. SJR:0.818, ISI IF:2.259

Цитира се в:

421. Zhang, L.N., Ojo, O.A. Crystallographic Orientation Dependence of Corrosion Behavior of a Single Crystal Nickel-Based Alloy (2018) Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science, 49 (1), pp. 295-304., 2018 Линк

422. Dong, J., Wu, J., Jia, J., He, X., Lan, Z., Fan, L., Lin, J., Huang, M. Annealing-Free Cr2O3 Electron-Selective Layer for Efficient Hybrid Perovskite Solar Cells (2018) ChemSusChem, 11 (3), pp. 619-628., 2018 Линк

423. Lee, J.-S., Radnik, J., Bäßler, R. Passivity of alloy 31 in green-death solution (2018) Materials and Corrosion, 69 (9), pp. 1218-1226, 2018 Линк

106. Stefanov, P., Stoychev, D., Valov, I., Kakanakova-Georgieva, A., Marinova, Ts.. Electrochemical deposition of thin zirconia films on stainless steel 316 L. Materials Chemistry and Physics, 65, 2, Elsevier, 2000, ISSN:02540584, DOI:10.1016/S0254-0584(00)00251-0, 222-225. SJR:0.818, ISI IF:2.259

Цитира се в:

424. Lodge, A.W., Hasan, M.M., Bartlett, P.N., Beanland, R., Hector, A.L., Kashtiban, R.J., Levason, W., Reid, G., Sloan, J., Smith, D.C., Zhang, W. Electrodeposition of tin nanowires from a dichloromethane based electrolyte (2018) RSC Advances, 8 (42), pp. 24013-24020,

Page 27: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 27/154

2018 Линк

107. Ellie L. Uzunova, G. St. Nikolov. Vibrational Modes of Double Four-Member Rings of Oxygen-Bridged Silicon and Aluminum Atoms: A DFT Study. J.Phys.Chem. B, 104, ACS, 2000, DOI:http://dx.doi.org/10.1021/jp0006680, 7299-7305. ISI IF:3.3

Цитира се в:

425. Mikuła, A., Król, M., Mozgawa, W., Koleżyński, A. New approach for determination of the influence of long-range order and selected ring oscillations on IR spectra in zeolites (2018) Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy, 195, pp. 62-67., 2018

108. Hadjiivanov , K.. Use of overtones and combination modes for the identification of surface NOx anionic species by IR spectroscopy. Catalysis Letters, 68, 3, Springer US, 2000, ISSN:1011-372X, DOI:10.1023/A:1019087521084, 157-161. ISI IF:2.307

Цитира се в:

426. C. Negri, P.S. Hammershøi, T.V.W. Janssens, P. Beato, G. Berlier and S. Bordiga, "Investigating the Low Temperature Formation of CuII-(N, O) Species on Cu-CHA Zeolites for the Selective Catalytic Reduction of NOx", Chem. Europ. J., 24 (46) (2018) 12044 [ISI]., 2018 Линк

427. S.R. An, K.H. Song, K.Y. Lee, K.T. Park, S.K. Jeong and H.J. Kim, "Fe-doped LaCoO3 perovskite catalyst for NO oxidation in the post-treatment of marine diesel engine’s exhaust emissions", Korean J. Chem. Eng., 35 (9) (2018) 1807 [ISI], 2018 Линк

109. Hadjiivanov , K., H. Knözinger. Species Formed After NO Adsorption and NO + O2 Co-adsorption on TiO2: An FTIR Spectroscopic Study. Physical Chemistry Chemical Physics, 2, Royal Society of Chemistry, 2000, DOI:10.1039/B002065F, 2803-2806. ISI IF:4.493

Цитира се в:

428. D.R. Moon, "Heterogeneous reactions involving HO2 radicals and atmospheric aerosols", Ph. D. Thesis, University of Leeds, UK, 2018 [GS], 2018 Линк

429. H. Lv, X. Hua, W. Xie, Q. Hu, J. Wu and R. Guo, "Promotion effect of H2 pretreatment on CeO2 catalyst for NH3 -SCR reaction", J. Rare Earths, 36 (2018) 708-714 [ISI]., 2018 Линк

430. C. Wang, F. Li, Z. Sun and Q. Song, A highly active K/Cu-Mn-O catalyst for the removal of nitric oxide in indoor air, Indoor Built Environ., (2018) doi: 10.1177/1420326X17728153 [ISI]., 2018

431. J. Liao, L. Chen, M. Sun, B. Lei, X. Zeng, Y. Sun and F. Dong, "Improving visible‐light‐driven photocatalytic NO oxidation over BiOBr nanoplates through tunable oxygen vacancies", Chin. J. Catal., 39 (2018) 779-789 (SI), 2018 Линк

432. J. Li P. Yan, K. Li, W. Cen, X. Yu, S. Yuan, Y. Chu and Z. Wang, "Generation and transformation of ROS on g-C3 N4 for efficient photocatalytic NO removal: A combined in situ DRIFTS and DFT investigation", Chin. J. Catal., 39 (2018) 16951703 [ISI]., 2018 Линк

433. J. Li, Z. Zhang, W. Cui, H. Wang, W. Cen, G. Johnson, G. Jiang, S. Zhang and F. Dong, "The Spatially Oriented Charge Flow and Photocatalysis Mechanism on Internal van der Waals Heterostructures Enhanced g-C3 N4", ACS Catal., 8 (2018) 8376-8385 [ISI]., 2018 Линк

434. B. Kim, "Surface chemistry of nitric oxide on single crystal rutile TiO2 surfaces and the development of a new strategy for the protection of optical diagnostics system in plasma reactors", Ph. D. Thesis, Ajou University, Suwon, South Korea, 2018 [GS]., 2018

435. Y. Jiang, G. Liang, C. Bao, M. Lu, C. Lai and W. Shi, " The poisoning effect of PbO and PbCl2 on CeO2 -TiO2 catalyst for selective catalytic reduction of NO with NH3 ", J. Colloid Interface Sci., 528 (2018) 82-91 [ISI]., 2018 Линк

436. W. He, Y. Sun, G. Jiang, Y. Li, X. Zhang, Y. Zhang, Y. Zhou and F. Dong, "Defective Bi4 MoO9 /Bi metal core/shell heterostructure: Enhanced visible light photocatalysis and reaction mechanism", Appl. Catal. B, 239 (2018) 619-627 [ISI]., 2018 Линк

437. W. He, W. Zhang, B. Lei, J. Li, X. Zhang and F. Dong, "The reaction mechanism of plasmonic photocatalytic NO oxidation on Bi-metal/BiPO4 ", Chin. Sci. Bull., 63 (2018) 189 [ISI]., 2018 Линк

438. B. Guan, H. Lin, R. Zhan and Z. Huang, "Catalytic combustion of soot over Cu, Mn substitution CeZrO2- Δ nanocomposites catalysts prepared by self-propagating high-temperature synthesis method", Chem. Eng. Sci., 189 (2018) 320-339 [ISI]., 2018 Линк

439. Y. Fu, X. Zhong and J. Li, "Mechanism study on CO-SCR over Ce-Co-Ox mixed oxides catalysts. | [铈钴复合氧化物催化剂催化CO-

SCR反应机理研究]", China Environ. Sci., 38 (2018) 2934-2940 [ISI]., 2018 Линк

440. K. Erme, J. Raud and I. Jogi, "Adsorption of Nitrogen Oxides on TiO2 Surface as a Function of NO2 and N2 O5 Fraction in the Gas Phase", Langmuir, 34 (2018) 6338-6345 [ISI]., 2018 Линк

441. X. Dong, J. Li, Q. Xing, Y. Zhou, H. Huang and F. Dong, "The activation of reactants and intermediates promotes the selective photocatalytic NO conversion on electron-localized Sr-intercalated g-C3 N4", Appl. Catal. B, 232 (2018) 69-76 [ISI]., 2018 Линк

442. X. Dong, W. Zhang, Y. Sun, J. Li, W. Cen, Z. Cui, H. Huang and F. Dong, "Visible-light-induced charge transfer pathway and photocatalysis mechanism on Bi semimetal defective BiOBr hierarchical microspheres", J. Catal., 357 (2018) 41-50 [ISI], 2018 Линк

443. L. Chen, F. Yuan, Z. Li, X. Niu and Y. Zhu, "Synergistic effect between the redox property and acidity on enhancing the low temperature NH3 -SCR activity for NOx removal over the Co0.2 Cex Mn0.8-x Ti10 (x  =  0–0.40) oxides catalysts", Chem. Eng. J., 354 (2018) 393-406 [ISI], 2018 Линк

Page 28: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 28/154

444. Y. Cao, M. Yu, S. Qi, Z. Ren, S. Yan, S. Hu and M. Xu, " Nitric Oxide Reaction Pathways on Rutile TiO2 (110): The Influence of Surface Defects and Reconstructions", J. Phys. Chem. C, 122 (2018) 23441-23450 [ISI]., 2018 Линк

445. J. Balbuena, J.M. Calatayud, M. Cruz, P. Pardo, F. Martín, J. Alarcón and L. Sanchez, "Mesocrystalline anatase nanoparticles synthesized using a simple hydrothermal approach with enhanced light harvesting for gas-phase reaction", Dalton Trans., 47 (2018) 6590-6597 [ISI]., 2018 Линк

446. Y. Zhang, X. Yue, T. Huang, K. Shen and B. Lu, "In situ DRIFTS studies of NH3 -SCR mechanism over V2 O5 -CeO2 /TiO2 -ZrO2 catalysts for selective catalytic reduction of NOx ", Materials, 11 (2018) 1307, 2018 Линк

447. Y. You, C. Shi, H. Chang, L. Guo, L. Xua and J. Li, "The promoting effects of amorphous CePO4 species on phosphorus-doped CeO2 /TiO2 catalysts for selective catalytic reduction of NOx by NH3", Mol. Catal., 453 (2018) 47-54 [ISI]., 2018 Линк

448. C. Wang, F. Li, Z. Sun and Q. Song, "A highly active K/Cu-Mn-O catalyst for the removal of nitric oxide in indoor air", Indoor Built Environ., 28/1 (2019) 7-16., 2018 Линк

449. L. Zhao, C. Li, X. Du, G. Zeng, L. Gao, Y. Zhai, T. Wang and J. Zhang, "Effect of Co addition on the performance and structure of V/ZrCe catalyst for simultaneous removal of NO and Hg0 in simulated flue gas", Appl. Surf. Sci., 437 (2018) 390-399 [ISI], 2018 Линк

450. H. Wang, Y. Sun, W. He, Y. Zhou, S.C. Lee and F. Dong, "Visible light induced electron transfer from a semiconductor to an insulator enables efficient photocatalytic activity on insulator-based heterojunctions", Nanoscale, 10 (2018) 15513-15520 [ISI]., 2018 Линк

110. Vassileva, E., Hadjiivanov, K., Stoychev, T., Daiev, Ch.. Chromium speciation analysis by solid-phase extraction on a high surface area TiO2. Analyst, 125, 2000, DOI:10.1039/A906471K, 693-698. ISI IF:4.107

Цитира се в:

451. M.B. Arain, I. Ali, E. Yilmaz and M. Soylak. "Nanomaterial's based chromium speciation in environmental samples: A review". Trends Anal. Chem, 103 (2018) 44, 2018 Линк

111. S. Kuba, Hadjiivanov , K., H. Knözinger. Reactivity of the NO surface species formed after co-adsorption of NOO2 on a WO3/ZrO2 catalyst: An FTIR spectroscopic study. Stud. Surf. Sci. Catal., 130, Elsevier, 2000, ISSN:ISBN 13: 978-0-444-50480-7, 1259-1264. ISI IF:0.489

Цитира се в:

452. S. Mosallanejad, B.Z. Dlugogorski, E.M. Kennedy and M. Stockenhuber. "On the Chemistry of Iron Oxide Supported on γ-Alumina and Silica Catalysts". ACS Omega, 3 (2018) 5362 [ISI], 2018 Линк

112. Hadjiivanov , K., P. Concepcion, H. Knözinger. Analysis of oxidation states of vanadium in vanadia–titania catalysts by the IR spectra of adsorbed NO. Topics in Catalysis, 11, 1-4, Springer International Publishing AG, 2000, ISSN:1022-5528, DOI:10.1023/A:1027269629785, 123-130. ISI IF:2.365

Цитира се в:

453. J. Lai and I.E. Wachs. "A Perspective on the Selective Catalytic Reduction (SCR) of NO with NH3 by Supported V2 O5 -WO3 /TiO2 Catalysts". ACS Catal., 8 (2018) 6537, 2018 Линк

113. Stoilova, D., Koleva, V.. IR study of Solid Phases Formed in the Mg(HCOO)2- Cu(HCOO)2 - H2O System. Journal of Molecular Structure, 553, Elsevier, 2000, ISSN:0022-2860, 131-139. ISI IF:1.602

Цитира се в:

454. Liu, S., Wang, B.-W., Wang, Z.-M., Gao, S. Magnetic layered perovskites of [CH3C(NH2)2]2[M(HCOO)4] (M = Co2+ and Ni2+): Synthesis, structures and properties (2018) Dalton Transactions, 47 (34), pp. 11925-11933., 2018 Линк

114. Hadjiivanov, K., Knözinger, H.. FTIR Study of Low-Temperature CO Adsorption on Cu-ZSM-5: Evidence of the Formation of Cu2+(CO)2 Species. Journal of Catalysis, 191, 2000, DOI:10.1006/jcat.1999.2805, 480-485. ISI IF:2.993

Цитира се в:

455. A. Khartchenko, V.L. Zholobenko, A. Vicente, C. Fernandez, H. Vezin, V. De Waele and S. Mintova. "Formation of copper nanoparticles in LTL nanosized zeolite: Spectroscopic characterization". Phys. Chem. Chem. Phys., 20 (2018) 2880, 2018 Линк

456. O. Pestsov, R. Belykh, R. Novikov, A. Tsyganenko, M. Shelyapina and V. Petranovski. "Application of Low-temperature FTIR Spectroscopy of Adsorbed CO for Characterization of Copper species in Mordenites". Proc. XXXIV European Congress on Molecular Spectroscopy, 19–24.08.2018, Coimbra, Portugal, p. 302 [Google], 2018 Линк

457. O. Pestsov. "Characterization of copper species in mordenites by FTIR spectroscopy". Int. Stud. Conf. Science and Progress, November, 12-14, 2018, St. Petersburg, Russia, ISBN 978-5-98340-395-6, p. 237, 2018 Линк

2001

Page 29: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 29/154

115. Ilieva, D., Kovacheva, D., Petkov, C., Bogachev, G.. Vibrational spectra of R(PO3)3 metaphosphates (R= Ga, In, Y, Sm, Gd, Dy). Journal of Raman Spectroscopy, 32, 11, 2001, ISSN:1097-4555, DOI:10.1002/jrs.753, 893-899. ISI IF:2.671

Цитира се в:

458. Demol, J., Ho, E., Senanayake, G. Sulfuric acid baking and leaching of rare earth elements, thorium and phosphate from a monazite concentrate: Effect of bake temperature from 200 to 800 °C (2018) Hydrometallurgy, 179, pp. 254-267., 2018 Линк

459. Gond, R., Rao, R.P., Pralong, V., Lebedev, O.I., Adams, S., Barpanda, P. Cubic Sodium Cobalt Metaphosphate [NaCo(PO3)3] as a Cathode Material for Sodium Ion Batteries (2018) Inorganic Chemistry, 57 (11), pp. 6324-6332., 2018 Линк

116. Mladenov, M., Stoyanova, R., Zhecheva, E., S. Vassilev. Effect of Mg doping and MgO-surface modification on the cycling stability of LiCoO2 electrodes. Electrochemistry Communications, 3, 8, 2001, ISSN:1388-2481, 410-416. ISI IF:4.847

Цитира се в:

460. Wang, L., Chen, B., Ma, J., Cui, G., Chen, L. "Reviving lithium cobalt oxide-based lithium secondary batteries-toward a higher energy density". Chemical Society Reviews, 47 (17), pp. 6505-6602, 2018, 2018 Линк

461. Yang, Q., Huang, J., Li, Y., Wang, Y., Qiu, J., Zhang, J., Yu, H., Yu, X., Li, H., Chen, L. "Surface-protected LiCoO2 with ultrathin solid oxide electrolyte film for high-voltage lithium ion batteries and lithium polymer batteries". Journal of Power Sources, 388, pp. 65-70, 2018, 2018 Линк

462. Choi, A., Lim, J., Kim, H.-J., Jung, S.C., Lim, H.-W., Kim, H., Kwon, M.-S., Han, Y.K., Oh, S.M., Lee, K.T. "Site-Selective In Situ Electrochemical Doping for Mn-Rich Layered Oxide Cathode Materials in Lithium-Ion Batteries". Advanced Energy Materials, 8 (11), art. no. 1702514, 2018, 2018 Линк

463. Muruganantham, R., Sivakumar, M., Subadevi, R. "Polyol technique synthesis of Nb2O5coated on LiFePO4cathode materials for Li-ion storage". Ionics, 24 (4), pp. 989-999, 2018, 2018 Линк

464. Schipper, F., Bouzaglo, H., Dixit, M., Erickson, E.M., Weigel, T., Talianker, M., Grinblat, J., Burstein, L., Schmidt, M., Lampert, J., Erk, C., Markovsky, B., Major, D.T., Aurbach, D. "rom Surface ZrO2Coating to Bulk Zr Doping by High Temperature Annealing of Nickel-Rich Lithiated Oxides and Their Enhanced Electrochemical Performance in Lithium Ion Batteries". Advanced Energy Materials, 8 (4), art. no. 1701682, 2018, 2018 Линк

465. Hwang, J.-Y., Yu, T.-Y., Sun, Y.-K. "Simultaneous MgO coating and Mg doping of Na[Ni0.5Mn0.5]O2 cathode: Facile and customizable approach to high-voltage sodium-ion batteries". Journal of Materials Chemistry A, 6 (35), pp. 16854-16862, 2018, 2018 Линк

466. Zhang, L.; Wilkinson, DP; Chen, Z.; Zhang, J. (2018). "Lithium-Ion Supercapacitors" Boca Raton: CRC Press., 2018 Линк

467. Tian, Z.; Yu, H.; Zhang, Z.; Xu, X.; "Performance Improvements of Cobalt Oxide Cathodes for Rechargeable Lithium Batteries" ChemBioEng Reviwes 5 (2018) 111-118, 2018 Линк

468. Siwińska-Stefańska, K.; Kubiak, A.; Kurc, B.; Moszyński, D.; Goscianska, J.; Jesionowski, T. "An Active Anode Material Based on Titania and Zinc Oxide Hybrids Fabricated via a Hydrothermal Route: Comprehensive Physicochemical and Electrochemical Evaluations " J. Electrochem. Soc. 165 (2018) A3056-A3066, 2018 Линк

117. Hadjiivanov , K., H. Knözinger. FTIR study of CO and NO adsorption and coadsorption on a Cu/SiO2 catalyst: Probing the oxidation state of copper. Physical Chemistry Chemical Physics, 3, Royal Society of Chemistry, 2001, DOI:10.1039/B009649K, 1132-1137. ISI IF:4.493

Цитира се в:

469. S. Najafishirtari, C. Guglieri, S. Marras, A. Scarpellini, R. Brescia, M. Prato, G. Righi, A. Franchini, R. Magri, L. Manna and M. Colombo, Metal-support interaction in catalysis: The influence of the morphology of a nano-oxide domain on catalytic activity, Appl. Catal. B, 237 (2018) 753 [ISI]., 2018 Линк

470. X. Meng, L. Yuan, H. Guo, B. Hou, C. Chen, D. Sun, J. Wang and D. Li, Carbonylation of methanol to methyl acetate over Cu/TiO2 -SiO2 catalysts: Influence of copper precursors, Mol. Catal., 456 (2018) 1 [ISI]., 2018 Линк

471. H. Yan, X.-T. Qin, Y. Yin, Y.-F. Teng, Z. Jin and C.-J. Jia, Promoted Cu-Fe3 O4 catalysts for low-temperature water gas shift reaction: Optimization of Cu content, Appl. Catal. B, 226 (2018) 182 [ISI]., 2018 Линк

472. S. Mosallanejad, B.Z. Dlugogorski, E.M. Kennedy and M. Stockenhuber, On the Chemistry of Iron Oxide Supported on γ-Alumina and Silica Catalysts, ACS Omega, 3 (2018) 5362 [ISI]., 2018 Линк

473. L.P.C. Silva, M.M. Freitas, R.M. Santos, G. Perez, L.E. Terra, A.C.S.L.S. Coutinho and F.B. Passosa, The effect of metal type on the sulfur tolerance of catalysts supported on niobia for sour water-gas shift reaction, Int. J. Hydrogen Energy, 43 (2018) 3190 [ISI]., 2018 Линк

474. A. Khartchenko, V.L. Zholobenko, A. Vicente, C. Fernandez, H. Vezin, V. De Waele and S. Mintova, Formation of copper nanoparticles in LTL nanosized zeolite: Spectroscopic characterization, Phys. Chem. Chem. Phys., 20 (2018) 2880 [ISI]., 2018 Линк

475. J. Jiang, C. Tu, C. Chen and Y. Lin, Highly Selective Silica-supported Copper Catalysts Derived from Copper Phyllosilicates in the Hydrogenation of Adipic Acid to 1, 6-hexanediol, ChemCatChem 10 (2018) 5449-5458 doi: 10.1002/cctc.201801580 [ISI]., 2018 Линк

476. W. Suprun, D. Worch and K. Soja, Adsorption of nitrogrnoxides on Ag+, Cu+, and Fe+ oxide supported catalysts, Изв. Санкт-

Page 30: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 30/154

Петерб. Гос. Технол. Инст., 42 (2018) 4, 2018 Линк

477. H. Jun, Spectroscopic studies of Cu-, Zn-based model and practical catalysts for COx hydrogenation, Ph. D. Thesis, Xiamen University, Xiamen, China, 2018 [GS]., 2018

478. X. Wang, A. Shishkin, F. Hemmingsson, M. Skoglundh, F. Martinez-Casado, L. Bock, A. Idström, L. Nordstierna, H. Härelind and P. Carlsson, Insight into the Balancing Effect of Active Cu Species for Hydrogenation of Carbon-Oxygen Bonds, RSC Adv., 8 (2018) 36369 (ISI) [pubs.rsc.org]., 2018 Линк

479. X. Wang, N. Martin, J. Nilsson, S. Carlson, J. Gustafson, M. Skoglundh and P. Carlsson, "Copper-Modified Zeolites and Silica for Conversion of Methane to Methanol", Catalysts, 8 (2018) 545., 2018 Линк

118. A. Milushev, Hadjiivanov , K.. FTIR study of CO and NOx adsorption and co-adsorption on Cu/silicalite-1. Physical Chemistry Chemical Physics, 3, Royal Society of Chemistry, 2001, DOI:10.1039/B105722G, 5337-5341. ISI IF:4.493

Цитира се в:

480. W. Suprun, D. Worch and K. Soja, Adsorption of nitrogrnoxides on Ag+, Cu+, and Fe+ oxide supported catalysts, Изв. Санкт-Петерб. Гос. Технол. Инст., 42 (2018) 4, 2018 Линк

119. Hadjiivanov, K., Ivanova, E., Klissurski, D.. Site-specified and complex-specified formation of geminal species during adsorption of small molecules on cationic sites. Catalysis Today, 70, 1-3, 2001, DOI:10.1016/S0920-5861(01)00408-4, 73-82. ISI IF:3.893

Цитира се в:

481. M.J. Menart, The Role of Acidity in Heterogeneous Nickel Catalysts for the Oligomerization of Light Olefins, Ph. D. Thesis, Colorado School of Mines, USA, 2018 [GS]., 2018 Линк

120. Ilieva, D., Jivov, B., Kovacheva, D., Tsacheva, Ts., Dimitriev, Y., Bogachev, G., Petkov, Ch.. FT-IR and Raman spectra of Gd phosphate crystals and glasses. Journal of Non-Crystalline Solids, 293-295, 1, 2001, ISSN:0022-3093, DOI:10.1016/S0022-3093(01)00778-5, 562-568. ISI IF:1.766

Цитира се в:

482. Demol, J., Ho, E., Senanayake, G. Sulfuric acid baking and leaching of rare earth elements, thorium and phosphate from a monazite concentrate: Effect of bake temperature from 200 to 800 °C (2018) Hydrometallurgy, 179, pp. 254-267., 2018 Линк

121. Balarew, Chr, Tepavitcharova, S, Rabadjieva, D, Voigt, W. Solubility and crystallization in the system MgCl2-MgSO4-H2O at 50 and 75°C. Journal of Solution Chemistry, 30, 9, Springer New York, 2001, ISSN:0095-9782, 815-823. SJR:0.456, ISI IF:1.235

Цитира се в:

483. Li, H., Guo, L. & Li, J., “Water Activity and Solubility of the System MgCl2–RbCl–H2O at 323.15 K, ” J Solution Chem, 2018., 2018 Линк

484. Boris S. Krumgalz, Temperature Dependence of Mineral Solubility in Water. Part 3. Alkaline and Alkaline Earth Sulfates, Journal of Physical and Chemical Reference Data (2018) 47(2):023101, 2018, 2018 Линк

485. Ling-zong Menga, Dan Li, Ya-fei Guoa, Tian-long Deng, Solid–Liquid Metastable Phase Equilibria in the Ternary System (MgCl2 + MgSO4 + H2O) at 323.15 K, ISSN 0036-0236, Russian Journal of Inorganic Chemistry, Vol. 63, No. 10, pp. 1363–1367 DOI: 10.1134/S0036023618100121, 2018, 2018 Линк

122. Mihaylov, M., Hadjiivanov , K., H. Knözinger. Formation of Ni(CO)4 during the Interaction between CO and Silica-supported Nickel Catalyst: An FTIR Spectroscopy Study. Catalysis Letters, 76, 1, Springer US, 2001, ISSN:1572-879X, DOI:10.1023/A:1016786023456, 59-63. ISI IF:2.307

Цитира се в:

486. Collinge, G., Kruse, N., McEwen, J.-S., Dissolution of CoCu catalyst step defects by Co subcarbonyl formation (2018) Journal of Catalysis, 368, pp. 31-37., 2018 Линк

487. Soszka, E., Reijneveld, H.M., Jȩdrzejczyk, M., Rzeźnicka, I., Grams, J., Ruppert, A.M., "Chlorine Influence on Palladium Doped Nickel Catalysts in Levulinic Acid Hydrogenation with Formic Acid as Hydrogen Source", ACS Sustainable Chemistry and Engineering, 6/11 (2018) 14607 -14613., 2018 Линк

488. Witzke, M.E., Almithn, A., Coonrod, C.L., Hibbitts, D.D., Flaherty, D.W., "Mechanisms and Active Sites for C-O Bond Rupture within 2-Methyltetrahydrofuran over Ni, Ni12P5, and Ni2P Catalysts", ACS Catalysis, 8/8 (2018) 7141-7157., 2018 Линк

489. Bai, Y., Zhang, J., Yang, G., Zhang, Q., Pan, J., Xie, H., Liu, X., Han, Y., Tan, Y. Insight into the Nanoparticle Growth in Supported Ni Catalysts during the Early Stage of CO Hydrogenation Reaction: The Important Role of Adsorbed CO Molecules (2018) ACS Catalysis, 8 (7), pp. 6367-6374., 2018 Линк

490. Joshi, R., Zhang, G., Miller, J.T., Gounder, R. Evidence for the Coordination-Insertion Mechanism of Ethene Dimerization at Nickel Cations Exchanged onto Beta Molecular Sieves (2018) ACS Catalysis, pp. 11407-11422., 2018 Линк

123. Radev D. D., Klissurski D.. Tribochemical Synthesis and SHS of Diborides of Titanium and Zirconium. Journal of Materials Synthesis and

Page 31: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 31/154

Processing, 9, 3, 2001, ISSN:1064-7562, DOI:10.1023/A:1013245413840, 131-136. ISI IF:0.49

Цитира се в:

491. Mondal, S., Chakraborty, S. & Das, S. J. of Materi Eng and Perform (2018) 27: 6040. https://doi.org/10.1007/s11665-018-3666-2, 2018 Линк

492. Pourbagheri, H. & Aghajani, SHS-Produced Al–Ti–B Master Alloys: Performance in Commercial Al Alloy H. Int. J Self-Propag. High-Temp. Synth. (2018) 27: 245. https://doi.org/10.3103/S1061386218040052, 2018 Линк

493. Nesmelov D.D., Lysenkov A.S., Danilovich D.P., Kotsar' T.V., Ordanian S.S. Collective synthesis of the CaB6‒TiB2 heterogeneous powders. NOVYE OGNEUPORY (NEW REFRACTORIES). 2018;(10):31-36. (In Russ.), 2018 Линк

494. Makarenko, G.N., Krushinska, L.A., Timofeeva, I.I. et al. Highly Dispersed Powders in Boride–Silicide Systems, Powder Metall Met Ceram (2018) 56: 487. https://doi.org/10.1007/s11106-018-9920-1, 2018 Линк

124. Hadjiivanov, K., Knözinger, H., Ivanova, E., Dimitrov, L.. FTIR study of low-temperature CO and 15N2 adsorption on a CaNaY zeolite: formation of site-specified Ca2+(CO)3 and Ca2+(15N2)3 complexes. Physical Chemistry Chemical Physics, 3, Royal Society of Chemistry, 2001, DOI:10.1039/B101782I, 2531-2536. ISI IF:4.493

Цитира се в:

495. K. Wang, B. Guan, K. Li, R. Zhan, H. Lin and Z. Huang, J. Shanghai Jiao Tong Univ. (Sci.) 23 (2018) 18 [ISI]., 2018

125. Mehandjiev, D., Naydenov, A., Ivanov, G.. Ozone decomposition, benzene and CO oxidation over NiMnO3-ilmenite and NiMn2O4-spinel catalysts. Applied Catalysis A: General, 206, 1, Elsevier, 2001, ISSN:0926860X, DOI:10.1016/S0926-860X(00)00570-6, 13-18. ISI IF:3.94

Цитира се в:

496. Liu, G., Chen, L., Yu, J., Feng, N., Meng, J., Fang, F., Wang, L., Wan, H., Guan, G., Interphase strengthening birnessite MnO2coating on three-dimensional Ni foam for soot removal(2018) Applied Catalysis A: General, 568, pp. 157-167., 2018 Линк

497. Li, X., Ma, J., Yang, L., He, G., Zhang, C., Zhang, R., He, H., Oxygen Vacancies Induced by Transition Metal Doping in γ-MnO2 for Highly Efficient Ozone Decomposition (2018) Environmental Science and Technology, 52 (21), pp. 12685-12696., 2018 Линк

498. Chen, Y., Qu, W., Li, C., Chen, J., Ma, Z., Tang, X., Ultra-Lowerature Ozone Abatement on α-MnO2(001) Facets with Down-Shifted Lowest Unoccupied Orbitals (2018) Industrial and Engineering Chemistry Research, 57 (37), pp. 12590-12594., 2018 Линк

499. Wang, D., Xu, H., Ma, J., Lu, X., Qi, J., Song, S., Morphology Control Studies of MnTiO3 Nanostructures with Exposed {0001} Facets as a High-Performance Catalyst for Water Purification (2018) ACS Applied Materials and Interfaces, 10 (37), pp. 31631-31640., 2018 Линк

500. Zhu, G., Zhu, J., Li, W., Yao, W., Zong, R., Zhu, Y., Zhang, Q., Tuning the K+Concentration in the Tunnels of α-MnO2to Increase the Content of Oxygen Vacancy for Ozone Elimination (2018) Environmental Science and Technology, 52 (15), pp. 8684-8692., 2018 Линк

501. Liu, Y., Yang, W., Zhang, P., Zhang, J., Nitric acid-treated birnessite-type MnO2: An efficient and hydrophobic material for humid ozone decomposition (2018) Applied Surface Science, 442, pp. 640-649., 2018 Линк

502. Wang, H., Huang, Z., Jiang, Z., Jiang, Z., Zhang, Y., Zhang, Z., Shangguan, W., Trifunctional C MnO Catalyst for Enhanced Stable Simultaneously Catalytic Removal of Formaldehyde and Ozone(2018) ACS Catalysis, 8 (4), pp. 3164-3180., 2018 Линк

503. Chandrasekaran, S., Bowen, C., Zhang, P., Li, Z., Yuan, Q., Ren, X., Deng, L., Spinel photocatalysts for environmental remediation, hydrogen generation, CO2 reduction and photoelectrochemical water splitting (2018) Journal of Materials Chemistry A, 6 (24), pp. 11078-11104., 2018 Линк

504. E. F. Mohamed, G. Awad, H. Zaitan, C. Andriantsiferana, M-H. Manero, Transition metals-incorporated zeolites as environmental catalysts for indoor air ozone decomposition, Environmental Technology, (2018) 39(7) 878-886., 2018 Линк

505. Marina Duplančić, Vesna Tomašić & Zoran Gomzi, Catalytic oxidation of toluene: comparative study over powder and monolithic manganese-nickel mixed oxide catalysts, Environmental Technology, (2018) 39(15) 2004-2016., 2018 Линк

126. Andreeva, D., Tabakova, T., Ilieva, L., Naydenov, A., Mehandjiev, D., Abrashev, M. V.. Nanosize gold catalysts promoted by vanadium oxide supported on titania and zirconia for complete benzene oxidation. Applied Catalysis A: General, 209, 1-2, Elsevier, 2001, DOI:10.1016/S0926-860X(00)00766-3, 291-300. ISI IF:3.94

Цитира се в:

506. Tan, T.H., Wong, R.J., Scott, J., Ng, Y.H., Taylor, R.A., Aguey-Zinsou, K.-F., Amal, R., Multipronged Validation of Oxalate C-C Bond Cleavage Driven by Au-TiO2 Interfacial Charge Transfer Using Operando DRIFTS (2018) ACS Catalysis, 8 (8), pp. 7158-7163., 2018 Линк

127. Georgieva, I., Mintcheva, N., Trendafilova, N., Mitewa, M. IR study of the N,N’,N’’–triphenylguanidine and its imine nitrogen coordinated Pd(II) complexes. Vibrational Spectroscopy, 27, 2, Elsevier, 2001, 153-164. ISI IF:2.003

Цитира се в:

507. Kajamuhideen, M.S., Sethuraman, K., Ramamurthi, K., Crystal growth, physical properties, and theoretical investigation on organic

Page 32: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 32/154

acentric single crystal towards efficient second-order NLO applications: Triphenylguanidine (2018) Applied Physics A: Materials Science and Processing, 124 (11), art. no. 764, , 2018 Линк

128. Hadjiivanov , K., J.-C. Lavalley. FT-IR Spectroscopic Study of CO Adsorption on Monoclinic Zirconia of Different Hydroxylation Degrees. Catalysis Communications, 2, Elsevier, 2001, DOI:10.1016/S1566-7367(01)00020-6, 129-133. ISI IF:3.699

Цитира се в:

508. П.А. Коц, Закономерности синтеза и каталитического действия Zr-содержащих цеолитов BEA в альдольной конденсации. Диссертация кандидата технических наук, МГУ, Москва, Русия, 2018 [Google]., 2018

509. W. Zhou, Z. Ma, S. Guo, M. Wang, J. Wang, M. Xia, L. Jia, B. Hou, D. Li and Y. Zhao, Comparative study of CO adsorption on zirconia polymorphs with DRIFT and transmission FT-IR spectroscopy, Appl. Surf. Sci., 427 (2018) 867 [ISI]., 2018 Линк

129. Stoilova, D., Колева, В.. Infrared Study of nOD Modes in Isotopically Dilute (HDO)Isostructural Compounds M(HCOO)2.2H2O (M=Mn,Fe,Co,Ni,Cu,Zn) with Matrix-Isolated Guest Ions (Cu2+ in M(HCOO)2.2H2O and M2+ in Cu(HCOO)2.2H2O. Journal of Molecular Structure, 560, Elsevier, 2001, 15-21. ISI IF:2.011

Цитира се в:

510. Liu, S., Wang, B.-W., Wang, Z.-M., Gao, S. Magnetic layered perovskites of [CH3C(NH2)2]2[M(HCOO)4] (M = Co2+ and Ni2+): Synthesis, structures and properties (2018) Dalton Transactions, 47 (34), pp. 11925-11933, 2018 Линк

130. Gaudin, E., Taulelle, F., Stoyanova, R., Zhecheva, E., Alcantara, R., Lavela, P., Tirado, J. L.. Cobalt(III) effect on 27Al NMR chemical shifts in LiAlxCo1-xO2. Journal of Physical Chemistry B, 105, 34, 2001, ISSN:1520-6106, 8081-8087. ISI IF:3.187

Цитира се в:

511. Faenza, N.V., Pereira, N., Halat, D.M., Vinckeviciute, J., Bruce, L., Radin, M.D., Mukherjee, P., Badway, F., Halajko, A., Cosandey, F., Grey, C.P., Van Der Ven, A., Amatucci, G.G. "Phase Evolution and Degradation Modes of R3 m LixNi1- y- zCoyAlzO2 Electrodes Cycled Near Complete Delithiation". Chemistry of Materials, 30 (21), pp. 7545-7574, 2018, 2018 Линк

512. Singh, L., Kumar, A., Lee, H., Lee, J., Ji, M., Lee, Y. "Ultrafast auto flame synthesis for the mass production of LiCoO2 as a cathode material for Li-ion batteries". Journal of Solid State Electrochemistry, 22 (8), pp. 2561-2568, 2018, 2018 Линк

2002

131. Koleva, V., Stoilova, D.. Infrared and Raman Studies of the Solids in the Mg(CH3COO)2 – Zn(CH3COO)2 - H2O System. Journal of Molecular Structure, 611, Elsevier, 2002, ISSN:0022-2860, 1-8. ISI IF:1.602

Цитира се в:

513. Zhou, B., Xu, B., Liu, Z., Yu, S., Yarmolenko, M.A., Rogachev, A.V. Synthesis of photoluminescent zinc acetate–polyethylene composite coatings by pulse laser-assisted electron beam dispersion (2018) Journal of Materials Science, 53 (17), pp. 12214-12230., 2018 Линк

132. Hadjiivanov , K., P. Lukinskas, H. Knözinger. Detection of Reduced W n+ Sites on WO3–ZrO2 and Pt/WO3–ZrO2 Catalysts by Infrared Spectroscopy of Adsorbed NO. Catalysis Letters, 82, 1, Springer International Publishing AG, 2002, ISSN:1011-372X, DOI:10.1023/A:1020592125316, 73-77. ISI IF:2.307

Цитира се в:

514. M. Zhu and C. Chen, Hydrogenolysis of glycerol to 1, 3-propanediol over Li2 B4 O7 -modified tungsten–zirconium composite oxides supported platinum catalyst, React. Kinet. Mechan. Catal., 124 (2018) 683 [ISI]., 2018 Линк

133. Hadjiivanov, K., Knözinger, H., Milushev, A.. FTIR study of low-temperature CO adsorption on Cu/silicalite-1. Catalysis Communications, 3, 2002, DOI:10.1016/S1566-7367(01)00067-X, 37-44. ISI IF:1.89

Цитира се в:

515. X. Meng, L. Yuan, H. Guo, B. Hou, C. Chen, D. Sun, J. Wang and D. Li, Carbonylation of methanol to methyl acetate over Cu/TiO2 -SiO2 catalysts: Influence of copper precursors, Mol. Catal., 456 (2018) 1 [ISI]., 2018 Линк

134. Stoilova, D., Koleva, V., Vassileva, V.. Infrared Study of Some Solid Synthetic Phases of the Malachite - Hydrozincite Series. Spectrochimica Acta Part A, 58, 9, Elsevier, 2002, ISSN:1386-1425, 2051-2059. ISI IF:2.353

Цитира се в:

516. Zhang, Q., Liu, H., Xu, Y., Wang, L.3D nanoflower-like zinc hydroxyl carbonates for high performance asymmetric supercapacitors (2018) Journal of Solid State Chemistry, 267, pp. 76-84., 2018 Линк

517. Füger, A., Méheut, M., Mavromatis, V., Leis, A., Dietzel, M. Oxygen isotope fractionation during smithsonite formation from

Page 33: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 33/154

aqueous solutions (2018) Chemical Geology, 495, pp. 76-89., 2018 Линк

518. Jia, C., Li, H., Liu, B., Qiao, Z., Zhang, Z., Sun, C., Yang, L., Chen, G. Sorption Performance and Reproducibility of ZIF-8 Slurry for CO2CH4 Separation with the Presence of Water in Solvent (2018) Industrial and Engineering Chemistry Research, 57 (37), pp. 12494-12501., 2018 Линк

519. Liu, S., Teng, L., Zhao, Y., Liu, Z., Zhang, J., Ikram, M., Rehman, A.U., Li, L., Shi, K. Facile route to synthesize porous hierarchical Co3O4/CuO nanosheets with high porosity and excellent Nox sensing properties at room temperature (2018) Applied Surface Science, 450, pp. 91-101., 2018 Линк

520. zur Loye, K.D., Latshaw, A.M., Smith, M.D., zur Loye, H.-C. Ba3Na(OH)3(CO3)2: A Non-centrosymmetric Hydroxycarbonate Crystallized Using the Hydroflux Method (2018) Journal of Chemical Crystallography, 48 (3), pp. 103-108., 2018 Линк

521. Liu, Z., Teng, F. Understanding the Correlation of Crystal Atoms with Photochemistry Property: Zn5(OH)6(CO3)2 vs. ZnCO3. (2018) ChemistrySelect, 3 (31), pp. 8886-8894., 2018 Линк

522. Yang, X., Meng, Q., Ding, G., Wang, Y., Chen, H., Zhu, Y.L., Li, Y.W. Construction of novel Cu/ZnO-Al2O3 composites for furfural hydrogenation: The role of Al components (2018) Applied Catalysis A: General, 561, pp. 78-86., 2018 Линк

523. Saarimaa, V., Kaleva, A., Nikkanen, J.-P., Manni, J., Lange, C., Paunikallio, T., Laihinen, T., Heinonen, S., Levänen, E., Väisänen, P., Markkula, A. Tailoring of Versatile Surface Morphologies on Hot Dip Galvanized Steel in Wet CO2: Aspects on Formation, Barrier Properties, and Utilization as a Substrate for Coatings (2018) ACS Applied Materials and Interfaces, 10 (25), pp. 21730-21739., 2018 Линк

524. Pourmortazavi, S.M., Rahimi-Nasrabadi, M., Ahmadi, F., Ganjali, M.R. CuCO3 and CuO nanoparticles; facile preparation and evaluation as photocatalysts (2018) Journal of Materials Science: Materials in Electronics, 29 (11), pp. 9442-9451., 2018 Линк

525. Saarimaa, V., Kaleva, A., Paunikallio, T., Nikkanen, J.-P., Heinonen, S., Levänen, E., Väisänen, P., Markkula, A. Convenient extraction method for quantification of thin zinc patina layers (2018) Surface and Interface Analysis, 50 (5), pp. 564-570., 2018 Линк

526. Winiarski, J., Tylus, Wł., Winiarska, K., Szczygieł, I., Szczygieł, B. XPS and FT-IR Characterization of Selected Synthetic Corrosion Products of Zinc Expected in Neutral Environment Containing Chloride Ions (2018) Journal of Spectroscopy, 2018, art. no. 2079278, , 2018 Линк

527. Mota, N., Guil-Lopez, R., Pawelec, B.G., Fierro, J.L.G., Navarro, R.M. Highly active Cu/ZnO-Al catalyst for methanol synthesis: Effect of aging on its structure and activity (2018) RSC Advances, 8 (37), pp. 20619-20629., 2018 Линк

528. Feng, M., Lu, X., Jiang, K., Zhang, J., Xin, J., Shi, C., Wang, K., Zhang, S. One-step preparation of an antibacterial chitin/Zn composite from shrimp shells using urea-Zn(OAc)2.2H2O aqueous solution (2018) Green Chemistry, 20 (10), pp. 2212-2217., 2018 Линк

529. Beaussant Törne, K., Khan, F. A., Örnberg, A., & Weissenrieder, J. " Zn-Mg and Zn-Ag degradation mechanism under biologically relevant conditions". Surface Innovations, (2018) 6, 81-92., 2018 Линк

135. Weingand, T., Kuba, S., Hadjiivanov, K., Knözinger, H.. Nature and Reactivity of the Surface Species Formed after NO Adsorption and NO + O2 Coadsorption on a WO3–ZrO2 Catalyst. Journal of Catalysis, 209, 2002, DOI:10.1006/jcat.2002.3654, 539-546. ISI IF:6.9

Цитира се в:

530. I. Castellanos and O. Marie, Fe-HFER and Cu-HFER as catalysts for the NOX SCR using acetylene as a reducing agent: Reaction mechanism revealed by FT-IR operando study coupled with 15NO isotopic labelling, App. Catal. B, 223(2018)143 [ISI]., 2018 Линк

531. W. Zhang, X. Dong, B. Jia, J. Zhong, Y. Sun and F. Dong, 2D BiOCl/Bi12O17Cl2 nanojunction: Enhanced visible light photocatalytic NO removal and in situ DRIFTS investigation, Appl. Surf. Sci., 430 (2018) 571 [ISI]., 2018 Линк

532. J. Li, X. Dong, Y. Sun, G. Jiang, Y. Chu, S.C. Lee and F. Dong, Tailoring the rate-determining step in photocatalysis via localized excess electrons for efficient and safe air cleaning, Appl. Catal. B, 239 (2018) 187 [ISI]., 2018 Линк

533. W. Cui, J. Li, Y. Sun, H. Wang, G. Jiang, S.C. Lee and F. Dong, Enhancing ROS generation and suppressing toxic intermediate production in photocatalytic NO oxidation on O/Ba co-functionalized amorphous carbon nitride, Appl. Catal. B, 237 (2018) 938 [ISI]., 2018 Линк

534. G. Jiang, J. Cao, M. Chen, X. Zhang and F. Dong, Photocatalytic NO oxidation on N-doped TiO2 /g-C3 N4 heterojunction: Enhanced efficiency, mechanism and reaction pathway, Appl. Surf. Sci., 458 (2018) 77 [ISI]., 2018 Линк

535. W. Zhang, X. Dong, Y. Liang, Y. Sun and F. Dong, Ag/AgCl nanoparticles assembled on BiOCl/Bi12 O17 Cl2 nanosheets: Enhanced plasmonic visible light photocatalysis and in situ DRIFTS investigation, Appl. Surf. Sci., 455 (2018) 236 [ISI]., 2018 Линк

536. J. Li P. Yan, K. Li, W. Cen, X. Yu, S. Yuan, Y. Chu and Z. Wang, Generation and transformation of ROS on g-C3 N4 for efficient photocatalytic NO removal: A combined in situ DRIFTS and DFT investigation, Chin. J. Catal., 39 (2018) 1695 [ISI]., 2018 Линк

537. P.R. Kelleher, G.L. Haller, S. Casale, C. Méthivier and C. Thomas, Assessing carbon or tungstates coverage of ZrO2 nanoparticles supported on MWCNT via NOx -TPD, Nano-Struct. & Nano-Objects, 16 (2018) 110 [ISI]., 2018 Линк

538. M. Barreau, X. Courtois and F. Can, FT-IR spectroscopy study of HNCO adsorption and hydrolysis over oxide-based samples dedicated to deNOx processes, Appl. Catal. A, 552 (2018) 147 [ISI]., 2018 Линк

136. Hadjiivanov , K., V. Avreyska, Klissurski, D., Ts. Marinova. Surface Species Formed after NO Adsorption and NO+ O2 Coadsorption on ZrO2 and Sulfated ZrO2: An FTIR Spectroscopic Study. Langmuir, 18, American Chemical Society, 2002, DOI:10.1021/la0110895, 1619-1625. ISI IF:4.457

Page 34: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 34/154

Цитира се в:

539. H. Wang, W. Zhang, X. Li, J. Li, W. Cen, Q. Li and F. Dong, "Highly enhanced visible light photocatalysis and in situ FT-IR studies on Bi metal defective BiOCl hierarchical microspheres", Appl. Catal. B, 225/5 (2018) 218-227., 2018 Линк

540. J. Li, X. Dong, Y. Sun, G. Jiang, Y. Chu, S.C. Lee and F. Dong, Tailoring the rate-determining step in photocatalysis via localized excess electrons for efficient and safe air cleaning, Appl. Catal. B, 239 (2018) 187[ISI]., 2018 Линк

541. P.R. Kelleher, G.L. Haller, S. Casale, C. Méthivier and C. Thomas, Assessing carbon or tungstates coverage of ZrO2 nanoparticles supported on MWCNT via NOx -TPD, Nano-Struct. & Nano-Objects, 16 (2018) 110 [ISI]., 2018 Линк

542. J. Li P. Yan, K. Li, W. Cen, X. Yu, S. Yuan, Y. Chu and Z. Wang, Generation and transformation of ROS on g-C3 N4 for efficient photocatalytic NO removal: A combined in situ DRIFTS and DFT investigation, Chin. J. Catal., 39 (2018) 1695 [ISI]., 2018 Линк

543. W. He, Y. Sun, G. Jiang, H. Huang, X. Zhang and F. Dong, Activation of amorphous Bi2 WO6 with synchronous Bi metal and Bi2 O3 coupling: Photocatalysis mechanism and reaction pathway, Appl. Catal. B, 232 (2018) 340 [ISI]., 2018 Линк

544. R. Shi, X. Lin, Z. Zheng, R. Feng, Y. Liu, L. Ni and B. Yuan, Selective catalytic reduction of NOx with NH3 over Sb modified CeZrOx catalyst, React. Kinet. Mech. Catal., 124 (2018) 217 [ISI]., 2018 Линк

545. Y. Li, Y. Sun, W. Ho, Y. Zhang, H. Huang, Q. Cai and F. Dong, Highly enhanced visible-light photocatalytic NOx purification and conversion pathway on self-structurally modified g-C3 N4 nanosheets, Sci. Bull., 63 (2018) 609[ISI]., 2018 Линк

546. H. Li, X. Yan, B. Lin, M. Xia, J. Wei, B. Yang and G. Yang, Controllable spatial effect acting on photo-induced CdS CoP SiO2 ball-in-ball nano-photoreactor for enhancing hydrogen evolution, Nano Energy, 47 (2018) 481 [ISI]., 2018 Линк

547. H. Wang, W. He, X. Dong, H. Wang and F. Dong, In situ FT-IR investigation on the reaction mechanism of visible light photocatalytic NO oxidation with defective g-C3 N4, Sci. Bull., 63 (2018) 117 [ISI]., 2018 Линк

548. M. Ran, J. Li, W. Cui, Y. Li, P. Li and F. Dong, Efficient and stable photocatalytic NO removal on C self-doped g-C3 N4 : Electronic structure and reaction mechanism, Catal. Sci. Technol., 8 (2018) 3387 [ISI]., 2018 Линк

549. J. Liao, L. Chen, M. Sun, B. Lei, X. Zeng, Y. Sun and F. Dong, "Improving visible‐light‐driven photocatalytic NO oxidation over BiOBr nanoplates through tunable oxygen vacancies", Chin. J. Catal., 39 (2018) 779 (SI) [sciencedirect]., 2018 Линк

550. H. Wang, Y. Sun, W. He, Y. Zhou, S.C. Lee and F. Dong, "Visible light induced electron transfer from a semiconductor to an insulator enables efficient photocatalytic activity on insulator-based heterojunctions", Nanoscale, 10/33 (2018) 15513-15520., 2018 Линк

137. Mihaylov, M., Hadjiivanov , K.. FTIR Study of CO and NO Adsorption and Coadsorption on Ni–ZSM-5 and Ni/SiO2. Langmuir, 18, 11, American Chemical Society, 2002, DOI:10.1021/la015739g, 4376-7383. ISI IF:4.457

Цитира се в:

551. Miletto, I., Catizzone, E., Bonura, G., Ivaldi, C., Migliori, M., Gianotti, E., Marchese, L., Frusteri, F., Giordano, G., In situ FT-IR characterization of CuZnZr/ferrierite hybrid catalysts for one-pot CO2-to-DME conversion, (2018) Materials, 11 (11), art. no. 2275 ., 2018 Линк

552. Wang, L., Zhu, S., Marinkovic, N., Kattel, S., Shao, M., Yang, B., Chen, J.G. Insight into the synergistic effect between nickel and tungsten carbide for catalyzing urea electrooxidation in alkaline electrolyte (2018) Applied Catalysis B: Environmental, 232, pp. 365-370., 2018 Линк

553. Moussa, S., Concepción, P., Arribas, M.A., Martínez, A., Nature of Active Nickel Sites and Initiation Mechanism for Ethylene Oligomerization on Heterogeneous Ni-beta Catalysts (2018) ACS Catalysis, 8 (5), pp. 3903-3912., 2018 Линк

554. Henry, R., Komurcu, M., Ganjkhanlou, Y., Brogaard, R.Y., Lu, L., Jens, K.-J., Berlier, G., Olsbye, U., Ethene oligomerization on nickel microporous and mesoporous-supported catalysts: Investigation of the active sites, (2018) Catalysis Today, 299, pp. 154-163., 2018 Линк

555. Joshi, R., Zhang, G., Miller, J.T., Gounder, R., Evidence for the Coordination-Insertion Mechanism of Ethene Dimerization at Nickel Cations Exchanged onto Beta Molecular Sieves (2018) ACS Catalysis, pp. 11407-11422., 2018 Линк

556. I.Z. Koleva, H.A. Aleksandrov and G.N. Vayssilov, Proc. 12th Int. Symp. Heterogeneous Catal., 26–29 August 2018, Sofia, Bulgaria, P19 [оригиналът]., 2018

557. B.S. Barth, Untersuchungen zur Adsorption von Stickstoffmonoxid in metall-organischen Gerüstverbin-dungen, Ph. D. Thesis, Friedrich-Alexander-Universität, Erlangen-Nürnberg, Germany, 2018 [GS]., 2018

558. P. Concepción, in Infrared Spectroscopy - Principles, Advances, and Applications, IntechOpen, 2018, p. 1, 2018 Линк

138. T. Venkov, Hadjiivanov , K., Klissurski, D.. IR Spectrtoscopy Study of NO Adsorption and NO + O2 Coadsorption on Al2O3. Physical Chemistry Chemical Physics, 4, Royal Society of Chemistry, 2002, DOI:10.1039/B111396H, 2443-2448. ISI IF:4.493

Цитира се в:

559. S. Tang, L. Ma, M. Luo, Z. Zhang, X. Cao, Z. Huang, R. Xia, Y. Qiu, S. Feng, P. Zhang, C. Xia, Y. Jin and D. Xu, Heterogeneous reaction of Cl2 and NO2 on Γ-Al2 O3 : A potential formation pathway of secondary aerosols, Atmospher. Environ., 188 (2018) 25 [ISI]., 2018 Линк

560. C. Negri, P.S. Hammershøi, T.V.W. Janssens, P. Beato, G. Berlier and S. Bordiga, Investigating the Low Temperature Formation of CuII-(N, O) Species on Cu-CHA Zeolites for the Selective Catalytic Reduction of NOx, Chem. Europ. J., 24 (2018) 12044 [ISI]., 2018 Линк

Page 35: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 35/154

561. W. Yang, Q. Ma, Y. Liu, J. Ma, B. Chu, L. Wang and H. He, Role of NH3 in the Heterogeneous Formation of Secondary Inorganic Aerosols on Mineral Oxides, J. Phys. Chem. A, 122 (2018) 6311 [ISI]., 2018 Линк

562. H. Zhou, M.Y. Ge, S. Wu, B. Ye and Y. Su, Iron based monolithic catalysts supported on Al2 O3 , SiO2 , and TiO2 : A comparison for NO reduction with propane, Fuel, 220 (2018) 330 [ISI]., 2018 Линк

563. T. Chaieb, C. Thomas, T. Sandra, C. Louis and L. Delannoy, Selective Catalytic Reduction of NOx over Au/Al2 O3 : Influence of the Gold Loading on the Promoting Effect of H2 in H2 -Assisted C3 H6 -SCR of NOx, Catal. Lett., 148 (2018) 539 [ISI]., 2018 Линк

564. W. Suprun, D. Worch and K. Soja, Adsorption of nitrogrnoxides on Ag+, Cu+, and Fe+ oxide supported catalysts, Изв. Санкт-Петерб. Гос. Технол. Инст., 42 (2018) 4, 2018 Линк

565. M. Barreau, M.-L. Tarot, D. Duprez, X. Courtois and F. Can, Remarkable enhancement of the selective catalytic reduction of NO at low temperature by collaborative effect of ethanol and NH3 over silver supported catalyst, Appl. Catal. B, 220 (2018) 19-30, 2018 Линк

566. X. Cheng, Y. Cheng, Z. Wang and C. Ma, Comparative study of coal based catalysts for NO adsorption and NO reduction by CO, Fuel, 214 (2018) 230-241, 2018 Линк

139. Hadjiivanov , K., H. Knözinger, Mihaylov, M.. FTIR Study of CO Adsorption on Ni–ZSM-5. J. Phys. Chem. B, 106, 10, American Chemical Society, 2002, DOI:10.1021/jp0132782, 2618-2624. ISI IF:2.693

Цитира се в:

567. A.J. Maia, E.B. Pereira, A.C.Sola, N. Homs, P.R. de la Piscina, B. Louis and M.M. Pereira, Understanding bifunctional behavior of Ni/HZSM5 catalyst under isobutane atmosphere, Mol. Catal. 458B (2018)) 145 doi: 10.1016/j.mcat.2018.02.002 [ISI]., 2018

568. I.Z. Koleva, H.A. Aleksandrov and G.N. Vayssilov, Proc. 12th Int. Symp. Heterogeneous Catal., 26–29 August 2018, Sofia, Bulgaria, P19 [оригиналът]., 2018

569. R. Joshi, G. Zhang, J. Miller and R. Gounder, Evidence for the Coordination–Insertion Mechanism of Ethene Dimerization at Nickel Cations Exchanged onto Beta Molecular Sieves, ACS Catal , 8 (2018) 11407, 2018 Линк

570. R. Henry, M. Komurcu, Y. Ganjkhanlou, R.Y. Brogaard, L. Lu, K.-J. Jens, G. Berlier and U. Olsbye, "Ethene oligomerization on nickel microporous and mesoporous-supported catalysts: Investigation of the active sites", Catal. Today, 299 (2018) 154-163., 2018 Линк

571. D.P. Gamliel, Renewable Fuels Produced from Biomass Pyrolysis Vapors: Catalysis and Reaction Engineering, Ph. D. Thesis, University of Connecticut, Storrs, USA, 2018 [GS]., 2018

572. M.J. Menart, The Role of Acidity in Heterogeneous Nickel Catalysts for the Oligomerization of Light Olefins, Ph. D. Thesis, Colorado School of Mines, USA, 2018 [GS]., 2018

573. L. Wang, S. Zhu, N. Marinkovic, S. Kattel, M. Shao, B. Yang and J.G. Chen, Insight into the synergistic effect between nickel and tungsten carbide for catalyzing urea electrooxidation in alkaline electrolyte, Appl. Catal. B, 232 (2018) 365 [ISI]., 2018 Линк

574. M. Rostamizadeh, F. Yaripour and H. Hazrati, Ni-doped high silica HZSM-5 zeolite (Si/Al  =  200) nanocatalyst for the selective production of olefins from methanol, J. Anal. Appl. Pyrolysis, 132 (2018) 1 [ISI]., 2018 Линк

140. Radostina Stoyanova, Ekaterina Zhecheva, Geoffrey Bromiley, Tiziana Boffa Ballaran, Ricardo Alcántara, Juan-Isidro Corredor, José-Luis Tirado. High-pressure synthesis of Ga-substituted LiCoO2 with layered crystal structure. J. Mater. Chem., 12, 2002, DOI:10.1039/B201030E, 2501-2506. ISI IF:8.256

Цитира се в:

575. Wang, L., Chen, B., Ma, J., Cui, G., Chen, L. "Reviving lithium cobalt oxide-based lithium secondary batteries-toward a higher energy density". Chemical Society Reviews, 47 (17), pp. 6505-6602, 2018, 2018 Линк

141. Koseva, I., Peshev, P., Pechev, S., Gravereau, P., Chaminade, J.-P.. A new strontium lithium titanium oxide, SrLi2Ti6O14: Crystal growth and structure determination. Zeitschrift fur Naturforschung - Section B Journal of Chemical Sciences, 57, 2002, ISSN:09320776, 512-518. SJR:0.248, ISI IF:0.622

Цитира се в:

576. Yu, Haoxiang, et al. "Nitrogen doped carbon coating of PbLi2Ti6O14 as high electrochemical performance anode towards long-life lithium storage." Electrochimica Acta 283 (2018): 1460-1467., 2018 Линк

577. Zhang, Jundong, et al. "Effect of calcination temperature on morphology and electrochemical performance of PbLi2Ti6O14." Ceramics International (2018)., 2018 Линк

578. Dayamani, Allumolu, et al. "Electrochemical and diffusional insights of combustion synthesized SrLi 2 Ti 6 O 14 negative insertion material for Li-ion Batteries." Journal of Power Sources 385 (2018): 122-129., 2018 Линк

579. Peng, Na, et al. "Effect of lithium-site doping on enhancing the lithium storage performance of SrLi2Ti6O14." Electrochimica Acta 265 (2018): 437-447., 2018 Линк

580. Inagaki, Hiroki, and Norio Takami. "Active material, nonaqueous electrolyte battery, battery module, battery pack, automobile and vehicle." U.S. Patent Application No. 10/096, 828., 2018 Линк

Page 36: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 36/154

142. Trendafilova, N., Bauer, G., Georgieva, I., Delchev, V.. Conformational stability and vibrational spectrum of glyoxilic acid oxime predicted from ab initio study. Journal of Molecular Structure, 604, 2, Elsevier, 2002, ISSN:0022-2860, 211-220. ISI IF:1.602

Цитира се в:

581. Hosseini Ghazvini, S.M.B., Safari, P., Mobinikhaledi, A., Moghanian, H., Rasouli, H., Synthesis, characterization, anti-diabetic potential and DFT studies of 7-hydroxy-4-methyl-2-oxo-2H-chromene-8-carbaldehyde oxime (2018) Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy, 205, pp. 111-131., 2018 Линк

143. Mehandjiev, D., Cheshkova, K., Naydenov, A., Georgesku, V.. Catalytic oxidation of CO and C6H6 on alumina-supported Cu-Cr and Co-Cr oxide catalysts in the presence of ozone. Reaction Kinetics, Mechanisms and Catalysis, 76, 2, Springer, 2002, ISSN:01331736, DOI:10.1023/A:1016536011704, 287-293. ISI IF:0.93

Цитира се в:

582. Liu, Y., Yang, W., Zhang, P., Zhang, J., Nitric acid-treated birnessite-type MnO2: An efficient and hydrophobic material for humid ozone decomposition (2018) Applied Surface Science, 442, pp. 640-649., 2018 Линк

144. Zhecheva, E., Stoyanova, R., Jimenez-Mateo, J. M., Alcantara, R., Lavela, P., Tirado, J. L.. EPR study on petroleum cokes annealed at different temperatures and used in lithium and sodium batteries. Carbon, 40, 13, 2002, ISSN:0008-6223, 2301-2306. ISI IF:6.196

Цитира се в:

583. Yamamoto, T.; Nakajima, H.; Inukai, H.; Ohmori, S.; Murakami, C.; Nakaji, D.; Yoshida, H.; Saka, M. "Sodium secondary battery comprising carbonaceous material " US Patent US9899665B2; 2018-02-20, 2018 Линк

584. Wang, B., Fielding, A.J., Dryfe, R.A.W. "In situ electrochemical electron paramagnetic resonance spectroscopy as a tool to probe electrical double layer capacitance" Chemical Communications, 54 (31), pp. 3827-3830, 2018, 2018 Линк

145. Stoychev, D., Stefanov, P., Nicolova, D., Valov, I., Marinova, Ts.. Chemical Composition and Corrosion Resistance of Passive Chromate Films Formed on Stainless Steels 316 L and 1.4301. Materials Chemistry and Physics, 73, 2-3, Elsevier, 2002, ISSN:02540584, DOI:10.1016/S0254-0584(01)00376-5, 252-258. SJR:0.818, ISI IF:2.259

Цитира се в:

585. Cheng, Z., Xue, Y., Ju, H. Chemical coloring on stainless steel by ultrasonic irradiation (2018) Ultrasonics Sonochemistry, 40, pp. 558-566, 2018 Линк

146. Iordanova R., Lefterova E., Uzunov I., Dimitriev Y., Klissurski D.. Non-isothermal crystallization kinetics of V2O5-MoO3-Bi2O3 glasses. J Therm Anal Calorim, 70, 2, Springer Netherlands, 2002, ISSN:1388-6150, 393-404. SJR:0.59, ISI IF:2.209

Цитира се в:

586. C. Ziyuan C. et al. "The Properties for Aluminosilicate Glasses Prepared by Red Mud with Various [Al2O3]/[CaO] Mass Ratio". Journal of Wuhan University of Technology-Mater. Sci. Ed., 33(2), 2018, 363-367, 2018

147. Zhecheva, E., Stoyanova, R., Alcantara, R., Lavela, P., Tirado, J. L.. Cation order/disorder in lithium transition-metal oxides as insertion electrodes for lithium-ion batteries. Pure and Applied Chemistry, 74, 10, 2002, ISSN:0033-4545, 1885-1894. ISI IF:2.492

Цитира се в:

587. Flores, E., Novák, P., Berg, E.J. "In situ and Operando Raman spectroscopy of layered transition metal oxides for Li-ion battery cathodes". Frontiers in Energy Research, 6 (AUG), art. no. 82, 2018, 2018 Линк

148. Hadjiivanov , K., G. Vayssilov. Characterization of Oxide Surfaces and Zeolites by Carbon Monoxide as an IR Probe Molecule. Advances in Catalysis, 47, Elsevier, 2002, ISSN:978-0-12-802126-2, DOI:10.1016/S0360-0564(02)47008-3, 307-511. ISI IF:8.143

Цитира се в:

588. A. Khartchenko, V.L. Zholobenko, A. Vicente, C. Fernandez, H. Vezin, V. De Waele and S. Mintova, "Formation of copper nanoparticles in LTL nanosized zeolite: spectroscopic characterization", Phys. Chem. Chem. Phys., 20 (2018) 2880-2889., 2018 Линк

589. K. Wu, X. Fu, W. Yu, W. Wang, C. Jia, P. Du, R. Si, Y. Wang, L. Li, L. Zhou, L. Sun and C. Yan, Pt-Embedded CuOx -CeO2 Multicore-Shell Composites: Interfacial Redox Reaction-Directed Synthesis and Composition-Dependent Performance for CO Oxidation, ACS Applied Materials and Interfaces 10(40), pp. 34172-34183, 2018 Линк

590. E. Gutierrez-Acebo, Leroux, C., Chizallet, C., Schuurman, Y., Bouchy, C., Metal/Acid Bifunctional Catalysis and Intimacy Criterion for Ethylcyclohexane Hydroconversion: When Proximity Does Not Matter, ACS Catalysis 8(7), pp. 6035-6046, 2018 Линк

591. K. Ma, Z. Cui, Z. Zhang, J. Huang, Z. Sun, Y. Tian, T. Ding and X. Li, Alloy-Mediated Ultra-Low CO Selectivity for Steam Reforming over Cu−Ni Bimetallic Catalysts, ChemCatChem 10(18), pp. 4010-4017, 2018 Линк

592. N. Popovych, P. Kyriienko, Y. Millot, L. Valentin, J. Gurgul, R. Socha, J. Żukrowski, S. Soloviev and S. Dzwigaj, Sn-BEA zeolites prepared by two-step postsynthesis method: Physicochemical properties and catalytic activity in processes based on MPV

Page 37: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 37/154

reduction, Microporous and Mesoporous Materials 268, pp. 178-188, 2018 Линк

593. D.M. Driscoll, D. Troya, P.M. Usov, A.J. Maynes, A.J. Morris and J.R. Morris, Characterization of Undercoordinated Zr Defect Sites in UiO-66 with Vibrational Spectroscopy of Adsorbed CO, Journal of Physical Chemistry C 122(26), pp. 14582-14589, 2018 Линк

594. J. Hulva, Z. Jakub, Z. Novotny, N. Johansson, J. Knudsen, J. Schnadt, M. Schmid, U. Diebold and G.S. Parkinson, "Adsorption of CO on the Fe3O4(001) Surface", J. Phys. Chem. B, 2018, 122 (2), 721–729., 2018 Линк

595. K. Zhao, L. Wang, M. Calizzi, E. Moioli and A. Zuttel, In Situ Control of the Adsorption Species in CO2 Hydrogenation: Determination of Intermediates and Byproducts, Journal of Physical Chemistry C 122(36), pp. 20888-20893, 2018 Линк

596. П.А. Коц, Закономерности синтеза и каталитического действия Zr-содержащих цеолитов BEA в альдольной конденсации. Диссертация кандидата технических наук, МГУ, Москва, Русия, 2018, 2018

597. C. Keturakis, O. Lapina, A. Shubin, V. Terskikh, E. Papulovskiy, I. Yudaev, E. Paukshtis and I. Wachs, ChemSusChem, 11 (2018) 4044 [ISI]., 2018

598. M. Reticcioli, I. Sokolovic, M. Schmid, U. Diebold, M. Setvin and C. Franchini, arXiv:1807.05859 [cond-mat.mtrl-sci] (2018) [ISI]., 2018

599. A.L. Tarasov, V.I. Isaeva, O.P. Tkachenko, V.V. Chernyshev, L.M. Kustov, , Conversion of CO2 into liquid hydrocarbons in the presence of a Co-containing catalyst based on the microporous metal-organic framework MIL-53(Al), Fuel Processing Technology 176, pp. 101-106, 2018 Линк

600. M. Dimitrakopoulou, X. Huang, J. Kröhnert, D. Teschner, S. Praetz, C. Schlesiger, W. Malzer, C. Janke, E. Schwab, F. Rosowski, H. Kaiser, S.A. Schunk, R. Schlögl and A. Trunschke, Insights into structure and dynamics of (Mn, Fe)O: X -promoted Rh nanoparticles, Faraday Discussions 208, pp. 207-225, 2018 Линк

601. P. Lakshmanan and E.D. Park, "Preferential CO Oxidation in H2 over Au/La2O3/Al2O3 Catalysts: The Effect of the Catalyst Reduction Method", Catalysts, 8/5 (2018) 183., 2018 Линк

602. C. Keturakis, O. Lapina, A. Shubin, V. Terskikh, E. Papulovskiy, I. Yudaev, E. Paukshtis and I. Wachs, I.E., Pyrolysis of the Cellulose Fraction of Biomass in the Presence of Solid Acid Catalysts: An Operando Spectroscopy and Theoretical Investigation, ChemSusChem 11 (2018) 4044-4059, 2018 Линк

603. J. Grzybek, B. Gil, W.J. Roth, M. Skoczek, A. Kowalczyk and L. Chmielarz, Characterization of Co and Fe-MCM-56 catalysts for NH3-SCR and N2O decomposition: An in situ FTIR study, Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy 196, pp. 281-288, 2018 Линк

604. F. Mirabella, Water and CO2 Adsorption on Magnetite Surfaces: a Combined Molecular Beam and IRAS Study, Ph. D. Thesis, Humboldt-Universität, Berlin, Germany, 2018, 2018 Линк

605. Y. Chai, S. Liu, Z. Zhao, J. Gong, W. Dai, G. Wu, N. Guan and L. Li, Selectivity Modulation of Encapsulated Palladium Nanoparticles by Zeolite Microenvironment for Biomass Catalytic Upgrading, ACS Catalysis 8(9), pp. 8578-8589, 2018 Линк

606. Z. Buniazet, C. Lorentz, A. Cabiac, S. Maury and S. Loridant, Supported oxides catalysts for the dehydration of isobutanol into butenes: Relationships between acidic and catalytic properties, Molecular Catalysis 451, pp. 143-152, 2018 Линк

607. T.V. Ho, P. Nachtigall and L. Grajciar, The Lewis acidity of three- and two-dimensional zeolites: The effect of framework topology, Catalysis Today 304, pp. 12-21, 2018 Линк

608. J. Chen, J. Zhang, J. Mi, E.D. Garcia, Y. Cao, L. Jiang, L. Oliviero and F. Maugé, Hydrogen production by water-gas shift reaction over Co-promoted MoS2/Al2O3 catalyst: The intrinsic activities of Co-promoted and unprompted sites, International Journal of Hydrogen Energy 43(15), pp. 7405-7410, 2018 Линк

609. N.M. Wilson, Y.-T. Pan, Y.-T. Shao, J.-M. Zuo, H. Yang and D.W. Flaherty, Direct Synthesis of H2O2 on AgPt Octahedra: The Importance of Ag-Pt Coordination for High H2O2 Selectivity, ACS Catalysis 8(4), pp. 2880-2889, 2018 Линк

610. R. Castañeda, L. Pascual and A. Martínez-Arias, Influence of sodium impurities on the properties of CeO2/CuO for carbon monoxide oxidation in a hydrogen-rich stream, Catalysis Communications 108, pp. 88-92, 2018 Линк

611. Y. Wu, L. Dong and B. Li, Effect of iron on physicochemical properties: Enhanced catalytic performance for novel Fe2O3 modified CuO/Ti0.5Sn0.5O2 in low temperature CO oxidation, Molecular Catalysis, 456, pp. 65-74, 2018 Линк

612. D. Ding, X. Xu, P. Tian, X. Liu, J. Xu and Y.‐F. Han, Promotional effects of Sb on Pd-based catalysts for the direct synthesis of hydrogen peroxide at ambient pressure, Chinese Journal of Catalysis 39(4), pp. 673-681, 2018 Линк

613. C. Megías-Sayago, K. Chakarova, A. Penkova, A. Lolli, S. Ivanova, S. Albonetti, F. Cavani and J. Odriozola, Understanding the Role of the Acid Sites in 5-Hydroxymethylfurfural Oxidation to 2, 5-Furandicarboxylic Acid Reaction over Gold Catalysts: Surface Investigation on CexZr1–xO2 Compounds, ACS Catal., 2018, 8 (12), 11154–11164., 2018 Линк

614. X. Dai, W. Jiang, W. Wang, X. Weng, Y. Shang, Y. Xue and Z. Wu, Supercritical water syntheses of transition metal-doped CeO2 nano-catalysts for selective catalytic reduction of NO by CO: An in situ diffuse reflectance Fourier transform infrared spectroscopy study, Chinese Journal of Catalysis 39(4), pp. 728-735, 2018 Линк

615. C.A. Angelucci, R.C. Ambrosio and A.A. Gewirth, Origins of Less Noble Behavior by Au during CO Adsorption, ACS Catalysis 8(3), pp. 2247-2252, 2018 Линк

616. X. Meng, L. Yuan, H. Guo, B. Hou, C. Chen, D. Sun, J. Wang and D. Li, Carbonylation of methanol to methyl acetate over Cu/TiO2 -SiO2 catalysts: Influence of copper precursors, Molecular Catalysis 456, pp. 1-9, 2018 Линк

617. M.J. Menart, The Role of Acidity in Heterogeneous Nickel Catalysts for the Oligomerization of Light Olefins, Ph. D. Thesis, Colorado School of Mines, USA, 2018, 2018 Линк

Page 38: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 38/154

618. N. Popovych, O. Larina, S. Orlyk, P. Kyriienko, S. Soloviev and S. Dzwigaj, "Design of Bifunctional Catalysts Based on Bea Zeolites for Tandem Processes with Participation of Ethanol", Theor. Exp. Chem., 54/4 (2018) 255-264., 2018 Линк

619. S. Sanchez-Salcedo, G. Malavasi, A.J. Salinas, G. Lusvardi, L. Rigamonti, L. Menabue and M. Vallet-Regi, Highly-bioreactive silica-based mesoporous bioactive glasses enriched with gallium(III), Materials 11(3), 367, 2018 Линк

620. M. Reticcioli, I. Sokolovic, M. Schmid, U. Diebold, M. Setvin and C. Franchini, Interplay between adsorbates and polarons: CO on rutile TiO2(110), [cond-mat.mtrl-sci] (2018), 2018 Линк

621. E.G. Chepaikin, A.P. Bezruchenko, G.N. Menchikova, O.P. Tkachenko, L.M. Kustov and A.V. Kulikov, The Oxidation of Carbon Monoxide as an Integrated Part of the Coupled Alkane Oxidation Process: Gas-Phase Oxidation over Supported Metal-Complex Catalysts, Kinetics and Catalysis 59(2), pp. 150-159, 2018 Линк

622. I. Rossetti, B. Bonelli, G. Ramis, E. Bahadori, R. Nasi, A. Aronne and S. Esposito, "New Insights into the Role of the Synthesis Procedure on the Performance of Co-Based Catalysts for Ethanol Steam Reforming", Top. Catal., 61 (2018) 1734-1745., 2018 Линк

623. M.-M. Millet, E. Frei, G. Algara-Siller, R. Schlögl and A. Tarasov, "Surface titration of supported Ni catalysts by O2-pulse thermal analysis", Appl. Catal. A., 566 (2018) 155-163., 2018 Линк

624. G. Tabacchi, "Supramolecular Organization in Confined Nanospaces", ChemPhysChem., 19/11 (2018) 1249-1297., 2018 Линк

625. Y. Chen, J. Lin, L. Li, B. Qiao, J. Liu, Y. Su and X. Wang, Identifying Size Effects of Pt as Single Atoms and Nanoparticles Supported on FeOx for the Water-Gas Shift Reaction, ACS Catalysis 8(2), pp. 859-868, 2018 Линк

626. S. Althahban, Aberration Corrected Analytical Electron Microscopy Studies of Nanometallic Catalysts, Ph. D. Thesis, Lehigh University, Bethlehem, USA, 2018, 2018 Линк

627. K. Tan and Y.V. Chabal, STORING MOLECULE WITHIN POROUS MATERIALS WITH A SURFACE MOLECULAR BARRIER LAYER, USA Patent 0, 104, 668 A1 (2018), 2018 Линк

628. C. Yang, Z. Miao, F. Zhang, L. Li, Y. Liu, A. Wang and T. Zhang, Hydrogenolysis of methyl glycolate to ethanol over a Pt–Cu/SiO2 single-atom alloy catalyst: a further step from cellulose to ethanol, Green Chem., 20 (2018) 2142, 2018 Линк

629. A. Marikutsa, L. Yang, M. Rumyantseva, M. Batuk, J. Hadermann and A. Gaskov, Sensitivity of nanocrystalline tungsten oxide to CO and ammonia gas determined by surface catalysts, Sensors and Actuators, B: Chemical 277, pp. 336-346, 2018 Линк

630. A.L. Gould, C. Richard, A. Catlow and A.J. Logsdail, Computational investigation of CO adsorbed on Aux , Agx and (AuAg)x nanoclusters (x = 1 − 5, 147) and monometallic Au and Ag low-energy surfaces, European Physical Journal B 91(2), 32, 2018 Линк

631. S.A.Yashnik, G.A.Urzhuntsev, A.I.Stadnichenko, D.A.Svintsitskiy, A.V.Ishchenkoa, A.I.Boronina and Z.R.Ismagilov, Effect of Pd-precursor and support acid properties on the Pd electronic state and the hydrodesulfurization activity of Pd-zeolite catalysts, Catal. Today323 (2018) 257, 2018 Линк

632. K. Tan, S. Jensen, S. Zuluaga, E.K. Chapman, H. Wang, R. Rahman, J. Cure, T.-H. Kim, J. Li, T. Thonhauser and Y. J. Chabal, Role of Hydrogen Bonding on Transport of Coadsorbed Gases in Metal-Organic Frameworks Materials, Journal of the American Chemical Society 140(3), pp. 856-859, 2018 Линк

633. L. Zhang, X. Yao, Y. Lu, C. Sun, C. Tang, F. Gao and L. Dong, Effect of precursors on the structure and activity of CuO-CoOx/γ-Al2O3 catalysts for NO reduction by CO, J. Colloid Interface Sci., 509 (2018) 334-345, 2018 Линк

634. E. Kolobova, Y. Kotolevich, E. Pakrieva, G. Mamontov, M.H. Farias, V.C. Corberán, N. Bogdanchikova, J. Hemming, A. Smeds, P. Mäki-Arvela, D.Yu. Murzin and A. Pestryakov, Modified Ag/TiO2 systems: Promising catalysts for liquid-phase oxidation of alcohols, Fuel 234, pp. 110-119, 2018 Линк

635. L. Sun, Y. Chai, W. Dai, G. Wu, N. Guan and L. Li, Oxidative dehydrogenation of propane over Pt-Sn/Si-beta catalysts: Key role of Pt-Sn interaction, Catalysis Science and Technology 8(12), pp. 3044-3051, 2018 Линк

636. B. Calvo, C. Marshall, T. Krahl, J. Kröhnert, A. Trunschke, G. Scholz, T. Braun and E. Kemnitz, Comparative study of the strongest solid Lewis acids known: ACF and HS-AlF3, Dalton Transactions 47(2018), 16461-16473, 2018 Линк

637. D. Heyl, C. Kreyenschulte, V.A. Kondratenko, U. Bentrup, E.V. Kondratenko, A. Brückner, Alcohol Synthesis from CO2, H2, and Olefins over Alkali‐Promoted Au Catalysts—A Catalytic and In situ FTIR Spectroscopic Study, ChemSusChem (2018) doi: 10.1002/cssc.201801937, 2018 Линк

638. E. Hessou, W. Kanhounnon, D. Rocca, H. Monnier, C. Vallières and M. Badawi, Adsorption of NO, NO2, CO, H2O and CO2 over isolated monovalent cations in faujasite zeolite: a periodic DFT investigation, Theoretical Chemistry Accounts 137(12), 161, 2018 Линк

639. F. Bin, R. Kang, X. Wei, Q. Hao and B. Dou, Self-sustained combustion of carbon monoxide over CuCe0.75Zr0.25Oδ catalyst: Stability operation and reaction mechanism , Proc. Combust. Inst., 2018 Линк

640. M. Velthoen, S. Nab and B. Weckhuysen, Probing acid sites in solid catalysts with pyridine UV-Vis spectroscopy, Physical Chemistry Chemical Physics 20(33), pp. 21647-21659, 2018 Линк

641. E. Borfecchia, P. Beato, S. Svelle, U. Olsbye, C. Lamberti and S. Bordiga, Cu-CHA-a model system for applied selective redox catalysis, Chemical Society Reviews 47(22), pp. 8097-8133, 2018 Линк

642. B. Ge, Y. Xu, H. Zhao, H. Sun, Y. Guo and W. Wang, High performance gas separation mixed matrix membrane fabricated by incorporation of functionalized submicrometer-sized metal-organic framework, Materials 11(8), 1421, 2018 Линк

643. H. Hosseiniamoli, Catalytic Combustion of Ventilation Air Methane An in Depth Study of Catalyst Deactivation, Ph. D. Thesis, The

Page 39: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 39/154

University of Newcastle, Australia, 2018, 2018 Линк

644. J. Chen, Y. Wanyan, J. Zeng, H. Fang, Z. Li, Y. Dong, R. Qin, C. Wu, D. Liu, M. Wang, Q. Kuang, Z. Xie and L. Zheng, Surface Engineering Protocol to Obtain an Atomically Dispersed Pt/CeO2 Catalyst with High Activity and Stability for CO Oxidation, ACS Sustainable Chemistry and Engineering 6(11), pp. 14054-14062, 2018 Линк

645. S. Rogers, C.R.A. Catlow, D. Gianolio, P.P. Wells and N. Dimitratos, Supported metal nanoparticles with tailored catalytic properties through sol-immobilisation: Applications for the hydrogenation of nitrophenols, Faraday Discussions 208, pp. 443-454, 2018 Линк

646. F. Carniato, C. Bisio, C. Evangelisti, R. Psaro, V. Dal Santo, D. Costenaro, L. Marchese and M. Guidotti, Iron-montmorillonite clays as active sorbents for the decontamination of hazardous chemical warfare agents, Dalton. Trans., 47 (2018) 2939 [ISI]., 2018 Линк

647. E. Redina, K. Vikanova, A. Shesterkina and L.M. Kustov, Gold-Doped Fe/TiO2 Catalysts: A Case of Extra-Low Gold Loading in Glycerol Oxidation, Russian Journal of Physical Chemistry A 92(11), pp. 2143-2147, 2018 Линк

648. H. Tang, Y. Su, Y. Guo, L. Zhang, T. Li, K. Zang, F. Liu, L. Li, J. Luo, B. Qiao and J. Wang, Oxidative strong metal-support interactions (OMSI) of supported platinum-group metal catalysts, Chemical Science 9(32), pp. 6679-6684, 2018 Линк

649. G. Paul, C. Bisio, I. Braschi, M. Cossi, G. Gatti, E. Gianotti and L. Marchese, Combined solid-state NMR, FT-IR and computational studies on layered and porous materials, Chemical Society Reviews 47(15), pp. 5684-5739, 2018 Линк

149. Kovacheva, D., Gadjov, H., Petrov, K., Mandal, S., Lazarraga, M.G., Pascual, L., Amarilla, J.M., Rojas, R.M., Herrero, P., Rojo, J.M.. Synthesizing nanocrystalline LiMn2O4 by a combustion route. Journal of Materials Chemistry, 12, 4, 2002, ISSN:0959-9428, DOI:10.1039/b107669h, 1184-1188. ISI IF:6.626

Цитира се в:

650. Vélez, J.F., Vazquez-Santos, M.B., Amarilla, J.M., Tartaj, P., Herradón, B., Mann, E., del Río, C., Morales, E. Asymmetrical imidazolium-trialkylammonium room temperature dicationic ionic liquid electrolytes for Li-ion batteries (2018) Electrochimica Acta, 280, pp. 171-180., 2018 Линк

651. Aurbach, Doron, and Ortal Haik. "Inorganic Nanoparticles and Rechargeable Batteries.", 2018 Линк

2003

150. Stoyanova, R., Zhecheva, E., Alcantara, R., Tirado, J.L., Bromiley, G., Bromiley, F., Boffa Ballaran, T.. Lithium/nickel mixing in the transition metal layers of lithium nickelate: high-pressure synthesis of layered Li [Li x Ni 1− x] O 2 oxides as cathode materials for lithium-ion batteries. Solid State Ionics, 161, 3, Elsevier BV, 2003, ISSN:0167-2738, DOI:10.1016/S0167-2738(03)00280-7, 197-204. SJR:0.771, ISI IF:2.561

Цитира се в:

652. Mukai, K., Yamada, I. "High-pressure study of Li[Li1/3Ti5/3]O4 spinel". Inorganic Chemistry Frontiers, 5 (8), pp. 1941-1949, 2018, 2018 Линк

653. Min, K., Park, K., Park, S.Y., Seo, S.-W., Choi, B., Cho, E. "Residual li reactive coating with Co3O4for superior electrochemical properties of LiNi0.91Co0.06Mn0.03O2cathode material". Journal of the Electrochemical Society, 165 (2), pp. A79-A85, 2018, 2018 Линк

654. Han, H., Wei, Z., Barry, M.C., Carozza, J.C., Alkan, M., Rogachev, A.Y., Filatov, A.S., Abakumov, A.M., Dikarev, E.V. "A three body problem: A genuine hetero: Tri metallic molecule vs. a mixture of two parent hetero bi metallic molecules". Chemical Science, 9 (21), pp. 4736-4745, 2018, 2018 Линк

151. Föhlisch, A., Menzel, D., Feulner, P., Ecker, M., Weimar, R., Kostov, K.L., Tyuliev, G., Lizzit, S., Larciprete, R., Hennies, H., Wurth, W.. Energy dependence of resonant charge transfer from adsorbates to metal substrates. Chemical Physics, 289, 1, Elsevier, 2003, ISSN:0301-0104, DOI:10.1016/S0301-0104(02)00939-4, 107-115. ISI IF:1.758

Цитира се в:

655. Johansson, F.O., Ivanovic, M., Svanström, S., Cappel, U.B., Peisert, H., Chassé, T. and Lindblad, A., 2018. Femtosecond and Attosecond Electron Transfer Dynamics in PCPDTBT: PCBM Bulk Heterojunctions. The Journal of Physical Chemistry C, 2018, 122 (24), pp 12605–12614, 2018 Линк

152. Stoychev, D., Valov, I., Stefanov, P., Atanasova, G., Stoycheva, M., Marinova, Ts.. Electrochemical growth of thin La2O3 films on oxide and metal surfaces. Materials Science and Engineering C, 23, 1-2, Elsevier, 2003, ISSN:09284931, DOI:10.1016/S0928-4931(02)00261-8, 123-128. SJR:0.672, ISI IF:3.088

Цитира се в:

656. Sanivarapu, S.R., Lawrence, J.B., Sreedhar, G., Role of Surface Oxygen Vacancies and Lanthanide Contraction Phenomenon of Ln(OH)3 (Ln = La, Pr, and Nd) in Sulfide-Mediated Photoelectrochemical Water Splitting, ACS Omega, 3(6), pp. 6267-6278, 2018, 2018

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153. Peshev, P., Stambolova, I., Vassilev, S., Stefanov, P., Blaskov, V., Starbova, K., Starbov, N.. Spray pyrolysis deposition of nanostructured zirconia thin films. Materials Science and Engineering B: Solid-State Materials for Advanced Technology, 2003, ISI IF:2.169

Цитира се в:

657. Lok, R., Kaya, S., Yilmaz, E. Thermal phase separation of ZrSiO4thin films and frequency- dependent electrical characteristics of the Al/ZrSiO4/p-Si/Al MOS capacitors (2018) Semiconductor Science and Technology, 33 (5), art. no. 055007, , 2018 Линк

154. Hadjiivanov , K., B. Tsyntsarski, T. Venkov, Klissurski, D., M. Daturi, J. Saussey, J.-C. Lavalley. FTIR Spectroscopic Study of CO Adsorption on Co-ZSM-5: Evidence of Formation of Co+(CO)4 Species. Physical Chemistry Chemical Physics, 5, Royal Society of Chemistry, 2003, DOI:10.1039/B300844D, 1695-1702. ISI IF:4.493

Цитира се в:

658. A. Aziz, M. Sajjad, M. Kim and K.S. Kim, An efficient Co-ZSM-5 catalyst for the abatement of volatile organics in air: effect of the synthesis protocol, Int. J. Environ. Sci. Technol., 15 (2018) 707 [ISI]. https://doi.org/10.1007/s13762-017-1442-8 [ISI]., 2018 Линк

155. Balarew, C, Tepavitcharova, S. Double salts formation in the systems MX-MeX2-H2O(M=K, NH4, Rb, Cs; Me=Mg, Mn, Fe, Co, Ni, Cu; X=Cl, Br). MONATSHEFTE FUR CHEMIE, 134, Springer, 2003, ISSN:0026-9247, DOI:10.1007/s00706-002-0584-6, 721-734. ISI IF:1.282

Цитира се в:

659. Niemczak, M., Rzemieniecki, T., Biedziak, A., Marcinkowska, K., Pernak, J. "4. Synthesis and Structure–Property Relationships in Herbicidal Ionic Liquids and their Double Salts " ChemPlusChem 83(6), pp. 529-541, DOI: 10.1002/cplu.201800251, 2018., 2018 Линк

156. Hadjiivanov , K., T. Tsoncheva, M. Dimitrov, C. Minchev, H. Knözinger. Characterization of Cu/MCM-41 and Cu/MCM-48 mesoporous catalysts by FTIR spectroscopy of adsorbed CO. Applied Catalysis A: General, 241, 1-2, Elsevier, 2003, DOI:10.1016/S0926-860X(02)00510-0, 331-340. ISI IF:3.942

Цитира се в:

660. J. Wang, W. Zhang, Y. Suo and Y. Wang, Synthesis of Ni/H-Zr-MCM-48 and their isomerization activity of n-heptane, J. Porous. Mater., 25 (2018)1317, doi: 10.1007/s10934-017-0542-7 [ISI]., 2018 Линк

661. J. Woo, K. Leistner, D. Bernin, H. Ahari, M. Shost, M. Zammit and L. Olsson, Effect of various structure directing agents (SDAs) on low-temperature deactivation of Cu/SAPO-34 during NH3 -SCR reaction, Catal. Sci. Technol., 8 (2018) 3090 [ISI]., 2018 Линк

662. J. Wang, S. Ma, W. Zhang, Y. Suo and Y. Wang, Acta Petrolei Sinica, 34 (2018) 723 [ISI]., 2018

157. Koseva, I., Nikolov, V., Peshev, P.. Effect of germanium doping on the morphology of flux grown Nb:KTiOPO4 single crystals. Journal of Alloys and Compounds, 353, 1-2, Elsevier, 2003, ISSN:0925-8388, DOI:10.1016/S0925-8388(02)01180-5, L1-L4. SJR:1.091, ISI IF:2.999

Цитира се в:

663. Zatovsky, Igor V., et al. "New complex phosphates Cs 3 M II Bi (P 2 O 7) 2 (M II–Ca, Sr and Pb): synthesis, characterization, crystal and electronic structure." Dalton Transactions 47.7 (2018): 2274-2284., 2018 Линк

158. T. Venkov, Hadjiivanov , K.. FTIR Study of CO Interaction with Cu/TiO2. Catalysis Communications, 4, 2003, DOI:10.1016/S1566-7367(03)00035-9, 209-213. ISI IF:3.699

Цитира се в:

664. S. Najafishirtari, C. Guglieri, S. Marras, A. Scarpellini, R. Brescia, M. Prato, G. Righi, A. Franchini, R. Magri, L. Manna and M. Colombo, Metal-support interaction in catalysis: The influence of the morphology of a nano-oxide domain on catalytic activity, Appl. Catal. B, 237 (2018) 753 [ISI]., 2018 Линк

665. X. Meng, L. Yuan, H. Guo, B. Hou, C. Chen, D. Sun, J. Wang and D. Li, Carbonylation of methanol to methyl acetate over Cu/TiO2-SiO2 catalysts: Influence of copper precursors, Mol. Catal., 456 (2018) 1 [ISI]., 2018 Линк

159. Dimitriev, Y., Kashcheva, E., Iordanova, R., Tyuliev, G.. Glass formation and microheterogeneous structure in the system B 2O3-V2O5-MoO3. Physics and Chemistry of Glasses, 44, 2, Society of Glass Technology, 2003, 155-158. SJR:0.41, ISI IF:0.599

Цитира се в:

666. Rajaramakrishna, R., Ruangtawee, Y., Kaewkhao, J. Sm3+-doped molybdenum gadolinium borate glasses for orange emission laser active medium (2018) Ukrainian Journal of Physics, 63 (8), pp. 721-732., 2018 Линк

667. Tsuryu, K., Ohkubo, T., Kakihara, T., & Iwadate, Y. Structural roles of V and Mo in borate and silicate glasses by solid state NMR and Raman spectroscopies (2018) Physics and Chemistry of Glasses-European Journal of Glass Science and Technology Part B, 59(5), 234-240, 2018 Линк

160. Hadjiivanov, K., Ivanova, E., Dimitrov, L., Knözinger, H.. FTIR Spectroscopic Study of CO Adsorption on Rh–ZSM-5: Detection of Rh+–CO

Page 41: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 41/154

Species. Journal of Molecular Structure, 661-662, Elsevier, 2003, DOI:doi:10.1016/j.molstruc.2003.09.007, 459-463. ISI IF:1.602

Цитира се в:

668. P.S. Bulutoglu, Z. Say, S. Bac, E. Ozensoy and A.K. Avci, Appl. Catal. A, 564 (2018) 157 [ISI]., 2018

161. R. Craciun, B. Nentwick, Hadjiivanov , K., H. Knözinger. Structure and Redox Properties of MnOx/Yttruim-stabilized Zirconia (YSZ) Catalyst and its Use in CO and CH4 Oxidation. Applied Catalysis A: General, 243, 1, Elsevier, 2003, DOI:doi:10.1016/S0926-860X(02)00538-0, 67-79. ISI IF:3.942

Цитира се в:

669. X. Zhang, H. Li, X. Lv, J. Xu, Y. Wang, C. He, N. Liu, Y. Yang and Y. Wang, Facile synthesis of highly efficient amorphous Mn-MIL-100 catalysts: The formation mechanism and the structure changes during the application for CO oxidation , Chem. Europ. J., (2018), 2018

670. J. Du, Z. Qu, C. Dong, L. Song, Y. Qin and N. Huang, Low-temperature abatement of toluene over Mn-Ce oxides catalysts synthesized by a modified hydrothermal approach, Appl. Surf. Sci., 433 (2018) 1025 [ISI]., 2018 Линк

671. F. Arena, R. Di Chio, C. Espro, A. Palella and L. Spadaro, A definitive assessment of the CO oxidation pattern of a nanocomposite MnCeO: X catalyst, React. Chem. Eng., 3 (2018) 293 [ISI]., 2018 Линк

672. O. Bulavchenko, O. Venediktova, T. Afonasenko, P. Tsyrul'nikov, A. Saraev, V. Kaichev and S. Tsybulya, Nonstoichiometric oxygen in Mn-Ga-O spinels: Reduction features of the oxides and their catalytic activity , RSC Adv., 8 (2018) 11598 [ISI]., 2018 Линк

673. T. Chang, Z. Shen, Y. Huang, J. Lu, D. Ren, J. Sun, J. Cao and H. Liu, Post-plasma-catalytic removal of toluene using MnO2–Co3O4 catalysts and their synergistic mechanism, Chem. Eng. J., 348 (2018) 15 [ISI]., 2018 Линк

674. M. Gallegos, M. Peluso and J. Sambeth, Preparation and Characterization of Manganese and Zinc Oxides Recovered from Spent Alkaline and Zn/C Batteries Using Biogenerated Sulfuric Acid as Leaching Agent , JOM (2018) 2351 [ISI]., 2018

675. S. Guan, W. Li, J. Ma, Y. Lei, Y. Zhu, Q. Huang and X. Dou, A review of the preparation and applications of MnO2 composites in formaldehyde oxidation, J. Ind. Eng. Chem., 66 (2018) 126 [ISI]., 2018 Линк

676. J. Lee, R. Li, M.J. Janik and K.M. Dooley, Rare Earth/Transition Metal Oxides for Syngas Tar Reforming: A Model Compound Study, Ind. Eng. Chem. Res., 57 (2018) 6131 [ISI]., 2018 Линк

677. A.I. Omoike and K.N. Hall, Oxidative Degradation of Bisphenol A Using Recyclable Nanomaterials, J. Inorg. Organomet. Polym., 28 (2018) 535 [ISI]., 2018

678. N. Shikina, S. Yashnik, A. Gavrilova, L. Dovlitova, S. Khairulin, G. Kozlova, Z. Ismagilov, Formation of Active Structures in Monolith Copper–Manganese Oxide Catalysts for Air-Heating Devices, Kinet. Catal., 59 (2018) 532 [ISI]., 2018 Линк

679. S. Todorova, A. Naydenov, H. Kolev, G. Ivanov, A. Ganguly, S. Mondal, S. Saha and A.K. Ganguli, Reaction kinetics and mechanism of complete methane oxidation on Pd/Mn2O3 catalyst, React. Kinet. Mech. Catal., 123 (2018) 585 [ISI]., 2018

680. M. Duplančić, V. Tomašić and Z. Gomzi, Catalytic oxidation of toluene: comparative study over powder and monolithic manganese-nickel mixed oxide catalysts, Environ. Technol., (2018) 39(15) 2004-2016. doi.org/10.1080/09593330.2017.1346713, 2018 Линк

681. T. Boningari, S.M. Pavani, P.R. Ettireddy, S.S.C. Chuang and P.G. Smirniotis, Mechanistic investigations on NO reduction with CO over Mn/TiO2 catalyst at low temperatures, Mol. Catal., (2018) 451 pp. 33-42. doi.: j.mcat.2017.10.017, 2018 Линк

682. Z. Ye, J.-M. Giraudon, N. De Geyter, R. Morent and J.-F. Lamonier, The Design of MnOx Based Catalyst in Post-Plasma Catalysis Configuration for Toluene Abatemen, Catalysts, 8 (2018) 91 [ISI]., 2018 Линк

162. Hadjiivanov, K., Ivanova, E., Daturi, M., Saussey, J., Lavalley, J.-C.. Nitrosyl Complexes on Co–ZSM-5: An FTIR Spectroscopy Study. Chemical Physics Letters, 370, 5-6, Elsevier, 2003, DOI:doi:10.1016/S0009-2614(03)00173-8, 712-718. ISI IF:1.897

Цитира се в:

683. A. Bellmann, H. Atia, U. Bentrup and A. Brückner, Appl. Catal. B, 230 (2018) 184 [ISI]., 2018

163. Bobet J.-L., Desmoulins-Krawiec S., Grigorova E., Cansell F., Chevalier B.. Addition of nanosized Cr2O3 to magnesium for improvement of the hydrogen sorption properties. Journal of Alloys and Compounds, 351, Elsevier, 2003, ISSN:09258388, DOI:10.1016/S0925-8388(02)01030-7, 217-221. SJR:1.091, ISI IF:2.999

Цитира се в:

684. Mechi, N. et al. "Structural characterization and hydrogen sorption properties of the Mg50Ni45Cr5 alloy" Chinese Journal of Physics Vol. 56, Pages 449-467, 2018, 2018 Линк

685. Yu, S. et al. "Cleaner production of spherical nanostructure chromium oxide (Cr2O3) via a facile combination membrane and hydrothermal approach" Journal of Cleaner Production Vol. 176, Pages 636-644, 2018, 2018 Линк

686. Rajendaran, K., Muthuramalangam, R., Ayyadurai, S. "Azadirachta indica as a bio-material: Rapid synthesis of Cr5O12 shell nanoparticles to study its photocatalytic and antimicrobial properties" Journal of King Saud University - Science Open Access, 2018, 2018

Page 42: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

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164. Zhecheva, E., Stoyanova, E., Alcantara, R., Tirado, J. L.. Electron paramagnetic resonance and solid-state NMR study of cation distribution in LiGayCo1-yO2 and effects on the electrochemical oxidation. Journal of Physical Chemistry B, 107, 18, 2003, ISSN:1520-6106, 4290-4296. ISI IF:3.302

Цитира се в:

687. Ding, C.-C., Wu, S.-Y., Xu, Y.-Q., Zhang, L.-J. "Studies on the local structures for the trigonal Ni3+centers in cathode materials LiAlyCo1–yO2(y = 0, 0.1, 0.5, and 0.8)". Magnetic Resonance in Chemistry, 56 (9), pp. 803-809, 2018, 2018 Линк

165. Hadjiivanov , K., A. Penkova, M. Daturi, J. Saussey, J.-C. Lavalley. FTIR Spectroscopic Study of Low-temperature Co-adsorption of NO and O2 on H–ZSM-5: Evidence of Formation of [ONNO]+ Species. Chemical Physics Letters, 377, 2003, DOI:doi:10.1016/S0009-2614(03)01203-X, 642-646. ISI IF:1.897

Цитира се в:

688. B.S. Barth, Untersuchungen zur Adsorption von Stickstoffmonoxid in metall-organischen Gerüstverbin-dungen, Ph. D. Thesis, Friedrich-Alexander-Universität, Erlangen-Nürnberg, Germany, 2018 [GS]., 2018

166. B. Tsyntsarski, V. Avreyska, H. Kolev, Ts. Marinova, Klissurski, D., Hadjiivanov , K.. FTIR Study of the Nature and Reactivity of Surface NOx Compounds Formed after NO Adsorption and NO + O2 Coadsorption on Zirconia- and Sulfated Zirconia-supported Cobalt. J. Mol. Catal., A, 193, 2003, DOI:doi:10.1016/S1381-1169(02)00422-3, 139-149. ISI IF:3.615

Цитира се в:

689. J. Grzybek, B. Gil, W.J. Roth, M. Skoczek, A. Kowalczyk and L. Chmielarz, Characterization of Co and Fe-MCM-56 catalysts for NH3 -SCR and N2 O decomposition: An in situ FTIR study, Spectrochim. Acta A, 196 (2018) 281 [ISI]., 2018 Линк

690. P.R. Kelleher, G.L. Haller, S. Casale, C. Méthivier and C. Thomas, Assessing carbon or tungstates coverage of ZrO2 nanoparticles supported on MWCNT via NOx -TPD, Nano-Struct. & Nano-Objects, 16 (2018) 110 [ISI]., 2018 Линк

691. X. Lü, J. Cao, X. Li, J. Cao, X. Zhang and F. Dong, Chin. Sci. Bull., 63 (2018)2620-2630 doi: 10.1360/N972018-00518 [ISI]., 2018 Линк

167. Zhecheva, E., Stoyanova, R., Tyuliev, G., Tenchev, K., Mladenov, M., Vassilev, S.. Surface interaction of LiNi0.8Co0.2O2 cathodes with MgO. Solid State Sciences, 5, 1, 2003, ISSN:1293-2558, 711-720. ISI IF:1.839

Цитира се в:

692. Yin, H., Yu, X.-X., Zhao, H., Li, C., Zhu, M.-Q. "Towards high-performance cathode materials for lithium-ion batteries: Al2O3-coated LiNi0.8Co0.15Zn0.05O2". Journal of Solid State Electrochemistry, 22 (8), pp. 2395-2403, 2018, 2018 Линк

693. Marcoccia, C.G., Peluso, M.A., Sambeth, J.E. "Synthesis, characterization and catalytic properties of cobalt oxide recovered from spent lithium-ion batteries". Molecular Catalysis, 2018, 2018 Линк

168. Tyuliev, G., Panayotov, D., Avramova, I., Stoichev, D., Marinova, Ts.. Thin-film coating of Cu-Co oxide catalyst on lanthana/zirconia films electrodeposited on stainless steel. Materials Science and Engineering C, 23, 1-2, Elsevier BV, 2003, ISSN:0928-4931, 117-121. SJR:1.332, ISI IF:3.31

Цитира се в:

694. George, R.T., Joshi, D.C., Nayak, S., Tiwari, N., Chauhan, R.N., Pramanik, P., Dar, T.A., Ghosh, S., Thota, S.Effect of NiO substitution on the structural and dielectric behaviour of NaNbO3 (2018) Journal of Applied Physics, 123 (5), art. no. 054101, ., 2018 Линк

695. Brunckova H., Kolev H., Kanuchova M. X‐ray photoelectron spectroscopy study of neodymium niobate and tantalate precursors and thin films.(2018) Surface and interface analysis, 2018 Линк

169. Klissurski, D, Uzunova E. Cation-Deficient Nano-dimensional Particle Size Cobalt-Manganese Spinel Mixed Oxides. Appl. Surf. Sci., 214, 2003, 370. ISI IF:2.71

Цитира се в:

696. Liu, H., Zhuang, M., Zhang, Z., Dai, X., Qian, L., Yan, Z. Catalytic removal of soot particles over MnCo2O4 catalysts prepared by the auto-combustion method (2018) Chemical Papers, 72 (8), pp. 1973-1979, 2018 Линк

170. S. Kannan, D. Kishore, Hadjiivanov , K., H. Knözinger. FTIR Study of Low-Temperature CO Adsorption on MgAl-Hydrotalcite and Its Calcined Forms. Langmuir, 19, American Chemical Society, 2003, ISSN:14, DOI:10.1021/la030019q, 5742-5747. ISI IF:4.457

Цитира се в:

697. M. Viky Mujica, Evaluación de óxidos mixtos provenientes de hidrotalcitas binarias: Co-Al, Ni-Al, Ni-Fe como soporte de catalizadores para hidrotratamiento, Ph. D. Thesis, Universidad de Carabobo, Naguanagua, Venezuela, 2018 [GS]., 2018

Page 43: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 43/154

2004

171. Milanova, M., Iordanova, R., Dimitriev, Y., Klissurski, D.. Glass formation in the MoO3-Bi2O3-PbO system. Journal of Materials Science, 39, 16-17, Kluwer Academic Publishers, 2004, ISSN:1573-4803, DOI:10.1023/B:JMSC.0000039296.40866.7c, 5591-5593. ISI IF:2.371

Цитира се в:

698. Rajaramakrishna, R et. al. ''Sm3+-DOPED MOLYBDENUM GADOLINIUM BORATE GLASSES FOR ORANGE EMISSION LASER ACTIVE MEDIUM'', UKRAINIAN JOURNAL OF PHYSICS, 63 (8) 721-732., 2018

172. Valova, E., Armyanov, S., Franquet, A., Petrov, K., Kovacheva, D., Dille, J., Delplancke, J.-L., Hubin, A., Steenhaut, O., Vereecken, J.. Comparison of the structure and chemical composition of crystalline and amorphous electroless Ni-W-P coatings. J. Electrochem. Soc., 151, 6, 2004, ISSN:00134651, DOI:10.1149/1.1705661, 385-391. ISI IF:3.17

Цитира се в:

699. Wang, Jiang, et al. "High‐Voltage LiNi0. 45Cr0. 1Mn1. 45O4 Cathode with Superlong Cycle Performance for Wide Temperature Lithium‐Ion Batteries." Advanced Functional Materials 28.4 (2018): 1704808., 2018 Линк

173. Penkova, A., Hadjiivanov, K., Mihaylov, M., Daturi, M, Saussey, J., Lavalley, J.-C.. FTIR spectroscopic study of low-temperature co-adsorption of NO and O2 on H-ZSM-5: evidence of formation of [ONNO]+ species. Langmuir, 20, 13, 2004, DOI:10.1021/la0496643, 5425-5431. SJR:1.55, ISI IF:4.097

Цитира се в:

700. A. Khartchenko, V.L. Zholobenko, A. Vicente, C. Fernandez, H. Vezin, V. De Waele and S. Mintova, Formation of copper nanoparticles in LTL nanosized zeolite: Spectroscopic characterization, Phys. Chem. Chem. Phys., 20 (2018) 2880 [ISI]., 2018 Линк

701. K. Stawicka, P. Decyk, A. Wojtaszek-Gurdak and M. Ziolek, Comparative study of acid-basic properties of MCF impregnated with niobium and cerium species, Catal. Today, (2018) doi: 10.1016/j.cattod.2018.05.025, 2018 Линк

702. B.S. Barth, Untersuchungen zur Adsorption von Stickstoffmonoxid in metall-organischen Gerüstverbin-dungen, Ph. D. Thesis, Friedrich-Alexander-Universität, Erlangen-Nürnberg, Germany, 2018 [GS]., 2018

174. Mihaylov, M., Chakarova, K., Hadjiivanov , K.. Formation of Carbonyl and Nitrosyl Complexes on Titania- and Zirconia-supported Nickel: FTIR Spectroscopy Study. Journal of Catalysis, 228, 2, Elsevier, 2004, DOI:doi:10.1016/j.jcat.2004.08.039, 273-281. ISI IF:6.921

Цитира се в:

703. Y. Yang, M. Wang, Z. Tao, Q. Liu, Z. Fei, X. Chen, Z. Zhang, J. Tang, M. Cui, X. Qiao, "Mesoporous Mn-Ti amorphous oxides: a robust low-temperature NH3-SCR catalyst", Catal. Sci. Technol., 8 (2018) 6396., 2018 Линк

704. X. Zhao, L. Mao, G. Dong, "Mn-Ce-V-Wox /TiO2 SCR catalysts: Catalytic activity, stability and interaction among catalytic oxides", Catalysts, 8 (2018) 76., 2018 Линк

705. P. Chen, F. Dong, M. Ran, J. Li, "Synergistic photo-thermal catalytic NO purification of MnOx /g-C3 N4 : Enhanced performance and reaction mechanism", Chinese J. Catal., 39 (2018) 619-629., 2018 Линк

706. K. Qi, J. Xie, Z. Zhang, D. Fang, D. Han, X. Liu, P. Gong, F. Li, F. He, "Facile large-scale synthesis of Ce–Mn composites by redox-precipitation and its superior low-temperature performance for NO removal", Powder Technol., 338 (2018) 774-782., 2018 Линк

707. B. S. Barth, „Untersuchungen zur Adsorption von Stickstoffmonoxid in metall-organischen Gerüstverbin-dungen“, Ph. D. Thesis, Friedrich-Alexander-Universität, Erlangen-Nürnberg, Germany, 2018., 2018 Линк

175. Boiadjieva, Tz., Kovacheva, D., Petrov, K., Hardcastle, S., Sklyarov, A., Monev, M.. Electrodeposition, composition and structure of Zn-Cr alloys. Journal of Applied Electrochemistry, 34, 3, 2004, ISSN:0021891X, DOI:10.1023/B:JACH.0000015609.43585.ef, 315-321. ISI IF:2.23

Цитира се в:

708. Osuchowska, E., Z. Buczko, and K. Olkowicz. "Proces elektroosadzania a skład powłok stopowych Zn-Cr." Inżynieria Powierzchni (2018)., 2018 Линк

709. Kunyarong, A., Fakpan, K. Cr-Ni alloy coating electrodeposited on T22 steel (2018) Materials Today: Proceedings, 5 (3), pp. 9244-9249., 2018 Линк

176. Mihaylov, M., Hadjiivanov , K.. Redox Couples in the Selective Catalytic Reduction of NOx with Hydrocarbons over Co–ZSM-5 and Ni–ZSM-5 Catalysts: an FT-IR Study. Chemical Communications, Royal Society of Chemistry, 2004, DOI:DOI: 10.1039/B408061K, 2200-2201. ISI IF:6.834

Цитира се в:

Page 44: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 44/154

710. X. Liu, Y. Su, S. Dong, H. Zhou, W. Deng and B. Zhao, J. Fuel Chem. Technol., 46 (2018) 743 [ISI]., 2018

177. Vassileva P., Krastev V., Lakov L., Peshev O.. XPS determination of the binding energies of phosphorus and nitrogen in phosphazenes. Journal of Materials Science, 39, 9, 2004, 3201-3203. ISI IF:0.86

Цитира се в:

711. Wang, J., Hu, Y., Cai, W., Yuan, B., Zhang, Y., Guo, W., Hu, W., Song, L. Atherton–Todd reaction assisted synthesis of functionalized multicomponent MoSe2 /CNTs nanoarchitecture towards the fire safety enhancement of polymer (2018) Composites Part A: Applied Science and Manufacturing, 112, pp. 271-282., 2018

178. Mihaylov, M., Hadjiivanov , K., Panayotov, D.. FTIR mechanistic studies on the selective catalytic reduction of NOx with methane over Ni-containing zeolites: comparison between NiY and Ni-ZSM-5. Applied Catalysis B: Environmental, 51, 1, Elsevier, 2004, DOI:doi:10.1016/j.apcatb.2004.02.002, 33-42. ISI IF:7.435

Цитира се в:

712. X. Cheng, D. Su, Z. Wang, C. Ma and M. Wang, Int. J. Hydrogen Energy, 43 (2018) 21969 [ISI]., 2018

713. M.J. Menart, The Role of Acidity in Heterogeneous Nickel Catalysts for the Oligomerization of Light Olefins, Ph. D. Thesis, Colorado School of Mines, USA, 2018 [GS]., 2018

714. T. Intana, K. Föttinger, G. Rupprechter, P. Kongkachuichay, Role of Copper and Cerium on Core–Shell Al-MCM-41 in NO Reduction via a SCR-CH4, J. Nanosci. Nanotechnol., 18 (2018) 132 [ISI]., 2018 Линк

715. Khan, N. A.; Kennedy, E. M.; Dlugogorski, B. Z.; Adesina, A. A.; Stockenhuber, M., "A proposed reaction mechanism for the selective oxidation of methane with nitrous oxide over Co-ZSM-5 catalyst forming synthesis gas (CO + H2)". International Journal of Hydrogen Energy 2018, 43 (29), 13133-13144; DOI: 10.1016/j.ijhydene.2018.05.026, 2018 Линк

716. Cheng, X.; Su, D.; Wang, Z.; Ma, C.; Wang, M., "Catalytic reduction of nitrogen oxide by carbon monoxide, methane and hydrogen over transition metals supported on BEA zeolites". International Journal of Hydrogen Energy 2018, 43 (48), 21969-21981; DOI: 10.1016/j.ijhydene.2018.09.206, 2018 Линк

717. Teng, Z.; Zhang, H.; Huang, S.; Li, N.; Zhou, Q., "Experimental study on reduction of NO by CH4 over La0.8Sr0.2MnO3/α-Al2O3 in excess of O2". Journal of the Taiwan Institute of Chemical Engineers 2018, 87, 204-210: DOI: 10.1016/j.jtice.2018.03.036, 2018 Линк

179. Boiadjieva, Tz., Kovacheva, D., Petrov, K., Hardcastle, S., Monev, M.. Effect of anodic treatment on the composition and structure of electrodeposited Zn-Cr alloy coatings. Corrosion Science, 46, 3, 2004, ISSN:0010938X, DOI:10.1016/S0010-938X(03)00178-1, 681-695. ISI IF:5.154

Цитира се в:

718. Osuchowska, E., Z. Buczko, and K. Olkowicz. "Proces elektroosadzania a skład powłok stopowych Zn-Cr." Inżynieria Powierzchni (2018)., 2018 Линк

180. Konova, P., Naydenov, A., Venkov, Cv., Mehandjiev, D., Andreeva, D., Tabakova, T.. Activity and Deactivation of Au/TiO2 Catalyst in CO oxidation. Journal of Molecular Catalysis A: Chemical, 213, 2, ELSEVIER, 2004, ISSN:13811169, DOI:10.1016/j.molcata.2003.12.021, 235-240. ISI IF:3.615

Цитира се в:

719. Chenakin, S., & Kruse, N., "Combining XPS and ToF-SIMS for assessing the CO oxidation activity of Au/TiO2 catalysts.", Journal of Catalysis, 358 (2018) 224-236., 2018 Линк

720. Shinde, S. L., Ishii, S., Dao, T. D., Sugavaneshwar, R. P., Takei, T., Nanda, K. K., & Nagao, T. "Enhanced Solar Light Absorption and Photoelectrochemical Conversion Using TiN Nanoparticle-Incorporated C3N4–C Dot Sheets.", ACS applied materials & interfaces, 10/3 (2018) 2460-2468., 2018 Линк

721. Du, M., Huang, J., Sun, D., Wang, D., & Li, Q. "High Catalytic Stability for CO Oxidation over Au/TiO2 Catalysts by Cinnamomum camphora Leaf Extract." Industrial & Engineering Chemistry Research, 57/44 (2018) 14910-14914., 2018 Линк

722. Mikhaylov, R. V., Nikitin, K. V., Glazkova, N. I., & Kuznetsov, V. N., "Temperature-programmed desorption of CO2, formed by CO photooxidation on TiO2 surface.", Journal of Photochemistry and Photobiology A: Chemistry, 360 (2018) 255-261., 2018 Линк

723. Ren, Y., Tang, K., Wei, J., Yang, H., Wei, H., & Yang, Y., "Pretreatment Effect on Ceria‐Supported Gold Nanocatalysts for CO Oxidation: Importance of the Gold–Ceria Interaction.", Energy Technology, 6/2 (2018) 379-390., 2018 Линк

724. Gong, Y., Wang, Y., Sun, G., Jia, T., Jia, L., Zhang, F., ... & Zhang, Z., "Carbon Nitride Decorated Ball-Flower like Co3O4 Hybrid Composite: Hydrothermal Synthesis and Ethanol Gas Sensing Application.", Nanomaterials, 8/3 (2018) 132., 2018 Линк

725. Wu, Q., Cen, J., Zhao, Y., Tong, X., Li, Y., Frenkel, A. I., ... & Orlov, A. (2018). A comprehensive study of catalytic, morphological and electronic properties of ligand-protected gold nanoclusters using XPS, STM, XAFS, and TPD techniques. Physical Chemistry Chemical Physics, 20(3), 1497-1503., 2018 Линк

726. Huang, H. Y., Chen, H. I., & Huang, Y. J., "The Promotional Effects of ZrO2 and Au on the CuZnO Catalyst Regarding the Durability and Activity of the Partial Oxidation of Methanol." Catalysts, 8/9 (2018) 345., 2018 Линк

Page 45: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 45/154

181. T. Tsoncheva, T. Venkov, M. Dimitrov, C. Minchev, Hadjiivanov , K.. Copper-modified Mesoporous MCM-41 Silica: FTIR and Catalytic Study. J. Mol. Catal., A, 209, 2004, DOI:10.1016/j.molcata.2003.08.008, 125. ISI IF:3.615

Цитира се в:

727. W. Qi, Q. Ling, D. Ding, C. Yazhonga, S. Chengwu, C. Peng, W. Ye, Z. Qinghong, L. Rong and S. Hao, Performance enhancement of Cu/SiO2 catalyst for hydrogenation of dimethyl oxalate to ethylene glycol through zinc incorporation, Catal. Commun., 108 (2018) 68 [ISI]., 2018 Линк

728. J. Zhuang, B. Lu, F. Gu, Z. Zhong and F. Su, Ordered mesoporous Cu–Ca–Zr: A superior catalyst for direct synthesis of methyl formate from syngas, Carbon Resources Convers., 1 (2018) 174- 182 doi: 10.1016/ j.crcon.2018.05.005 [ISI]., 2018 Линк

182. Stefanov, P., Atanasova, G., Stoychev, D., Marinova, Ts.. Electrochemical deposition of CeO2 on ZrO2 and Al2O3 thin films formed on stainless steel. Surface and Coatings Technology, 180-181, Elsevier, 2004, ISSN:02578972, DOI:doi:10.1016/j.surfcoat.2003.10.083, 446-449. SJR:0.96, ISI IF:1.998

Цитира се в:

729. Mohammed, S., Rajamure, R.S., Zhang, Z., (...), Dahotre, N.B., Kovacevic, R., Tailoring corrosion resistance of laser-cladded Ni/WC surface by adding rare earth elements, International Journal of Advanced Manufacturing Technology, 97(9-12), pp. 4043-4054, 2018, 2018

730. Yang, Y., Du, X., Yi, C., (...), Zhu, B., Zhang, Z., Structural, optical and electrical properties of CeO2 thin films simultaneously prepared by anodic and cathodic electrodeposition, Applied Surface Science, 440, pp. 1073-1082, 2018, 2018

731. Yuanyuan Liu, Jiamu Huang, Lilu Qin, James B. Claypoo Matthew J. O’Keefe and Yiming Jiang, Effect of Thickness on the Structure and Corrosion Performance of Sputtered Ce-Al-O Coatings on Al 2024-T3 Alloy Substrates, Journal of The Electrochemical Society, 165 (7) C395-C402 (2018), 2018

732. S. Kozhukharov, Christian Girginov, Potentiostatic electrosynthesis of cerium conversion coatings on AA2024-T3 aircraft alloy in diammonium pentanitrocerate solutions, SCIREA Journal of Materials. Vol. 3 , No. 1 , 2018 , pp. 10 - 36 ., 2018

733. Nadjette Bourenane Youcef Hamlaoui Celine Remazeilles Fernando Pedraza, Effect of the pH of the electrolyte on the formation and on the corrosion properties of ceria based coating on carbon steel, Materials and Corrosion.;1–10, 2018, 2018

183. Kostov, K.L., Widdra, W., Menzel, D.. Hydrogen on Ru(001) revisited: vibrational structure, adsorption states, and lateral coupling. Surface Science, 560, 1-3, Elsevier, 2004, ISSN:ISSN 0039-6028, DOI:10.1016/j.susc.2004.04.025, 130-144. ISI IF:1.925

Цитира се в:

734. Bai, Y., Chen, B.W., Peng, G. and Mavrikakis, M., 2018. Density functional theory study of thermodynamic and kinetic isotope effects of H 2/D 2 dissociative adsorption on transition metals, Catalysis Science & Technology, 2018, 8, 3321-3335., 2018

735. Soroka, O., Sturm, J.M., van de Kruijs, R.W., Lee, C.J. and Bijkerk, F., Control of YH 3 formation and stability via hydrogen surface adsorption and desorption. Applied surface science, 455, 2018, pp. 70-74., 2018

736. Dillinger, S., Klein, M.P., Steiner, A., McDonald, D.C., Duncan, M.A., Kappes, M.M. and Niedner-Schatteburg, G., 2018. Cryo IR Spectroscopy of N2 and H2 on Ru8+: The Effect of N2 on the H-Migration. The journal of physical chemistry letters, 9(4), pp.914-918., 2018

737. Townsend, P.S.M., 2018. Diffusion of light adsorbates on transition metal surfaces (Doctoral dissertation, University of Cambridge)., 2018 Линк

184. Chakarova, K., Ivanova, E., Hadjiivanov, K., Klissurski, D., H. Knözinger. Co-ordination Chemistry of Palladium Cations in Pd–H–ZSM-5 as Revealed by FTIR Spectra of Adsorbed and Co-adsorbed Probe Molecules (CO and NO). Physical Chemistry Chemical Physics, 6, Royal Society of Chemistry, 2004, DOI:10.1039/B401934B, 3702-3709. ISI IF:4.493

Цитира се в:

738. K. Khivantsev, N. Jaegers, L. Kovarik, J.C. Hanson, F. Tao, Y. Tang, X. Zhang, I. Koleva, H. Aleksandrov, G. Vayssilov, Y. Wang, F. Gao and J. Szanyi, "Achieving Atomic Dispersion of Highly Loaded Transition Metals in Small‐Pore Zeolite SSZ‐13: High‐Capacity and High‐Efficiency Low‐Temperature CO and Passive NOx Adsorbers ", Angew. Chem. Int. Ed. , 130 (2018) 16914-16919 [ISI]., 2018 Линк

739. Q. Dai, Q. Zhu, Y. Lou, X. Wang, "Role of Brønsted acid site during catalytic combustion of methane over PdO/ZSM-5: Dominant or negligible?", Journal of Catalysis, 357 (2018) 29-40., 2018 Линк

740. O. Mihai, L. Trandafilović, T. Wentworth, F. Fluxa Torres, L. Olsson, "The Effect of Si/Al Ratio for Pd/BEA and Pd/SSZ-13 Used as Passive NOx Adsorbers", Top. Catal., 61 (2018) 2007-2020., 2018 Линк

741. Y. Ryou, "Low temperature NO adsorption over Pd-based catalysts for cold start application", Ph. D. Thesis, Seoul National University, Seoul, South Korea, 2018 [GS]., 2018

742. P. Guo, C. Froese, Q. Fu, Y.-T. Chen, B. Peng, W. Kleist, R. A. Fischer, M. Muhler, Y. Wang, "CuPd Mixed-Metal HKUST-1 as a Catalyst for Aerobic Alcohol Oxidation", J. Phys. Chem. C, 122 (2018) 21433-21440., 2018 Линк

185. Gadjov, H., Gorova, M., Kotzeva, V., Avdeev, G., Uzunova, S., Kovacheva, D.. LiMn2O4 prepared by different methods at identical thermal

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page 46/154

treatment conditions: Structural, morphological and electrochemical characteristics. Journal of Power Sources, 134, 1, 2004, ISSN:0378-7753, DOI:10.1016/j.jpowsour.2004.03.027, 110-117. ISI IF:6.217

Цитира се в:

743. Saadatkhah, Nooshin, et al. "Flame-assisted spray pyrolysis to size-controlled LiyAlxMn2-xO4: a supervised machine learning approach." CrystEngComm (2018)., 2018 Линк

186. Lazarraga, M.G., Pascual, L., Gadjov, H., Kovacheva, D., Petrov, K., Amarilla, J.M., Rojas, R.M., Martin-Luengo, M.A., Rojo, J.M.. Nanosize LiNiyMn2 - yO4 (0 < y ≤ 0.5) spinels synthesized by a sucrose-aided combustion method. Characterization and electrochemical performance. Journal of Materials Chemistry, 14, 10, 2004, ISSN:0959-9428, DOI:10.1039/b314157h, 1640-1647. ISI IF:6.626

Цитира се в:

744. Mou, Jirong, et al. "Critical roles of semi-conductive LaFeO 3 coating in enhancing cycling stability and rate capability of 5 V LiNi 0.5 Mn 1.5 O 4 cathode materials." Electrochimica Acta 260 (2018) 101-111., 2018 Линк

745. Li, Maofan, et al. "A heterobimetallic single-source precursor enabled layered oxide cathode for sodium-ion batteries." Chemical Communications 54.76 (2018): 10714-10717., 2018 Линк

746. Mou, Jirong, et al. "Excellent rate capability and cycling stability in Li+-conductive Li 2 SnO 3-coated LiNi 0.5 Mn 1.5 O 4 cathode materials for lithium-ion batteries." Dalton Transactions 47.20 (2018): 7020-7028., 2018 Линк

747. Liang, Changqing, Lingmeng Li, and Haisheng Fang. "New molten salt synthesis of LiNi0. 5Mn1. 5O4 cathode material." Materials Research Express 5.7 (2018): 075511., 2018 Линк

748. Schichtel, Patrick. "Preparation and impedance characterization of all-solid-state thin film battery systems." (2018)., 2018 Линк

187. Atanassova, E., Tyuliev, G., Paskaleva, A., Spassov, D., Kostov, K.. XPS study of N2 annealing effect on thermal Ta2O5 layers on Si. Applied Surface Science, 225, 1-4, Elsevier, 2004, ISSN:ISSN 0169-4331, DOI:10.1016/j.apsusc.2003.09.040, 86-99. ISI IF:2.711

Цитира се в:

749. Almeida Alves, C.F., Mansilla, C., Pereira, L., Paumier, F., Girardeau, T., Carvalho, S. Influence of magnetron sputtering conditions on the chemical bonding, structural, morphological and optical behavior of Ta1 − xOxcoatings (2018) Surface and Coatings Technology, 334, pp. 105-115, 2018 Линк

750. Chakrabarti, S., Panja, R., Roy, S., Roy, A., Samanta, S., Dutta, M., Ginnaram, S., Maikap, S., Cheng, H.-M., Tsai, L.-N., Chang, Y.-L., Mahapatra, R., Jana, D., Qiu, J.-T., Yang, J.-R. Evolution of resistive switching mechanism through H2O2 sensing by using TaOx-based material in W/Al2O3/TaOx/TiN structure (2018) Applied Surface Science, 433, pp. 51-59., 2018 Линк

751. Lv, Q., Huang, M., Zhang, S., Deng, S., Gong, F., Wang, F., Pan, Y., Li, G., Jin, Y. Effects of annealing on residual stress in Ta2O5films deposited by dual ion beam sputtering (2018) Coatings, 8 (4), art. no. 150, ., 2018 Линк

752. Du, S., Wen, M., Yang, L., Ren, P., Meng, Q., Zhang, K., Zheng, W. Structural, hardness and toughness evolution in Si-incorporated TaC films (2018) Ceramics International, 44 (8), pp. 9318-9325., 2018 Линк

753. Lv, Q., Huang, M., Deng, S., Zhang, S., Li, G. Effects of oxygen flows on optical properties, micro-structure and residual stress of Ta2O5 films deposited by DIBS (2018) Optik, 166, pp. 278-284, 2018 Линк

754. Ren, P., Wen, M., Zhang, K., Du, S., Zhang, Y., Chen, J., Zheng, W. Self-assembly of TaC Ta core–shell-like nanocomposite film via solid-state dewetting: Toward superior wear and corrosion resistance (2018) Acta Materialia, 160, pp. 72-84, 2018 Линк

188. Stoyanova, R., Zhecheva, E., Alcantara, R., Tirado, J. l... Local Coordination of Low-Spin Ni3+ Probes in Trigonal LiAl yCo1-yO2 Monitored by HF-EPR. Journal of Physical Chemistry B, 108, 13, 2004, ISSN:1520-6106, 4053-4057. ISI IF:3.302

Цитира се в:

755. Ding, C.-C., Wu, S.-Y., Xu, Y.-Q., Zhang, L.-J. "Studies on the local structures for the trigonal Ni3+centers in cathode materials LiAlyCo1–yO2(y = 0, 0.1, 0.5, and 0.8)". Magnetic Resonance in Chemistry, 56 (9), pp. 803-809, 2018, 2018 Линк

189. Stefanov, P., Stoychev, D., Aleksandrova, A., Nikolova, D., Atanasova, G., Marinova, Ts.. Compositional and structural characterization of alumina coatings deposited electrochemically on stainless steel. Applied Surface Science, 235, 1-2, Elsevier, 2004, ISSN:01694332, DOI:doi: 10.1016/j.apsusc.2004.05.119, 80-85. SJR:0.93, ISI IF:3.15

Цитира се в:

756. Zazhigalov, V.A., Honcharov, V.V., Bacherikova, I.V., Socha, R., Gurgul, J., Formation of Nanodimensional Layer of Catalytically Active Metals on Stainless Steel Surface by Ionic Implantation, Theoretical and Experimental Chemistry, 54(2), 2018 pp. 128-137, 2018

190. Alcantara, R., Jaraba, M., Lavela, P., Tirado, J. L., Zhecheva, E., Stoyanova, R.. Changes in the Local Structure of LiMgyNi0.5-yMn 1.5O4 Electrode Materials during Lithium Extraction. Chemistry of Materials, 16, 8, 2004, ISSN:0897-4756, 1573-1579. ISI IF:8.354

Цитира се в:

Page 47: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 47/154

757. Haraguchi, Y.; Matsuo, A.; Kindo, K.; Hiroi, Z. "Frustrated Magnetism of the Maple-Leaf-Lattice Antiferromagnet MgMn3O7⋅3H2O", arXiv:1808.02664 [cond-mat.mtrl-sci], 2018 Линк

758. Deng, M.-M., Tang, Z.-F., Shao, Y., He, X.-D., Wen, Z.-Y., Chen, C.-H. "Enhancing the electrochemical performances of LiNi0.5Mn1.5O4by Co3O4surface coating". Journal of Alloys and Compounds, 762, pp. 163-170, 2018, 2018 Линк

759. Haraguchi, Y., Matsuo, A., Kindo, K., Hiroi, Z. "Frustrated magnetism of the maple-leaf-lattice antiferromagnet MgMn3O7·3H2O". Physical Review B, 98 (6), art. no. 064412, 2018, 2018 Линк

760. Iqbal, A., Iqbal, Y., Khan, A.M., Ahmed, S. "Effect of bication (Cu-Cr) substitution on the structure and electrochemical performance of LiMn2O4spinel cathodes at low and high current rates". Journal of Saudi Chemical Society, 22 (4), pp. 449-458, 2018, 2018 Линк

761. Kazda, T., Vondrák, J., Visintin, A., Sedlaříková, M., Tichý, J., Čudek, P. "Electrochemical performance of Mo doped high voltage spinel cathode material for lithium-ion battery". Journal of Energy Storage, 15, pp. 329-335, 2018, 2018 Линк

762. Lan, L., Li, S., Li, J., Lu, L., Lu, Y., Huang, S., Xu, S., Pan, C., Zhao, F. "Enhancement of the electrochemical performance of the spinel structure LiNi0.5-xGaxMn1.5O4 cathode material by Ga doping". Nanoscale Research Letters, 13, art. no. 251, 2018, 2018 Линк

191. Kakanakov, R., Kasamakova-Kolaklieva, L., Hristeva, N., Lepoeva, G., Gomes, J. B., Avramova, I., Marinova, Ts.. High temperature and high power stability investigation of Al-based ohmic contacts to p-type 4H-SiC. Materials Science Forum, 457-460, 2004, ISSN:1662-9752, 877-880. SJR:0.26

Цитира се в:

763. Vasilevskiy, K.; Zekentes, K.; Wright, N. Processing and Characterisation of Ohmic Contacts to Silicon Carbide. ADVANCING SILICON CARBIDE ELECTRONICS TECHNOLOGY I: METAL CONTACTS TO SILICON CARBIDE: PHYSICS, TECHNOLOGY, APPLICATIONS Book Series: Materials Research Foundations Volume: 37 Pages: 27-126 Published: 2018, 2018

192. Mihailov, N, Vankov, O., Petrova, N., Kovacheva, D.. Combined laser and magnetic field treatment of YFeO3—containing films grown by spray-pyrolysis. Central European Journal of Chemistry, 2, 1, 2004, ISSN:1895-1066, DOI:10.2478/BF02476189, 188-195. ISI IF:1.329

Цитира се в:

764. Vázquez-Olmos, A.R., Sánchez-Vergara, M.E., Fernández-Osorio, A.L., Hernández-García, A., Sato-Berrú, R.Y., Alvarez-Bada, J.R. Mechanochemical Synthesis of YFeO3 Nanoparticles: Optical and Electrical Properties of Thin Films (2018) Journal of Cluster Science, 29 (2), pp. 225-233., 2018 Линк

193. Bobet J.-L., Grigorova E., Khrussanova M., Khristov M., Stefanov P., Peshev P., Radev D.. Hydrogen sorption properties of graphite-modified magnesium nanocomposites prepared by ball-milling. Journal of Alloys and Compounds, 366, Elsevier, 2004, ISSN:09258388, DOI:10.1016/S0925-8388(03)00746-1, 298-302. SJR:1.091, ISI IF:3.014

Цитира се в:

765. V. Fursikov, Pavel . Tarasov, Boris P. "Hydrogen sorbing magnesium alloys and composites ". Russian Chemical Bulletin 67(2):193-199 DOI10.1007/s11172-018-2058-y 2018, 2018 Линк

766. Ruse, E. et al. "Hydrogen storage kinetics: The graphene nanoplatelet size effect". Carbon Vol. 130, Pages 369-376, 2018, 2018 Линк

767. Lotoskyy, M. et al. "An outstanding effect of graphite in nano-MgH2-TiH2 on hydrogen storage performance". Journal of Materials Chemistry A Vol. 6, Pages 10740-10754, 2018, 2018 Линк

768. Tanaka, Kenta et al. "Preparation of Mg Nanoparticles by Pulsed Wire Discharge in Mineral Oil". Proceedings Paper Conference Conference: 4th International Symposium on Hybrid Materials and Processing (HyMaP) Location: Busan, SOUTH KOREA Date: NOV 05-08, NANOSCIENCE AND NANOTECHNOLOGY LETTERS (2018) Vol. 10, Pages 858-861. DOI: 10.1166/nnl.2018.2639, , 2018 Линк

769. Yang-huan Zhang , Kai-feng Zhang, Ze-ming Yuan, Ya-qin Li, Hong-wei Shang, Yan Qi, Xiao-ping, DongDong-liang. "Improved hydrogen storage performance of as-milled Sm–Mg–Ni alloy by adding CeO2". Journal of Iron and Steel Research International, pp 1-10, 2018, 2018 Линк

770. Luis Enrique Álvarez Ramírez, “Almacenamiento de Hidrógeno en forma sólida en estructura de Magnesio”. Doctorado en Ciencias en Ingeniería Mecánica, adscrito a la Sección de Estudios de Posgrado e Investigación de la Escuela Superior de Ingeniería Mecánica y Eléctrica Unidad Zacatenco, Instituto Politécnico Nacional de México, 2018 Линк

194. Trendafilova, N., Bauer, G., Mihaylov, Tz.. DFT and AIM studies of intramolecular hydrogen bonds in dicoumarols. Chemical Physics, 302, 1-3, Elsevier, 2004, 95-104. ISI IF:1.652

Цитира се в:

771. Deepa, P., Vijaya Pandiyan, B., Kolandaivel, P., Does the presence of water clusters induce the binding affinity of CK2 halogen ligands?: A quantum chemical perspective study, 2018, International Journal of Quantum Chemistry, 118(16), e25644., 2018 Линк

195. Mikosch H, Uzunova E, Nikolov G. Vibrational Modes of Double Six-Member Rings of Oxygen-Bridged Silicon and Aluminum Atoms in

Page 48: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

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Zeolites: a DFT Study. J. Phys. Chem. B, 108, ACS, 2004, 13200-13209. ISI IF:3.3

Цитира се в:

772. Mikuła, A., Król, M., Mozgawa, W., Koleżyński, A. New approach for determination of the influence of long-range order and selected ring oscillations on IR spectra in zeolites (2018) Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy, 195, pp. 62-67., 2018

2005

196. Stoyanova D., Vladov D., Kasabova N., Mehandjiev D.. Cordierite Like Catalyst Supports Based on Clay Materials. Kinetics and Catalysis, 46, 4, 2005, 609-612. ISI IF:0.758

Цитира се в:

773. Tamara Khabas, T. V. Vakalova, K. S. Kamyshnaya, E. V. D’yakonova, A. I. Cherepanova, A. A. Biryukova, “Porous Cordierite Ceramic with Pore Formers of a Different Nature” October 2018, Refractories and Industrial Ceramics Vol. 59, Issue 3, p 269-274, DOI: 10.1007/s11148-018-0219-z, 2018

197. Petrovic, S., Karanovic, L., Stefanov, P., Zdujic ,M., Terlecki-Baricevic, A.. Catalytic combustion of methane over Pd containing perovskite type oxides. Applied Catalysis B: Environmental, 58, 1-2, Elsevier, 2005, ISSN:09263373, DOI:10.1016/j.apcatb.2004.11.020, 133-141. SJR:2.088, ISI IF:7.435

Цитира се в:

774. Feng, Z., Du, C., Chen, Y., Lang, Y., Zhao, Y., Cho, K., Chen, R., Shan, B. Improved durability of Co3O4 particles supported on SmMn2O5 for methane combustion (2018) Catalysis Science and Technology, 8 (15), pp. 3785-3794, 2018 Линк

775. Zhao, D., Gao, Z., Xian, H., Xing, L., Yang, Y., Tian, Y., Ding, T., Jiang, Z., Zhang, J., Zheng, L., Li, X. Addition of Pd on La0.7Sr0.3CoO3 Perovskite to Enhance Catalytic Removal of NOx (2018) Industrial and Engineering Chemistry Research, 57 (2), pp. 521-531., 2018 Линк

776. Saputra, L., Kojima, T., Hara, T., Ichikuni, N., Shimazu, S. Recyclable Pd-contained perovskite catalyst synthesized by a low temperature hydrothermal method for aerobic alcohol oxidation (2018) Molecular Catalysis, 453, pp. 132-138., 2018 Линк

777. Saputra, L., Sato, T., Kojima, T., Hara, T., Ichikuni, N., Shimazu, S. Preparation of a Highly Stable Pd-Perovskite Catalyst for Suzuki Couplings via a Low-Temperature Hydrothermal Treatment (2018) ACS Omega, 3 (12), pp. 17528-17531, 2018 Линк

198. Kostova, I., Kostova, R., Momekov, G, Trendafilova, N., Karaivanova, M.. Antineoplastic activity of new lanthanide (cerium, lanthanum and neodymium) complex compounds. Journal of Trace Elements in Medicine and Biology, 18, 3, Elsevier, 2005, 219-226. ISI IF:2.371

Цитира се в:

778. Klepka, M.T., Drzewiecka-Antonik, A., Wolska, A., Rejmak, P., Struga, M., Structural studies of Cu(II) complexes with coumarin acid derivatives obtained using direct and electrochemical synthesis, (2018) Chemical Physics Letters, Vol. 691, pp. 190-195., 2018 Линк

779. R. David Prabu, S. Valanarasu, H. A. Herisalin Geno, A. Jegatha Christy, K. Jeyadheepan, A. Kathalingam, Effect of Neodymium doping on the structural, morphological, optical and electrical properties of copper oxide thin films, 2018, Journal of Materials Science: Materials in Electronics, 29(13), pp. 10921-10932., 2018 Линк

780. Albert manoharan, A., Chandramohan, R., David prabu, R., (...), Kathalingam, A., AlFaify, S., Facile synthesis and characterization of undoped, Mn doped and Nd co-doped CuO nanoparticles for optoelectronic and magnetic applications, 2018, Journal of Molecular Structure, 1171, pp. 388-395., 2018 Линк

199. Klissurski D, Mancheva M, Iordanova, Kunev B. Synthesis of Cr2(MoO4)3 from mechanically activated precursors. Chemistry for Sustainable Development, Publishing House SB RAS, 2005, 229-239

Цитира се в:

781. 1. Bouazizi, S., et al. "Structural, Vibrational, and Magnetic Properties of MoS2/Cr2O3 Composites Synthesized by the Solid-State Technique." Journal of Superconductivity and Novel Magnetism (2018): 1-8, 2018

200. Spasova I., Nikolov, P., Mehandjiev D.. Adsorption of NO on alumina supported oxides and oxides-hydroxides of manganese. Journal of Colloid and Interface Science, 290, 2, Elsevier, 2005, ISSN:00219797, DOI:10.1016/j.jcis.2005.04.043, 343-349. ISI IF:3.023

Цитира се в:

782. Dakdareh, A. M., Falamaki, C., & Ghasemian, N., "Hydrothermally grown nano-manganese oxide on clinoptilolite for low-temperature propane-selective catalytic reduction of NOx.", Journal of Nanoparticle Research, 20 (2018) 309., 2018 Линк

201. Mihaylov, M., Chakarova, K., Hadjiivanov , K., O. Marie, M. Daturi. FTIR Spectroscopy Study of CO Adsorption on Pt−Na−Mordenite.

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page 49/154

Langmuir, 21, 25, American Chemical Society, 2005, DOI:10.1021/la051877k, 11821-11828. ISI IF:4.457

Цитира се в:

783. M. Mon, M. A. Rivero–Crespo, J. Ferrando–Soria, A. Vidal–Moya, M. Boronat, A. Leyva–Pérez, A. Corma, J. C. Hernández–Garrido, M. López–Haro, J. J. Calvino, G. Ragazzon, A. Credi, D. Armentano, E. Pardo, "Synthesis of Densely Packaged, Ultrasmall Pt02 Clusters within a Thioether-Functionalized MOF: Catalytic Activity in Industrial Reactions at Low Temperature", Angew. Chem.- Int. Ed., 57 (2018) 6186-6191., 2018 Линк

784. M.Á.R. Crespo, "Clústeres y átomos aislados de platino como catalizadores para reacciones químicas de interés industrial", Ph. D. Thesis, Universitat Politècnica de Valencia, Valencia, Spain, 2018 [GS]., 2018

202. Stambolova, I., Toneva, A., Blaskov, V., Radev, D., Tsvetanova, Ya., Vassilev, S., Peshev, P.. Preparation of nanosized spinel stannate, Zn2SnO4, from a hydroxide precursor. Journal of Alloys and Compounds, 2005, SJR:1.091, ISI IF:2.999

Цитира се в:

785. Liang Shi, Jia Ding. "Controlled synthesis and photocatalytic activity of Zn2SnO4 nanotubes and nanowires". Ceramics International, Volume 44, Issue 12, 15 August 2018, Pages 14693-14697, 2018 Линк

786. M. Jose, G. Nithya… "Formation and optical characterization of unique zinc hydroxy stannate nanostructures by a simple hydrothermal method". J Mater Sci: Mater Electron (2018) 29: 2628, 2018 Линк

203. Boshkov, N., Petrov, K., Kovacheva, D., Vitkova, S., Nemska, S.. Influence of the alloying component on the protective ability of some zinc galvanic coatings. Electrochimica Acta, 51, 1, 2005, ISSN:0013-4686, DOI:10.1016/j.electacta.2005.03.049, 77-84. ISI IF:4.504

Цитира се в:

787. Marín-Sánchez, Miguel, et al. "Deposition of Zinc–Cerium Coatings from Deep Eutectic Ionic Liquids." Materials 11.10 (2018): 2035., 2018 Линк

788. Rosalbino, F., Macciò, D., Scavino, G., Saccone, A. Influence of rare earths alloying addition on the corrosion behavior of Zn in neutral aerated sodium chloride solution (2018) Materials and Corrosion, 69 (10), pp. 1447-1454., 2018 Линк

789. Kazimierczak, Honorata, et al. "Effect of Mo addition on corrosion of Zn coatings electrodeposited on steel." Corrosion Science 135 (2018): 107-119., 2018 Линк

790. Nasri, F., et al. "Development and tribological characterisation of nanostructured Zn-Ni and Zn-Co coatings: a comparative study." Transactions of the IMF 96.4 (2018): 220-227., 2018 Линк

791. Nasri, Faten, et al. "Structural, Micromechanical and Tribological Characterization of Zn–Ni Coatings: Effect of Sulfate Bath Composition." Transactions of the Indian Institute of Metals 71.8 (2018): 1827-1840., 2018 Линк

204. Faradzhev, N.S., Kostov, K.L., Feulner, P., Madey, T.E., Menzel, D.. Stability of water monolayers on Ru(0001): Thermal and electronically induced dissociation. Chemical Physics Letters, 415, 1-3, Elsevier, 2005, ISSN:0009-2614, DOI:10.1016/j.cplett.2005.08.119, 165-171. ISI IF:1.897

Цитира се в:

792. Schilling, M., Brimaud, S. and Behm, R.J., Electronic effects on the water adsorption behaviour and structure formation on pseudomorphic Pt films on Ru (0001). Surface Science, Volume 676, p. 30-38, 2018, 2018 Линк

793. Shimizu, T.K., Maier, S., Verdaguer, A., Velasco-Velez, J.J. and Salmeron, M., 2018. Water at surfaces and interfaces: From molecules to ice and bulk liquid. Progress in Surface Science, 93, Issue 4, 2018, pp. 87-107, 2018

794. Schilling, M. and Behm, R.J., Partial dissociation of water on Ru (0001) at low temperatures–Adsorption, structure formation and hydrogen passivation effects, Surface Science, 674, pp.32-39, 2018, 2018

205. Krezhov, K.A., Kovacheva, D., Sváb, E., Bourée, F.. Neutron powder diffraction study of a system of half-hole-doped bismuth-based calcium manganites at room temperature. Journal of Physics Condensed Matter, 17, 40, 2005, ISSN:09538984, DOI:10.1088/0953-8984/17/40/017, S3139-S314. ISI IF:2.617

Цитира се в:

795. Asmira, N., Ibrahim, N., Mohamed, Z., Yahya, A.K. Effect of Cr3+ substitution at Mn-site on electrical and magnetic properties of charge ordered Bi0.3Pr0.3Ca0.4MnO3 manganites (2018) Physica B: Condensed Matter, 544, pp. 34-46., 2018 Линк

206. Kovacheva, D., Markovsky, B., Salitra, G., Talyosef, Y., Gorova, M., Levi, E., Riboch, M., Kim, H.-J., Aurbach, D.. Electrochemical behavior of electrodes comprising micro- and nano-sized particles of LiNi0.5Mn1.5O4: A comparative study. Electrochimica Acta, 50, 28, 2005, ISSN:0013-4686, DOI:10.1016/j.electacta.2005.03.055, 5553-5560. ISI IF:4.504

Цитира се в:

796. Santos-Mendoza, I. O., et al. "Revisiting Electrochemical Techniques to Characterize the Solid-State Diffusion Mechanism in Lithium-Ion Batteries." International Journal of Chemical Reactor Engineering (2018)., 2018 Линк

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797. Apostolova, R.D., Peskov, R.P. Increasing the efficiency of thin-layer Co-doped LiMn2O4-carbon nanotubes electrodes for the use in Li-Ion batteries (2018) Voprosy Khimii i Khimicheskoi Tekhnologii, (2), pp. 60-69., 2018 Линк

207. Koseva, I., Chaminade, J.-P., Gravereau, P., Pechev, S., Peshev, P., Etourneau, J.. A new family of isostructural titanates, MLi2Ti6O14 (M = Sr, Ba, Pb). Journal of Alloys and Compounds, 389, 2005, DOI:10.1016/j.jallcom.2004.08.026, 47-54. SJR:1.091, ISI IF:2.999

Цитира се в:

798. Chaupatnaik, Anshuman, and Prabeer Barpanda. "Diffusional and electrochemical investigation of combustion synthesized BaLi 2 Ti 6 O 14 titanate anode for rechargeable batteries." Journal of Materials Research (2018): 1-11., 2018 Линк

799. Wang, Chao, et al. "Scalable synthesis of one-dimensional Na 2 Li 2 Ti 6 O14 nanofibers as ultrahigh rate capability anodes for lithium-ion batteries." Inorganic Chemistry Frontiers (2018)., 2018 Линк

800. Yi, Ting-Feng, et al. "Recent advances in the research of MLi2Ti6O14 (M = 2Na, Sr, Ba, Pb) anode materials for Li-ion batteries." Journal of Power Sources 399 (2018): 26-41., 2018 Линк

801. Yu, Haoxiang, et al. "Nitrogen doped carbon coating of PbLi2Ti6O14 as high electrochemical performance anode towards long-life lithium storage." Electrochimica Acta 283 (2018): 1460-1467., 2018 Линк

802. Zhang, Jundong, et al. "Effect of calcination temperature on morphology and electrochemical performance of PbLi2Ti6O14." Ceramics International (2018)., 2018 Линк

803. Peng, Na, et al. "Effect of lithium-site doping on enhancing the lithium storage performance of SrLi2Ti6O14." Electrochimica Acta 265 (2018): 437-447., 2018 Линк

804. Yu, Haoxiang, et al. "Compositing SrLi2Ti6O14 with Chemical Deposited Silver for Enhancing Lithium Ion Storage." Ceramics International (2018)., 2018 Линк

208. Georgieva, I., Trendafilova, N., Aquino, A., Lischka, H.. Excited State Properties of 7-hydroxy-4-methylcoumarin in the gas phase and in solution. A theoretical study. Journal of Physical Chemsitry A, 109, 51, American Chemical Society, 2005, 11860-11869. ISI IF:2.952

Цитира се в:

805. Khanapurmath, N., Kulkarni, M.V., Pallavi, L., Yenagi, J., Tonannavar, J., Solvatochromic studies on 4-Bromomethyl-7-methyl coumarins, 2018, Journal of Molecular Structure, 1160, pp. 50-56., 2018 Линк

806. Abdel-Mottaleb, M.S.A., Hamed, E., Saif, M., Hafez, H.S. Binding, and thermodynamics of β-cyclodextrin inclusion complexes with some coumarin laser dyes and coumarin-based enzyme substrates: a simulation study (2018) Journal of Inclusion Phenomena and Macrocyclic Chemistry, 92 (3-4), pp. 319-327., 2018 Линк

807. Antony Muthu Prabhu, A., Fatiha, M., Sivaraman, B., Yáñez-Gascón, M.J., Pérez-Sánchez, H.; Effect of natural and modified cyclodextrins on the excited state proton transfer of 7-hydroxy-4-methylcoumarin (2018) Journal of Molecular Liquids, 268, pp. 911-924., 2018 Линк

808. Liubimov, A.V., Venidiktova, O.V., Valova, T.M., Shienok, A.I., Koltsova, L.S., Liubimova, G.V., Popov, L.D., Zaichenko, N.L., Barachevsky, V.A. Photochromic and luminescence properties of a hybrid compound based on indoline spiropyran of the coumarin type and azomethinocoumarin (2018) Photochemical and Photobiological Sciences, 17 (10), pp. 1365-1375., 2018 Линк

209. Vladkova, T., Keranov, I., Dineff, P., Youroukov, S., Avramova, I., Altankov, P.. Plasma based Ar+ beam assisted poly (dimethylsiloxane) surface modification. Nuclear Instruments and Methods in Physics B, 236, 1-4, 2005, ISSN:0168-583X, 552-562. SJR:0.601, ISI IF:1.124

Цитира се в:

809. Bitar, R., Cools, P., De Geyter, N., Morent, R.Acrylic acid plasma polymerization for biomedical use (2018) Applied Surface Science, 448, pp. 168-185., 2018 Линк

210. Armyanov, S., Valova, E., Franquet, A., Dille, J., Delplancke, J.-L., Hubin, A., Steenhaut, O., Kovacheva, D., Tatchev, D., Vassilev, Ts.. Crystalline and amorphous electroless Co-W-P coatings. Journal of the Electrochemical Society, 152, 9, Electrochemical Society, Inc., 2005, ISSN:00134651, DOI:10.1149/1.1990124, c612-c619. ISI IF:2.921

Цитира се в:

810. Deligianni, Hariklia, et al. "High resistivity soft magnetic material for miniaturized power converter." U.S. Patent No. 9, 865, 673. 9 Jan. 2018., 2018 Линк

211. Chakarova, K., Mihaylov, M., Hadjiivanov, K.. Polycarbonyl species in Pt/H–ZSM-5: FTIR spectroscopic study of 12CO–13CO co-adsorption. Catalysis Communications, 6, 2005, DOI:10.1016/j.catcom.2005.04.007, 466-471. ISI IF:2.098

Цитира се в:

811. K. Khivantsev, N. R. Jaegers, L. Kovarik, J. C. Hanson, F. Tao, Y. Tang, X. Zhang, I. Z. Koleva, H. A. Aleksandrov, G. N. Vayssilov, Y. Wang, F. Gao, J. Szanyi, "Achieving Atomic Dispersion of Highly Loaded Transition Metals in Small‐Pore Zeolite SSZ‐13: High‐Capacity and High‐Efficiency Low‐Temperature CO and Passive NOx Adsorbers ", Angew. Chem. Int. Ed., 130 (2018) 16914-16919., 2018 Линк

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212. Zhecheva, E., Stoyanova, R.. Effect of allied and alien ions on the EPR spectrum of Mn 4+-containing lithium-manganese spinel oxides. Solid State Communications, 135, 7, 2005, ISSN:0038-1098, 405-410. SJR:0.776, ISI IF:1.458

Цитира се в:

812. Sun, R., Jakes, P., Taranenko, S., Kungl, H., Eichel, R.-A. "Monitoring the reaction between lithium manganese spinel and Li2MnO3 during heat treatment using Electron Paramagnetic Resonance (EPR) spectroscopy". Solid State Ionics, 325, pp. 201-208, 2018, 2018 Линк

813. Sun, R., Jakes, P., Eurich, S., van Holt, D., Yang, S., Homberger, M., Simon, U., Kungl, H., Eichel, R.-A. "Secondary-Phase Formation in Spinel-Type LiMn2O4-Cathode Materials for Lithium-Ion Batteries: Quantifying Trace Amounts of Li2MnO3by Electron Paramagnetic Resonance Spectroscopy". Applied Magnetic Resonance, 49 (4), pp. 415-427, 2018, 2018 Линк

213. Shinova, E., Zhecheva, E., Stoyanova, R., Bromiley, G. D... High-pressure synthesis of solid solutions between trigonal LiNiO 2 and monoclinic Li[Li1/3Ni2/3]O2. Journal of Solid State Chemistry, 176, 5, 2005, ISSN:0022-4596, 1661-1665. SJR:0.703, ISI IF:2.265

Цитира се в:

814. Wang, J., Chang, K., Du, Y., Zhang, F., Liu, S., Li, Y. "Review: Application of the CALPHAD Approach and First-Principles Calculations to Electrode Materials in Li Ion Batteries". Journal of Harbin Institute of Technology (New Series), 25 (2), pp. 1-17, 2018, 2018 Линк

214. Avramova, I., Stefanov, P., Nicolova, D., Stoychev, D., Marinova, Ts.. Characterization of nanocomposite CeO2-Al2 O3 coatings electrodeposited on stainless steel. Composites Science and Technology, 65, 11-12, Elsevier BV, 2005, ISSN:0266-3538, 1663-1667. SJR:1.512, ISI IF:4.44

Цитира се в:

815. Yang, Y., Du, X., Yi, C., Liu, J., Zhu, B., Zhang, Z.Structural, optical and electrical properties of CeO2 thin films simultaneously prepared by anodic and cathodic electrodeposition (2018) Applied Surface Science, 440, pp. 1073-1082., 2018 Линк

215. Stefanov, P., Avramova, I., Stoichev, D., Radic, N., Grbic, B., Marinova, Ts.. Characterization and catalytic activity of Cu-Co spinel thin films catalysts. Applied Surface Science, 245, 1-4, 2005, ISSN:0169-4332, 65-72. SJR:0.913, ISI IF:4.439

Цитира се в:

816. Waqas, M., El Kasmi, A., Wang, Y., Mountapmbeme Kouotou, P., Tian, Z.-Y. CVD synthesis of Cu-doped cobalt spinel thin film catalysts for kinetic study of propene oxidation (2018) Colloids and Surfaces A: Physicochemical and Engineering Aspects, 556, pp. 195-200., 2018 Линк

817. Wu, H., Sun, W., Shen, J., Mao, Z., Wang, H., Cai, H., Wang, Z., Sun, K.Electrospinning Derived Hierarchically Porous Hollow CuCo2O4 Nanotubes as an Effectively Bifunctional Catalyst for Reversible Li-O2 Batteries (2018) ACS Sustainable Chemistry and Engineering, 6 (11), pp. 15180-15190., 2018 Линк

818. Nath, N.C.D., Debnath, T., Kim, E.-K., Ali Shaikh, M.A., Lee, J.-J.Nanostructured copper–cobalt based spinel for the electrocatalytic H2O2 reduction reaction (2018) Electrochimica Acta, 273, pp. 474-482., 2018 Линк

819. Abbasi, A., Khojasteh, H., Hamadanian, M., Salavati-Niasari, M.Normal spinel CdCr2O4and CdCr2O4/Ag nanocomposite as novel photocatalysts, for degradation of water contaminates (2018) Separation and Purification Technology, 195, pp. 37-49., 2018 Линк

820. S Nagai, K Ueda, J Ohyama, A Satsuma.Enhanced three way catalytic activity of NiFe2O4 by physically mixed metal oxides. (2018) Catalysis Today Volume 303 Pages 40-45., 2018 Линк

216. Koleva V.. Metal-water interactions and hydrogen bonding in dittmarite-type compounds M'M''PO4.H2O (M' = K+, NH4+; M'' = Mn2+, Co2+, Ni2+). Correlations of IR spectroscopic and structural data. Spectrochimica Acta Part A, 62, 4-5, Elsevier, 2005, ISSN:1386-1425, 1196-1202. ISI IF:2.353

Цитира се в:

821. Sotiriadis, K., Mácová, P., Mazur, A.S., Tolstoy, P.M., Viani, A. A solid state NMR and in-situ infrared spectroscopy study on the setting reaction of magnesium sodium phosphate cement (2018) Journal of Non-Crystalline Solids, 498, pp. 49-59., 2018 Линк

822. Priyadharsini, N., Shanmugavani, A., Vasylechko, L., Kalai Selvan, R. Sol-gel synthesis, structural refinement, and electrochemical properties of potassium manganese phosphate for supercapacitors (2018) Ionics, 24 (7), pp. 2073-2082., 2018 Линк

823. Chernia, Z., Tsori, Y. Complexation reactions in pyridine and 2, 6-dimethylpyridine-water system: The quantum-chemical description and the path to liquid phase separation (2018) Journal of Chemical Physics, 148 (10), art. no. 104306, ., 2018 Линк

824. Borges, R., Baika, L.M., Grassi, M.T., Wypych, F. Mechanochemical conversion of chrysotile/K2HPO4 mixtures into potential sustainable and environmentally friendly slow-release fertilizers (2018) Journal of Environmental Management, 206, pp. 962-970., 2018 Линк

217. Panayotov, D., Yates, J.T., Jr.. Depletion of conduction band electrons in TiO2 by water chemisorption – IR spectroscopic studies of the independence of Ti–OH frequencies on electron concentration. Chemical Physics Letters, 410, Elsevier Science B.V., 2005, ISSN:0009-2614,

Page 52: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

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DOI:http://dx.doi.org/10.1016/j.cplett.2005.03.146, 11-17. ISI IF:1.897

Цитира се в:

825. Kabir, I. I.; Sheppard, L. R.; Liu, R.; Yao, Y.; Zhu, Q.; Chen, W. F.; Koshy, P.; Sorrell, C. C., "Contamination of TiO2 thin films spin coated on rutile and fused silica substrates". Surface and Coatings Technology 2018, 354, 369-382; DOI: 10.1016/j.surfcoat.2018.09.009, 2018 Линк

826. Zhu, H.; Zhao, M.; Zhou, J.; Li, W.; Wang, H.; Xu, Z.; Lu, L.; Pei, L.; Shi, Z.; Yan, S.; Li, Z.; Zou, Z., "Surface states as electron transfer pathway enhanced charge separation in TiO2 nanotube water splitting photoanodes". Applied Catalysis B: Environmental 2018, 234, 100-108; DOI: 10.1016/j.apcatb.2018.04.040, 2018 Линк

827. Torralvo, M. J.; Sanz, J.; Sobrados, I.; Soria, J.; Garlisi, C.; Palmisano, G.; Çetinkaya, S.; Yurdakal, S.; Augugliaro, V., "Anatase photocatalyst with supported low crystalline TiO2: The influence of amorphous phase on the activity". Applied Catalysis B: Environmental 2018, 221, 140-151; DOI: 10.1016/j.apcatb.2017.08.089, 2018 Линк

828. Tian, S.; Liu, Q.; Sun, J.; Zhu, M.; Wu, S.; Zhao, X., "Mesoporous ZnO nanorods array with a controllable area density for enhanced photocatalytic properties". Journal of Colloid and Interface Science 2019, 534, 389-398; DOI: 10.1016/j.jcis.2018.09.049, 2018 Линк

829. Jeantelot, G.; Ould-Chikh, S.; Sofack-Kreutzer, J.; Abou-Hamad, E.; Anjum, D. H.; Lopatin, S.; Harb, M.; Cavallo, L.; Basset, J.-M., "Morphology control of anatase TiO2 for well-defined surface chemistry". Physical Chemistry Chemical Physics 2018, 20 (21), 14362-14373; DOI: 10.1039/C8CP01983E, 2018 Линк

218. Mikosch H, Uzunova E, Nikolov G. Interaction of Molecular Nitrogen and Oxygen with Extraframework Cations in Zeolites with Double Six-Membered Rings of Oxygen-Bridged Silicon and Aluminum Atoms: A DFT Study. J. Phys. Chem. B, 109, ACS, 2005, ISSN:1520-6106, 11119-11127. ISI IF:3.3

Цитира се в:

830. Song, Y., Johnson, D., Peng, R., Hensley, D.K., Bonnesen, P.V., Liang, L., Huang, J., Yang, F., Zhang, F., Qiao, R., Baddorf, A.P., Tschaplinski, T.J., Engle, N.L., Hatzell, M.C., Wu, Z., Cullen, D.A., Meyer, H.M., Sumpter, B.G., Rondinone, A.J. A physical catalyst for the electrolysis of nitrogen to ammonia (2018) Science Advances, 4 (4), art. no. e1700336, , 2018

219. Grigorova E., Khristov M., Khrussanova M., Bobet J.-L., Peshev P.. Effect of additives on the hydrogen sorption properties of mechanically alloyed composites based on Mg andMg2Ni. International Journal of Hydrogen Energy, 30, Elsevier, 2005, ISSN:03603199, DOI:10.1016/j.ijhydene.2004.10.018, 1099-1105. SJR:1.141, ISI IF:3.313

Цитира се в:

831. V. Paul-Boncour. "Thermodynamic and kinetic properties of Mg-based compounds " Hydrogen Storage Materials pp 24-38, 1. Chapter Part of the Advanced Materials and Technologies book series (volume 8) Springer Springer-Verlag GmbH Germany 2018, 2018 Линк

220. Chakarova, K., Mihaylov, M., Hadjiivanov , K.. FTIR Spectroscopic Study of CO Adsorption on Pt–H–ZSM-5. Microporous and Mesoporous Materials, 81, 1-3, Elsevier, 2005, DOI:doi:10.1016/j.micromeso.2005.01.033, 305-312. ISI IF:3.355

Цитира се в:

832. K. Khivantsev, N. R. Jaegers, L. Kovarik, J. C. Hanson, F. Tao, Y. Tang, X. Zhang, I. Z. Koleva, H. A. Aleksandrov, G. N. Vayssilov, Y. Wang, F. Gao, J. Szanyi, "Achieving Atomic Dispersion of Highly Loaded Transition Metals in Small‐Pore Zeolite SSZ‐13: High‐Capacity and High‐Efficiency Low‐Temperature CO and Passive NOx Adsorbers ", Angew. Chem. Int. Ed, 130 (2018) 16914-16919., 2018 Линк

2006

221. Iordanova R.S., Milanova M.K., Kostov K.L.. Glass formation in the MoO3-CuO system. Physics and Chemistry of Glasses: European Journal of Glass Science and Technology Part B, 47, 6, Society of Glass Technology, United Kingdom, 2006, ISSN:1753-3562, 631-637. ISI IF:1.18

Цитира се в:

833. Varghese, Jobin, et al. "Microwave dielectric properties of low-temperature sinterable α-MoO3." Journal of the European Ceramic Society 38.4 (2018): 1541-1547., 2018

222. Stoyanova, M., Konova, P., Nikolov, P., Naydenov, A., Christoskova, St., Mehandjiev, D.. Alumina-supported nickel oxide for ozone decomposition and catalytic ozonation of CO and VOCs. Chemical Engineering Journal, 122, 1-2, Elsevier, 2006, ISSN:13858947, DOI:10.1016/j.cej.2006.05.018, 41-46. SJR:0.972, ISI IF:4.321

Цитира се в:

834. Liu, Y., Yang, W., Zhang, P., & Zhang, J., "Nitric acid-treated birnessite-type MnO2: An efficient and hydrophobic material for humid

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ozone decomposition.", Applied Surface Science, 442 (2018) 640-649., 2018 Линк

835. Xu, X., Li, L., Huang, J., Jin, H., Fang, X., Liu, W., Zhang, N., Wang, H. & Wang, X., "Engineering Ni3+ Cations in NiO Lattice at the Atomic Level by Li+ Doping: The Roles of Ni3+ and Oxygen Species for CO Oxidation.", ACS Catalysis, 8/9 (2018) 8033-8045., 2018 Линк

836. Hufnagel, A. G., Henß, A. K., Hoffmann, R., Zeman, O. E., Häringer, S., Fattakhova‐Rohlfing, D., & Bein, T., "Electron‐Blocking and Oxygen Evolution Catalyst Layers by Plasma‐Enhanced Atomic Layer Deposition of Nickel Oxide.", Advanced Materials Interfaces, 5/16 (2018) 1701531., 2018 Линк

837. Liu, X., Zhai, Z. Y., Chen, Z., Zhang, L. Z., Zhao, X. F., Si, F. Z., & Li, J. H., "Engineering Mesoporous NiO with Enriched Electrophilic Ni3+ and O− toward Efficient Oxygen Evolution.", Catalysts, 8/8 (2018) 310., 2018 Линк

838. Kaiyi Wu, Fengzhen Zhang, Haizhen Wu, Chaohai Wei, “The mineralization of oxalic acid and bio-treated coking wastewater by catalytic ozonation using nickel oxide”, Environmental Science and Pollution Research, 25 (2018) 2389 - 2400., 2018 Линк

839. Chih-Wei Hu, Yasusei Yamada, Kazuki Yoshimura, “Fabrication of nickel oxyhydroxide/palladium (NiOOH/Pd) nanocomposite for gasochromic application”, Solar Energy Materials and Solar Cells, 177 (2018) 120-127., 2018 Линк

840. Minsu Kim, Eunseuk Park, Jongsoo Jurng, “Oxidation of gaseous formaldehyde with ozone over MnOx/TiO2catalysts at room temperature (25°C)”, Powder Technology, 325 (2018) 368-372., 2018 Линк

841. Cuicui Du, Shengyong Lu, Qiuling Wang, Alfons G. Buekens, Mingjiang Ni, Damien P. Debecker, “A review on catalytic oxidation of chloroaromatics from flue gas”, Chemical Engineering Journal, 334 (2018) 519-544., 2018 Линк

223. Georgieva, I., Trendafilova, N., Bauer, G.. Spectroscopic and theoretical study of Cu(II), Zn(II), Ni(II), Co(II) and Cd(II) complexes of glyoxilic acid oxime. Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy, 63, 2, Elsevier, 2006, 403-415. ISI IF:2.353

Цитира се в:

842. Jawoor, S.S., Patil, S.A., Kumbar, M., Ramawadgi, P.B., Green synthesis of nano sized transition metal complexes containing heterocyclic Schiff base: Structural and morphology characterization and bioactivity study, 2018, Journal of Molecular Structure, 1164, pp. 378-385., 2018 Линк

843. Jawoor, S.S., Kumbar, M., Patil, S.A., Green synthesis of biologically active transition metal nanoparticles containing novel Schiff base via catalyst free hydrothermal reaction: Structural, biological and morphology study, Applied Organometallic Chemistry, 32(5), e4322 (2018)., 2018 Линк

224. Markovsky, B., Kovacheva, D., Talyosef, Y., Gorova, M., Grinblat, J., Aurbach, D.. Studies of nanosized LiNi 0.5Mn 0.5O 2-lavered compounds produced by self-combustion reaction as cathodes for lithium-ion batteries. Electrochemical and Solid-State Letters, 9, 10, 2006, ISSN:10990062, DOI:10.1149/1.2221765, A449-A453. SJR:0.842

Цитира се в:

844. Peralta, D., Salomon, J., Colin, J.-F., Boulineau, A., Fabre, F., Bourbon, C., Amestoy, B., Gutel, E., Bloch, D., Patoux, S. Submicronic LiNi1/3Mn1/3Co1/3O2 synthesized by co-precipitation for lithium ion batteries - Tailoring a classic process for enhanced energy and power density (2018) Journal of Power Sources, 396, pp. 527-532., 2018 Линк

225. Radev, L., Khristova, M, Mehandjiev, D., Samuneva, B.. Sol-gel Ag + Pd/SiO2 as a catalyst for reduction of NO with CO. Catalysis Letters, 112, 3-4, 2006, ISSN:1011372X, DOI:10.1007/s10562-006-0200-1, 181-186. ISI IF:2.485

Цитира се в:

845. Baaziz, W., Bahri, M., Gay, A.S., Chaumonnot, A., Uzio, D., Valette, S., Hirlimann, C., Ersen, O. Thermal behavior of Pd SiO2 nanostructures in various gas environments: A combined 3D and: In situ TEM approach (2018) Nanoscale, 10 (43), pp. 20178-20188., 2018

226. Mihaylov, M., A. Penkova, Hadjiivanov , K., M. Daturi. Chromium nitrosyl complexes in Cr-ZSM-5: An FTIR spectroscopic study. J. Mol. Catal., A, 249, 1-2, Elsevier, 2006, DOI:10.1016/j.molcata.2005.12.038, 40. SJR:46, ISI IF:3.615

Цитира се в:

846. M. Alotaibi, Direct Conversion of Benzene to Phenol over Zeolite Catalysts using N2O, Ph. D. Thesis, University of Rostock, Germany, 2018 [GS]., 2018

847. K. Kim, J. Choi, H. Lee, B. Moon, D. Park, W. Choi and J. Kang, Plasma-mediated fabrication of ultrathin NiAl nanosheets having rich oxygen vacancies and doped nitrogen sites and their utilization for high activity and robust stability in photoelectrochemical water oxidation, J. Mater. Chem. A, 6 (2019) 23283 [ISI]., 2018 Линк

227. Mihaylov, M., Hadjiivanov , K., H. Knözinger. Effect of Cr and Pt Promoters on the Surface Properties of Tungstated Zirconia: FTIR Spectroscopy of Probe Molecules (CO and NO). Physical Chemistry Chemical Physics, 8, Royal Society of Chemistry, 2006, DOI:10.1039/B511641D, 407-417. ISI IF:4.493

Цитира се в:

848. T. Huang, P.-F. Yan, Z. Xu, X. Liu, Q. Xin, H. Liu and Z.C. Zhang, Structural Dependence and Spectroscopic Evidence of Methane Dissolution in Ionic Liquids, J. Phys. Chem. B, 122 (2018) 6007 [ISI]., 2018 Линк

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228. Atanassova, E., Spassov, D., Paskaleva, A., Kostov, K.. Composition of Ta2O5 stacked films on N2O- and NH3-nitrided Si. Applied Surface Science, 253, 5, Elsevier, 2006, DOI:10.1016/j.apsusc.2006.05.116, 2841-2851. ISI IF:2.711

Цитира се в:

849. Jin, W., Wang, G., Peng, X., Li, W., Qasim, A.M. and Chu, P.K., 2018. Tantalum nitride films for corrosion protection of biomedical Mg-Y-RE alloy. Journal of Alloys and Compounds, 764, 5 2018, pp. 947-958, 2018 Линк

229. Grigorova E., Khristov M., Khrussanova M., Peshev P.. Addition of 3d-metals with formation of nanocomposites as a way to improve the hydrogenation characteristics of Mg2Ni. Journal of Alloys and Compounds, 414, Elsevier, 2006, ISSN:09258388, DOI:10.1016/j.jallcom.2005.07.041, 298-301. SJR:1.091, ISI IF:2.999

Цитира се в:

850. Yue Zhang Hairi Zhang Xiaoli Ding Dongming Liu Qingan Zhang Tingzhi Si. "Microstructure characterization and hydrogen storage properties study of Mg2Ni0.92M0.08 (M = Ti, V, Fe or Si) alloys". Progress in Natural Science: Materials International. Vol. 28, Pages 464-469 open access, 2018, 2018 Линк

851. Wei, Pengfei; Huang, Wen; Ding, Xiaoli; Li, Yongtao; Liu, Zheng; Si, Tingzhi; Wang, Kunyan; Wang, Qinsheng; Li, Hai-Wen; Zhang, Qingan. "Intrinsic alterations in the hydrogen desorption of Mg2NiH4 by solid dissolution of titanium". DALTON TRANSACTIONS, Vol. 47 Pages 8418-8426, 2018, 2018 Линк

230. Konova, P., Stoyanova, M., Naydenov, A., Christoskova, St., Mehandjiev, D. Catalytic Oxidation of VOCs and CO by Ozone over Alumina Supported Cobalt Oxide. Applied Catalysis A: General, 298, 1-2, ELSEVIER, 2006, DOI:10.1016/j.apcata.2005.09.027, 109-114. SJR:1.679, ISI IF:3.942

Цитира се в:

852. Chung, W. C., Mei, D. H., Tu, X., & Chang, M. B. "Removal of VOCs from gas streams via plasma and catalysis.", Catalysis Reviews, (2018) 1-62., 2018 Линк

853. Sable, S. S., Shah, K. J., Chiang, P. C., & Lo, S. L., "Catalytic oxidative degradation of phenol using iron oxide promoted sulfonated-ZrO2 by Advanced Oxidation Processes (AOPs).", Journal of the Taiwan Institute of Chemical Engineers 91 (2018) 434-440., 2018 Линк

854. Liu, Y., Yang, W., Zhang, P., & Zhang, J., "Nitric acid-treated birnessite-type MnO2: An efficient and hydrophobic material for humid ozone decomposition.", Applied Surface Science, 442 (2018) 640-649., 2018 Линк

855. Zuo, X., Hui, Z., He, E., Qin, Y., Guan, B., Zhang, P., ... & Dai, J. "Tunable magnetization and relaxor ferroelectric nature in cobalt-substituted tungsten bronze Ba4Nd2Fe2Nb8O30." Journal of Alloys and Compounds, 755 (2018) 73-78., 2018 Линк

856. Jia, Z., Amar, M. B., Yang, D., Brinza, O., Kanaev, A., Duten, X., & Vega-González, A., "Plasma catalysis application of gold nanoparticles for acetaldehyde decomposition.", Chemical Engineering Journal, 347 (2018) 913-922., 2018 Линк

857. Minsu Kim, Eunseuk Park, Jongsoo Jurng “Oxidation of gaseous formaldehyde with ozone over MnOx/TiO2catalysts at room temperature (25 °C)”, Powder Technology, 325 (2018) 368-372., 2018 Линк

231. T. Venkov, K. Fajerwerg, L. Delannoy, Hr. Klimev, Hadjiivanov , K., C. Louis. Effect of the Activation Temperature on the State of Gold Supported on Titania: an FTIR Spectroscopic Study. Applied Catalysis A: General, 301, 2006, DOI:10.1016/j.apcata.2005.11.019, 106-114. ISI IF:3.942

Цитира се в:

858. Z. Sun, X. Li, J. Liu, B. Zhu, X. Li and A. Zhu, Effect of ammonia-derived species on visible-light photocatalytic activity of Au supported on amorphous TiO2 activated by plasma, Plasma Proc. Polymers, 15 (2018) art. 1800095 [ISI]., 2018 Линк

859. Z. Tang, S. Fiorilli, H.J. Heeres and P.P. Pescarmona, Multifunctional Heterogeneous Catalysts for the Selective Conversion of Glycerol into Methyl Lactate, ACS Sustain. Chem. Eng., 6 (2018) 10923 [ISI]., 2018 Линк

860. S. Wei, X.-P. Fu, W.-W. Wang, Z. Jin, Q.-S. Song and C. Jia, Au/TiO2 Catalysts for CO Oxidation: Effect of Gold State to Reactivity, J. Phys. Chem. C, 122 (2018) 4928 [ISI]., 2018 Линк

232. T. Venkov, Hr. Klimev, M.A. Centeno, J.A. Odriozola, Hadjiivanov , K.. State of Gold on an Au/Al2O3 Catalyst Subjected to Different Pre-treatments: an FTIR Study. Catalysis Communications, 7, 2006, DOI:doi:10.1016/j.catcom.2005.11.018, 308-313. ISI IF:3.699

Цитира се в:

861. S. Wei, X.-P. Fu, W.-W. Wang, Z. Jin, Q.-S. Song and C. Jia, Au/TiO2 Catalysts for CO Oxidation: Effect of Gold State to Reactivity, J. Phys. Chem. C, 122 (2018) 4928 [ISI]., 2018 Линк

862. C.A. Angelucci, R.C. Ambrosio and A.A. Gewirth, Origins of Less Noble Behavior by Au during CO Adsorption, ACS Catal., 8 (2018) 2247 [ISI]., 2018 Линк

233. T. Venkov, M. Dimitrov, Hadjiivanov , K.. FTIR Spectroscopic Study of the Nature and Reactivity of NOx Compounds Formed on Cu/Al2O3 after Coadsorption of NO and O2. J. Mol. Catal., A, 243, 2006, DOI:doi:10.1016/j.molcata.2005.08.018, 8-16. ISI IF:3.615

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Цитира се в:

863. S. Ali, L. Chen, Z. Li, T. Zhang, R. Li, S.H. Bakhtiar, X. Leng, F. Yuan, X. Niu and Y. Zhu, Cux -Nb1.1- x (x = 0.45, 0.35, 0.25, 0.15) bimetal oxides catalysts for the low temperature selective catalytic reduction of NO with NH3, Appl. Catal. B, 236 (2018) 25 [ISI]., 2018 Линк

234. Stefanov, P., Minkovski, N., Balchev, I., Avramova, I., Sabotinov, N., Marinova, Ts.. XPS Studies of Short Pulse Laser Interaction with Copper. Applied Surface Science, 253, 3, 2006, ISSN:0169-4332, 1046-1050. SJR:0.913, ISI IF:2.711

Цитира се в:

864. Petrović, S., Gaković, B., Panjan, P., Kovač, J., Lazović, V., Ristoscu, C., Negut, I., Mihailescu, I.N.Oxidation behaviour of composite CrN/(Cr, V)N coatings with different contents of vanadium induced by UV nanosecond laser pulses (2018) Optical and Quantum Electronics, 50 (5), art. no. 208, ., 2018 Линк

865. NA Dahham . Annealing temperature effect on the Structure, Morphology and Optical properties of Copper Oxide CuO thin Films.Tikrit Journal of Pure Science, 2018, 2018 Линк

235. A. Mihaylova, Hadjiivanov , K., S. Dzwigaj, M. Che. Remarkable Effect of the Preparation Technique on the State of Cobalt Ions in BEA Zeolites Evidenced by FTIR Spectroscopy of Adsorbed CO and NO, TPR and XRD. J. Phys. Chem. B, 110, American Chemical Society, 2006, DOI:10.1021/jp0634398, 19530. ISI IF:3.302

Цитира се в:

866. K. Khivantsev, A. Biancardi, M. Fathizadeh, F. Almalki, J.L. Grant, H.N. Tien, A. Shakouri, D.A. Blom, T.M. Makris, J.R. Regalbuto, M. Caricato and M. Yu, ChemCatChem, 10 (2018) 736 [ISI].) doi:10.1002/cctc.201701268, 2018 Линк

236. Mihaylov, M., Ivanova, E., Thibault-Starzyk, F., Daturi, M., Dimitrov, L., Hadjiivanov, K.. New Types of Non-classical Iridium Carbonyls Formed in Ir–ZSM-5: An FTIR Spectroscopy Investigation. J. Phys. Chem. B, 110, 21, American Chemical Society, 2006, DOI:10.1021/jp057128t, 10383-10389. ISI IF:3.302

Цитира се в:

867. Y. Lu, J. Wang, L. Yu, L. Kovarik, X. Zhang, A.S. Hoffman, A. Gallo, S.R. Bare, D. Sokaras, T. Kroll, V. Dagle, H. Xin and A.M. Karim, Identification of the active complex for CO oxidation over single-atom Ir-on-MgAl2O4 catalysts, Nature Cat., (2018) 2520-1158 doi: 10.1038/s41929-018-0192-4 [ISI]., 2018 Линк

237. Vladkova, T., Dineff, P., Gospodinova, D., Avramova, I.. Wood flour:New filler for the rubber processing industry. IV. Cure characteristics and mechanical properties of natural rubber compounds filled by non-modified or corona treated wood flour. Journal of Applied Polymer Science, 101, 1, 2006, ISSN:1097-4628, 651-658. ISI IF:1.768

Цитира се в:

868. Mohit, H., Arul Mozhi Selvan, V.A comprehensive review on surface modification, structure interface and bonding mechanism of plant cellulose fiber reinforced polymer based composites (2018) Composite Interfaces, 25 (5-7), pp. 629-667., 2018 Линк

869. Ali, N.K.A.A new reinforcement material for rubber compounds (Sediment dust nanoparticles and white ceminte) (2018) 1st International Scientific Conference of Engineering Sciences - 3rd Scientific Conference of Engineering Science, ISCES 2018 - Proceedings, 2018-January, pp. 163-168., 2018 Линк

238. Klissurski, D., Mancheva, M., Iordanova, R., Tyuiliev, G., Kunev, B.. Mechanochemical synthesis of nanocrystalline nickel molybdates. Journal of Alloys and Compounds, 422, 1-2, Elsevier, 2006, ISSN:09258388, DOI:10.1016/j.jallcom.2005.11.073, 53-57. SJR:0.901, ISI IF:2.99

Цитира се в:

870. V. A. Zazhigalov еt al., " MECHANOCHEMICAL SYNTHESIS OF NANODISPERSED MOLYBDENUM OXIDE CATALYSTS", Theoretical and Experimental Chemistry 2018, 225-234, 2018

871. Gou, Ying, et al. "FeMoO 4 nanorod array: a highly active 3D anode for water oxidation under alkaline conditions." Inorganic Chemistry Frontiers 5.3 (2018): 665-668., 2018

872. Jeseentharani, V. et al., "Nanocrystalline composites of transition metal molybdate (Ni1–xCoxMoO4; x = 0, 0.3, 0.5, 0.7, 1) synthesized by a co-precipitation method as humidity sensors and their photoluminescence properties." Journal of Physics and Chemistry of Solids 115 (2018): 75-83., 2018

873. Ray, Schindra Kumar, et al. "Inactivation of Staphylococcus aureus in visible light by morphology tuned α-NiMoO4." Journal of Photochemistry and Photobiology A: Chemistry 350 (2018): 59-68., 2018 Линк

239. Nedkov, I., Vandenberghe, R. E., Marinova, Ts., Tailhades, Ph., Merodiiska, T., Avramova, I.. Magnetic structure and collective Jahn-Teller distortions in nanostructured particles of CuFe2O4. Applied Surface Science, 253, 5, 2006, ISSN:0169-4332, 2589-2596. SJR:0.913, ISI IF:2.711

Цитира се в:

Page 56: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 56/154

874. López-Ramón, M.V., Álvarez, M.A., Moreno-Castilla, C., Fontecha-Cámara, M.A., Yebra-Rodríguez, Á., Bailón-García, E.Effect of calcination temperature of a copper ferrite synthesized by a sol-gel method on its structural characteristics and performance as Fenton catalyst to remove gallic acid from water (2018) Journal of Colloid and Interface Science, 511, pp. 193-202., 2018 Линк

875. Wang, W., Zhang, D.Facile preparation of rGO/Fe2O4 (M = Cu, Co, Ni) nanohybrids and its catalytic performance during the thermal decomposition of ammonium perchlorate (2018) RSC Advances, 8 (56), pp. 32221-32230., 2018 Линк

876. Saha, T.K., Das, R.Progress in synthesis of propargylamine and its derivatives by nanoparticle catalysis via A3 coupling: A decade update (2018) ChemistrySelect, 3 (1), pp. 147-169., 2018 Линк

877. Dasireddy, V.D.B.C., Likozar, B., Valand, J.Preferential oxidation of CO in H-2/H2O/CO2/water–gas shift feedstocks over Cu-based carbon nanotubes-supported heterogeneous catalysts (2018) Applied Catalysis B: Environmental, 237, pp. 1044-1058., 2018 Линк

878. Caddeo, F., Loche, D., Casula, M.F., Corrias, A.Evidence of a cubic iron sub-lattice in t-CuFe2O4 demonstrated by X-ray Absorption Fine Structure (2018) Scientific Reports, 8 (1), art. no. 797, ., 2018 Линк

879. Nikolić, V.N., Vasić, M., Milić, M.M.Observation of low- and high-temperature CuFe2O4 phase at 1100 °C: The influence of Fe3+ions on CuFe2O4 structural transformation (2018) Ceramics International, 44 (17), pp. 21145-21152., 2018 Линк

880. Zhang, P., Wang, M., Wang, J., Teng, X., Zhang, S., Xie, H., Ding, S.Facile synthesis and characterization of low crystalline Nb2O5 ultrafine nanoparticles as a new efficient photocatalyst (2018) Journal of Non-Crystalline Solids, 500, pp. 371-376., 2018 Линк

881. Ghumare, A.B., Mane, M.L., Shirsath, S.E., Lohar, K.S.Role of pH and Sintering Temperature on the Properties of Tetragonal–Cubic Phases Composed Copper Ferrite Nanoparticles (2018) Journal of Inorganic and Organometallic Polymers and Materials, 28 (6), pp. 2612-2619., 2018 Линк

882. Rezaul Karim, K.M., Ong, H.R., Abdullah, H., Yousuf, A., Cheng, C.K., Rahman Khan, M.M.Photoelectrochemical reduction of carbon dioxide to methanol on p-type CuFe2O4 under visible light irradiation (2018) International Journal of Hydrogen Energy, 43 (39), pp. 18185-18193., 2018 Линк

883. Odkhuu, D., Tsevelmaa, T., Sangaa, D., Tsogbadrakh, N., Rhim, S.H., Hong, S.C.First-principles study of magnetization reorientation and large perpendicular magnetic anisotropy in CuFe2O4/MgO heterostructures (2018) Physical Review B, 98 (9), art. no. 094408, ., 2018 Линк

884. Hu, X., Zhu, Z., Li, Z., Xie, L., Wu, Y., Zheng, L.Heterostructure of CuO microspheres modified with CuFe2O4 nanoparticles for highly sensitive H2S gas sensor (2018) Sensors and Actuators, B: Chemical, 264, pp. 139-149., 2018 Линк

885. Kanna, R.R., Lenin, N., Sakthipandi, K., Kumar, A.S.Structural, optical, dielectric and magnetic studies of gadolinium-added Mn-Cu nanoferrites (2018) Journal of Magnetism and Magnetic Materials, 453, pp. 78-90., 2018 Линк

240. Zhecheva, E., Stoyanova, R., Alcantara, R., Lavela, P., Tirado, J. L.. EPR studies of Li deintercalation from LiCoMnO4 spinel-type electrode active material. Journal of Power Sources, 159, 2, 2006, ISSN:0378-7753, 1389-1394. ISI IF:6.217

Цитира се в:

886. Huang, Y., Wang, Z., Jiang, Y., Li, S., Li, Z., Zhang, H., Wu, F., Xie, M., Li, L., Chen, R. "Hierarchical porous Co0.85Se reduced graphene oxide ultrathin nanosheets with vacancy-enhanced kinetics as superior anodes for sodium-ion batteries". Nano Energy, 53, pp. 524-535, 2018, 2018 Линк

887. Min, K., Jung, C., Ko, D.-S., Kim, K., Jang, J., Park, K., Cho, E. "High-Performance and Industrially Feasible Ni-Rich Layered Cathode Materials by Integrating Coherent Interphase". ACS Applied Materials and Interfaces, 10 (24), pp. 20599-20610, 2018, 2018 Линк

888. Windmüller, A.; Bridges, C.A.; Tsai, C.-L.; Lobe, S.; Dellen, C.; Veith, G.M.; Finsterbusch, M.; Uhlenbruck, S.; Guillon, O. "Impact of Fluorination on Phase Stability, Crystal Chemistry, and Capacity of LiCoMnO4 High Voltage Spinels" ACS Appl. Energy Mater., 2018, 1 (2), pp 715–724, 2018 Линк

241. Idakiev, V., Tabakova, T., Naydenov, A., Yuan, Z.-Y., Su, B.-L.. Gold catalysts supported on mesoporous zirconia for low-temperature water–gas shift reaction. Applied Catalysis B: Environmental, 63, 3-4, Elsevier, 2006, DOI:10.1016/j.apcatb.2005.10.007, 178-186. ISI IF:7.44

Цитира се в:

889. Tsai, S.-B., Ma, H., A Research on Preparation and Application of the Monolithic Catalyst with Interconnecting Pore Structure (2018) Scientific Reports, 8 (1), art. no. 16605., 2018 Линк

242. Detcheva, A., Grobecker, K.H.. Determination of Hg, Cd, Mn, Pb and Sn in Seafood by Solid Sampling Zeeman Atomic Absorption Spectrometry. Spectrochimica Acta Part B, 61, 2006, 454-459. ISI IF:3.092

Цитира се в:

890. Alizadeh, T., Hamidi, N., Ganjali, M.R., Rafiei, F. "Determination of subnanomolar levels of mercury (II) by using a graphite paste electrode modified with MWCNTs and Hg(II)-imprinted polymer nanoparticles" Microchimica Acta, 185 (1), art. no. 16, 2018, 2018 Линк

243. Grobecker, K.H., Detcheva, A.. Validation of Mercury Determination by Solid Sampling Zeeman Atomic Absorption Spectrometry and a Specially Designed Furnace. Talanta, 70, 2006, 962-965. ISI IF:3.206

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Цитира се в:

891. Wohlmann, W., Neves, V.M., Heidrich, G.M., Silva, J.S., da Costa, A.B., Paniz, J.N.G., Dressler, V.L. "Development of an electrothermal vaporizer for direct mercury determination in soil by inductively-coupled plasma mass spectrometry" Spectrochimica Acta - Part B Atomic Spectroscopy, 149, pp. 222-228, 2018, 2018 Линк

244. Alcantara, R., Ortiz, G. F., Lavela, P., Tirado, J. L., Stoyanova, R., Zhecheva, E.. EPR, NMR, and electrochemical studies of surface-modified carbon microbeads. Chemistry of Materials, 18, 9, 2006, ISSN:0897-4756, 2293-2301. ISI IF:8.354

Цитира се в:

892. Ahad, S.A., Pitchai, R., Beyene, A.M., Joo, S.H., Kim, D.K., Lee, H.-W. "Realizing High-Performance Li–Polysulfide Full Cells by using a Lithium Bis(trifluoromethanesulfonyl)imide Salt Electrolyte for Stable Cyclability". ChemSusChem, 11 (19), pp. 3402-3409, 2018, 2018 Линк

893. Zhang, J., Wang, J., Shi, Z., Xu, Z. "Mesoporous carbon material as cathode for high performance lithium-ion capacitor". Chinese Chemical Letters, 29 (4), pp. 620-623, 2018, 2018 Линк

894. Johansson, P., Rozier, P., Palacín, M.R. "Na-ion batteries - state of the art and prospects". Prospects For Li-ion Batteries And Emerging Energy Electrochemical Systems, 4, pp. 161-235, 2018, 2018 Линк

895. Skundin, A.M., Kulova, T.L., Yaroslavtsev, A.B. "Sodium-Ion Batteries (a Review)". Russian Journal of Electrochemistry, 54 (2), pp. 113-152, 2018, 2018 Линк

245. Bobet J.-L., Grigorova E., Chevalier B., Khrussanova M., Peshev P.. Hydrogenation of CeNi: hydride formation, structure and magnetic properties. Intermetallics, 14, 2, Elsevier, 2006, ISSN:09669795, DOI:10.1016/j.intermet.2005.05.006, 208-2012. SJR:1.501, ISI IF:2.541

Цитира се в:

896. Lei, Y., Sun, X., Zhou, R., Zhang, B. "Embedded atom method potentials for Ce-Ni binary alloy". Computational Materials Science 150, pp. 1-8, 2018, 2018 Линк

897. Rana, P. "A theoretical study on Cerium-Nickel intermetallic compound". AIP Conference Proceedings. 2nd International Conference on Condensed Matter and Applied Physics, ICC 2017; Bikaner; India; 24 November 2017 through 25 November 2017; Code 136343, Vol. 1953 , Article number 110012, 2018, 2018 Линк

898. V. Paul-Boncour. "Introduction to hydrides of binary and pseudo-binary intermetallic compounds". Hydrogen Storage Materials pp 39-39, chapter, Part of the Advanced Materials and Technologies book series (volume 8), 2018, 2018 Линк

246. Mihaylov, M., J.C. Fierro-Gonzalez, H. Knözinger, B.C. Gates, Hadjiivanov , K.. Formation of Non-classical Gold Carbonyls in Zeolite NaY: Characterization by IR Spectroscopy. J. Phys. Chem. B, 110, 15, American Chemical Society, 2006, DOI:10.1021/jp057426q, 7695-7701. ISI IF:2.693

Цитира се в:

899. K. Khivantsev, A. Biancardi, M. Fathizadeh, F. Almalki, J.L. Grant, H.N. Tien, A. Shakouri, D.A. Blom, T.M. Makris, J.R. Regalbuto, M. Caricato and M. Yu, Catalytic N-H Bond Activation and Breaking by a Well-defined Co(II)1O4 Site of a Heterogeneous Catalyst, ChemCatChem, 10 (2018) 736, doi:10.1002/cctc.201701268, 2018 Линк

247. Birgersson, H., Boutonnet, M., Klingstedt, F., Murzin, D. Yu., Stefanov, P., Naydenov, A.. An investigation of a new regeneration method of commercial aged three-way catalysts. Applied Catalysis B: Environmental, 65, 1-2, Elsevier, 2006, ISSN:09263373, DOI:10.1016/j.apcatb.2005.12.013, 93-100. ISI IF:7.44

Цитира се в:

900. Mandal, S., Maity, S., Gupta, P.K., Mahato, A., Bhanja, P., Sahu, G., Synthesis of middle distillate through low temperature Fischer-Tropsch (LTFT) reaction over mesoporous SDA supported cobalt catalysts using syngas equivalent to coal gasification (2018) Applied Catalysis A: General, 557, pp. 55-63., 2018 Линк

2007

248. Mancheva, M., Iordanova, R., Klissurski, D., Tyuliev, G., Kunev, B.. Direct mechanochemical synthesis of nanocrystalline NiWO4. Journal of Physical Chemistry C, 111, 3, American Chemical Society, 2007, ISSN:1932-7455, DOI:10.1021/jp065071k, 1101-1104. ISI IF:3.396

Цитира се в:

901. Huang, Yunxia, et al. "Ni0. 85Co0. 15WO4 nanosheet electrodes for supercapacitors with excellent electrical conductivity and capacitive performance." Nano Energy 48 (2018): 430-440, 2018

902. Ji, Yuyao, et al. "Full water splitting electrocatalyzed by NiWO4 nanowire array." ACS Sustainable Chemistry & Engineering 6.8 (2018): 9555-9559., 2018

903. Sun, Kang, et al. "3D Structured Polyoxometalate Microcrystals with Enhanced Rate Capability and Cycle Stability for Lithium Ion Storage." ACS applied materials & interfaces (2018)., 2018

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904. Anis, Shaheen Fatima, et al. "Photoelectrochemical activity of electrospun WO 3/NiWO 4 nanofibers under visible light irradiation." Journal of Materials Science 53.3 (2018): 2208-2220., 2018

905. Bespalko, Y., et al. "Structural and transport properties of neodymium tungstates prepared via mechanochemical activation." Ceramics International (2018)., 2018

906. Pourmortazavi, S. M. et alq "Evaluation of photocatalytic and supercapacitor potential of nickel tungstate nanoparticles synthesized by electrochemical method", New J. Chem., 42 (2018) 19934-19944, 2018

907. Harshan, Hitha, et al. "Structural, optical and magnetic properties of nanophase NiWO 4 for potential applications." The European Physical Journal B 91.11 (2018): 287., 2018

908. Babu, Eadi Sunil, et al. "Novel NiWO4 nanoberries morphology effect on photoelectrochemical properties." Materials Letters 220 (2018): 209-212, 2018

909. El Khouri, Asmaa, Abdelouahad Zegzouti, and Mohammed Elaatmani. "Synthesis and multimethodological characterization of neodymium substituted nickel tungstates and molybdates solid solution Ni Ndx (W, Mo) O4, (0≤ x≤ 0.2)." Inorganic Chemistry Communications (2018)., 2018

249. Todorovsky, D.S., Todorovska, R.V., Milanova, M.M., Kovacheva, D.G.. Deposition and characterization of La2Ti2O7 thin films via spray pyrolysis process. Applied Surface Science, 253, 10, Elsevier, 2007, ISSN:0169-4332, DOI:10.1016/j.apsusc.2006.10.016, 4560-4565. ISI IF:3.15

Цитира се в:

910. Bayart, A., Szczepanski, F., Blach, J.-F., Rousseau, J., Katelnikovas, A., Saitzek, S. Upconversion luminescence properties and thermal quenching mechanisms in the layered perovskite La1.9Er0.1Ti2O7 towards an application as optical temperature sensor (2018) Journal of Alloys and Compounds, 744, pp. 516-527., 2018 Линк

250. Panayotov, D., Yates, J.T, Jr.. n-Type doping of TiO2 with atomic hydrogen-observation of the production of conduction band electrons by infrared spectroscopy. Chemical Physics Letters, 436, Elsevier Science B.V., 2007, ISSN:0009-2614, DOI:http://dx.doi.org/10.1016/j.cplett.2007.01.039, 204-208. ISI IF:1.897

Цитира се в:

911. Hu, G.; Wu, Z.; Jiang, D.-e., "First Principles Insight into H2 Activation and Hydride Species on TiO2 Surfaces". The Journal of Physical Chemistry C 2018, 122 (35), 20323-20328; DOI: 10.1021/acs.jpcc.8b05251, 2018 Линк

912. Ozawa, K.; Yamamoto, S.; Yukawa, R.; Liu, R.-Y.; Terashima, N.; Natsui, Y.; Kato, H.; Mase, K.; Matsuda, I., "Correlation between Photocatalytic Activity and Carrier Lifetime: Acetic Acid on Single-Crystal Surfaces of Anatase and Rutile TiO2". The Journal of Physical Chemistry C 2018, 122 (17), 9562-9569; DOI: 10.1021/acs.jpcc.8b02259, 2018 Линк

913. Zhang, L.; Han, B.; Cheng, P.; Hu, Y. H., "In-situ FTIR-DRS investigation on shallow trap state of Cu-doped TiO2 photocatalyst". Catalysis Today 2018; DOI: 10.1016/j.cattod.2018.06.049, 2018 Линк

914. Arooj, S.; Xu, T.; Hou, X.; Wang, Y.; Tong, J.; Chu, R.; Liu, B., "Green emission of indium oxide via hydrogen treatment". RSC Advances 2018, 8 (21), 11828-11833; DOI: 10.1039/C8RA00654G, 2018 Линк

915. Murakami, N. , Shinoda, T. , "Mid-infrared absorption of trapped electrons in titanium(IV) oxide particles using a photoacoustic FTIR technique". Phys. Chem. Chem. Phys., 2018, 20, 24519-24522; DOI: 10.1039/C8CP04885A, 2018 Линк

916. Akbar Mahdavi Shakib, Mechanistic Studies of Reducible Metal Oxides as Hydrodeoxygenation Catalysts, University of Maine, Electronic Theses and Dissertations. 2908, 2018, 2018 Линк

917. Chen, T.; Hao, Y.-n.; Jin, F.; Wei, M.; Feng, J.; Jia, R.; Yi, Z.; Rohlfing, M.; Liu, C.; Ma, Y., Origin of the deep band-gap state in TiO2 (110): ddsigma bonds between Ti-Ti pairs". Physical Review B 2018, 98 (20), 205135; DOI: 10.1103/PhysRevB.98.205135, 2018 Линк

918. Ma, S.; Zhang, Z.; Harrison, I., "Photoreduction of Hydrogen Cations on TiO2 and Its Impact on Surface Band Bending and the Charge Carrier Recombination Rate: A Photoluminescence Study under High Vacuum Conditions". The Journal of Physical Chemistry C 2018, 122 (15), 8288-8294; DOI: 10.1021/acs.jpcc.7b12624, 2018 Линк

919. Szenti, I.; Bugyi, L.; Kónya, Z., "Reaction and Diffusion Paths of Water and Hydrogen on Rh Covered Black Titania". Topics in Catalysis 2018, 61 (12), 1362-1374; DOI: 10.1007/s11244-018-0990-6, 2018 Линк

920. Zhang, G.; Zou, J.; Xu, X., "Reduced 3d Transition Metal Oxides Work as Solid-State Sources of Solvated Electrons and Directly Inject Electrons into Water for H2 Production under Mild Thermal or IR Excitation". Advanced Sustainable Systems, 2018, 2, 1700139., 2018 Линк

251. Trendafilova, T., Ivanova, K., Kovacheva, D.. Electrical characteristics of Li2MM3O8, (M=Mg, Zn; M =Ti, Sn). Journal of Optoelectronics and Advanced Materials, 9, 2, 2007, ISSN:1454-4164, 271-274. ISI IF:0.429

Цитира се в:

921. Tang, H., Zan, L., Tang, Z. Predominant electronic conductivity of Li2ZnTi3O8 anode material prepared in nitrogen for rechargeable lithium-ion batteries (2018) Journal of Electroanalytical Chemistry, 823, pp. 269-277., 2018 Линк

252. Khristova M., Ivanov B., Spassova I., Spassov T.. NO reduction with CO on copper and ceria oxides supported on alumina. Catalysis

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Letters, 119, 1-2, 2007, DOI:10.1007/s10562-007-9195-5, 79-86. ISI IF:2.294

Цитира се в:

922. Intana, T.; Föttinger, K.; Rupprechter, G.; Kongkachuichay, P., (2018) Journal of Nanoscience and Nanotechnology, 18, 132-142(11), 2018 Линк

923. Bahrami, S., Farzi, A., Khaledia, H. R., Tarjomannejad, A., & Niaei, A. (2018). Analysis of NO+ CO Reduction over LaCo0. 5B0. 5O3 (B = Cr, Cu, Mn) Perovskite-Type Nanocatalysts Using Artificial Neural Networks. Chemical Engineering Letters: Modeling, Simulation and Control, 3(1)., 2018

253. Tzvetkova, Chr., Bozhkov, O., Ruseva, E.. Study of the Possibility of Rhenium Extraction and Preconcentration from Plants. Proceedings of the WSEAS International Conference on Waste Management, Water Pollution, Air Pollution, Indoor Climate, Arcachon, France, October 13-15, 2007, 2007, ISBN:978-960-6766-09-1, ISSN:1790-5095, 253-256

Цитира се в:

924. Honghua He, Zhigang Dong, Jiayin Pang, Gao-Lin Wu, Jiyong Zheng, Xingchang Zhang. “Phytoextraction of rhenium by Lucerne (Medicago Sativa) and erect milkvetch (Astragalus adsurgens) from alkaline soils amended with coal fly ash”. Science of the Total Environment 630, 570–577, 2018, 2018

254. Lavela, O., Ortiz, G. F., Tirado, J. L., Zhecheva, E., Stoyanova, R., Ivanova, Sv.. High-performance transition metal mixed oxides in conversion electrodes: A combined spectroscopic and electrochemical study. Journal of Physical Chemistry C, 111, 38, 2007, ISSN:1932-7447, 14238-14246. ISI IF:4.772

Цитира се в:

925. Zhao, Z., Tian, G., Sarapulova, A., Trouillet, V., Fu, Q., Geckle, U., Ehrenberg, H., Dsoke, S. "Elucidating the energy storage mechanism of ZnMn2O4 as promising anode for Li-ion batteries". Journal of Materials Chemistry A, 6 (40), pp. 19381-19392, 2018, 2018 Линк

926. Ottmann, Alexander; PhD Thesis: "Nanostructured carbon composites and ammonium vanadates as electrode materials for lithium-ion batteries", The Faculty of Physics and Astronomy, Kirchhoff Institute for Physics, University of Heilderberg, 2018 Линк

255. Panayotov, D., Yates, J.T., Jr.. Spectroscopic Detection of Hydrogen Atom Spillover from Au Nanoparticles Supported on TiO2: Use of Conduction Band Electrons. Journal of Physical Chemistry C, 111, American Chemical Society, 2007, ISSN:1932-7447, 2959-2964. ISI IF:4.772

Цитира се в:

927. Zhan, G.; Zeng, H. C., "Hydrogen spillover through Matryoshka-type (ZIFs )n−1ZIFs nanocubes". Nature Communications 2018, 9 (1), 3778; DOI:, 2018 Линк

928. Houlihan, N.; Karker, N.; Potyrailo, R. A.; Carpenter, M. A., "High sensitivity plasmonic sensing of hydrogen over a broad dynamic range using catalytic Au-CeO2 thin film nanocomposites". ACS Sensors 2018; DOI: 10.1021/acssensors.8b01193, 2018 Линк

929. Guo, Y.; Mei, S.; Yuan, K.; Wang, D.-J.; Liu, H.-C.; Yan, C.-H.; Zhang, Y.-W., "Low-Temperature CO2 Methanation over CeO2-Supported Ru Single Atoms, Nanoclusters, and Nanoparticles Competitively Tuned by Strong Metal–Support Interactions and H-Spillover Effect". ACS Catalysis 2018, 8 (7), 6203-6215; DOI: 10.1021/acscatal.7b04469, 2018 Линк

930. Lupan, O.; Postica, V.; Ababii, N.; Reimer, T.; Shree, S.; Hoppe, M.; Polonskyi, O.; Sontea, V.; Chemnitz, S.; Faupel, F.; Adelung, R., "Ultra-thin TiO2 films by atomic layer deposition and surface functionalization with Au nanodots for sensing applications". Materials Science in Semiconductor Processing 2018, 87, 44-53; DOI: 10.1016/j.mssp.2018.06.031, 2018 Линк

931. Jeon, S.; Park, Y. M.; Park, J.; Saravanan, K.; Jeong, H.-K.; Bae, J. W., "Synergistic effects of Nb2O5 promoter on Ru/Al2O3 for an aqueous-phase hydrodeoxygenation of glycerol to hydrocarbons". Applied Catalysis A: General 2018, 551, 49-62; DOI: 10.1016/j.apcata.2017.12.006, 2018 Линк

932. Murakami, N.; Shinoda, T., "Mid-infrared absorption of trapped electrons in titanium(iv) oxide particles using a photoacoustic FTIR technique". Physical Chemistry Chemical Physics 2018, 20 (38), 24519-24522; DOI: 10.1039/C8CP04885A, 2018 Линк

933. Nagpal, M.; Kakkar, R., "An evolving energy solution: Intermediate hydrogen storage". International Journal of Hydrogen Energy 2018, 43 (27), 12168-12188; DOI: 10.1016/j.ijhydene.2018.04.103, 2018 Линк

934. Gromov, V. F.; Gerasimov, G. N.; Belysheva, T. V.; Ikim, M. I.; Spiridonova, E. Y.; Grekhov, M. M.; Ali-zade, R. A.; Trakhtenberg, L. I., "Sensor Properties of Nanostructured Systems Based on Indium Oxide with Co3O4 or ZrO2 Additives". Russian Journal of Physical Chemistry B 2018, 12 (1), 129-134; DOI: 10.1134/S1990793118010062, 2018 Линк

935. Ramaprabhu SUNDARA, Sangeetha Vellaichamy, Abinaya Shunmugam, "Diatom-based nanocomposites, methods for their preparation and use" Indian Institutes of Technology, 2018-01-16, US9868106B2, Grant, 2018 Линк

936. Akbar Mahdavi Shakib, Mechanistic Studies of Reducible Metal Oxides as Hydrodeoxygenation Catalysts, University of Maine, Electronic Theses and Dissertations. 2908, 2018, 2018 Линк

937. Tosoni, S.; Chen, H.-Y. T.; Ruiz Puigdollers, A.; Pacchioni, G., "TiO2 and ZrO2 in biomass conversion: why catalyst reduction helps". Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences 2018, 376 (2110), 2018

Page 60: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

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Линк

256. Ivanova, S., Zhecheva, E., Stoyanova, R.. Microstructure of LaCoO3 prepared by freeze-drying of metal–citrate precursors revealed by EPR. Journal of Physics and Chemistry of Solids, 68, 2, Pergamon, 2007, ISSN:0022-3697, 168-174. SJR:0.605, ISI IF:1.849

Цитира се в:

938. Wang, X., Huang, K., Yuan, L., Li, S., Ma, W., Liu, Z., Feng, S. "Molten Salt Flux Synthesis, Crystal Facet Design, Characterization, Electronic Structure, and Catalytic Properties of Perovskite Cobaltite". ACS Applied Materials and Interfaces, 10 (33), pp. 28219-28231, 2018, 2018 Линк

257. Aurbach, D., Markovsky, B., Salitra, G., Markevich, E., Talyossef, Y., Koltypin, M., Nazar, L., Ellis, B., Kovacheva, D.. Review on electrode-electrolyte solution interactions, related to cathode materials for Li-ion batteries. Journal of Power Sources, 165, 2, 2007, ISSN:0378-7753, DOI:10.1016/j.jpowsour.2006.10.025, 491-499. ISI IF:6.217

Цитира се в:

939. Schindler, S., Bauer, M., Cheetamun, H., Danzer, M.A. Fast charging of lithium-ion cells: Identification of aging-minimal current profiles using a design of experiment approach and a mechanistic degradation analysis (2018) Journal of Energy Storage, 19, pp. 364-378., 2018 Линк

940. Gür, T.M. Review of electrical energy storage technologies, materials and systems: Challenges and prospects for large-scale grid storage (2018) Energy and Environmental Science, 11 (10), pp. 2696-2767., 2018 Линк

941. Chen, Z., Kim, G.-T., Bresser, D., Diemant, T., Asenbauer, J., Jeong, S., Copley, M., Behm, R.J., Lin, J., Shen, Z., Passerini, S. MnPO4-Coated Li(Ni0.4Co0.2Mn0.4)O2 for Lithium(-Ion) Batteries with Outstanding Cycling Stability and Enhanced Lithiation Kinetics (2018) Advanced Energy Materials, 8 (27), art. no. 1801573, ., 2018 Линк

942. Zhang, J.-N., Li, Q., Wang, Y., Zheng, J., Yu, X., Li, H. Dynamic evolution of cathode electrolyte interphase (CEI) on high voltage LiCoO2 cathode and its interaction with Li anode (2018) Energy Storage Materials, 14, pp. 1-7., 2018 Линк

943. Kim, P.J., Kim, K., Pol, V.G. Uniform metal-ion flux through interface-modified membrane for highly stable metal batteries (2018) Electrochimica Acta, 283, pp. 517-527., 2018 Линк

944. Zhang, T., Paillard, E. Recent advances toward high voltage, EC-free electrolytes for graphite-based Li-ion battery (2018) Frontiers of Chemical Science and Engineering, 12 (3), pp. 577-591., 2018 Линк

945. Liu, S., Dang, Z., Liu, D., Zhang, C., Huang, T., Yu, A. Comparative studies of zirconium doping and coating on LiNi0.6Co0.2Mn0.2O2 cathode material at elevated temperatures (2018) Journal of Power Sources, 396, pp. 288-296., 2018 Линк

946. Li, D., Li, H., Danilov, D., Gao, L., Zhou, J., Eichel, R.-A., Yang, Y., Notten, P.H.L. Temperature-dependent cycling performance and ageing mechanisms of C6/LiNi1/3Mn1/3Co1/3O2 batteries (2018) Journal of Power Sources, 396, pp. 444-452., 2018 Линк

947. Flores, E., Novák, P., Berg, E.J. In situ and Operando Raman spectroscopy of layered transition metal oxides for Li-ion battery cathodes (2018) Frontiers in Energy Research, 6 (AUG), art. no. 82, ., 2018 Линк

948. Liu, S., Su, J., Zhao, J., Chen, X., Zhang, C., Huang, T., Wu, J., Yu, A. Unraveling the capacity fading mechanisms of LiNi0.6Co0.2Mn0.2O2 at elevated temperatures (2018) Journal of Power Sources, 393, pp. 92-98., 2018 Линк

949. Keller, M., Varzi, A., Passerini, S. Hybrid electrolytes for lithium metal batteries (2018) Journal of Power Sources, 392, pp. 206-225., 2018 Линк

950. Park, J.-H., Choi, B., Kang, Y.-S., Park, S.Y., Yun, D.J., Park, I., Shim, J.H., Park, J.-H., Han, H.N., Park, K. Effect of Residual Lithium Rearrangement on Ni-rich Layered Oxide Cathodes for Lithium-Ion Batteries (2018) Energy Technology, 6 (7), pp. 1361-1369., 2018 Линк

951. Jeong, H., Kim, J., Soon, J., Chae, S., Hwang, S., Ryu, J.H., Oh, S.M. Degradation of surface film on LiCoO2 electrode by hydrogen fluoride attack at moderately elevated temperature (2018) Electrochimica Acta, 277, pp. 59-66., 2018 Линк

952. Lou, S., Ma, Y., Zhou, Z., Huo, H., Zuo, P., Cheng, X., Qu, X., Gao, Y., Du, C., Yin, G. Unravelling the Enhanced High-Temperature Performance of Lithium-Rich Oxide Cathode with Methyl Diphenylphosphinite as Electrolyte Additive (2018) ChemElectroChem, 5 (12), pp. 1569-1575., 2018 Линк

953. Kim, Y., Koo, D., Ha, S., Jung, S.C., Yim, T., Kim, H., Oh, S.K., Kim, D.-M., Choi, A., Kang, Y., Ryu, K.H., Jang, M., Han, Y.-K., Oh, S.M., Lee, K.T. Two-Dimensional Phosphorene-Derived Protective Layers on a Lithium Metal Anode for Lithium-Oxygen Batteries (2018) ACS Nano, 12 (5), pp. 4419-4430., 2018 Линк

954. Wang, L., Xin, L., Ishiyama, T., Peng, Q., Ye, S., Morita, A. Microscopic investigation of ethylene carbonate interface: A molecular dynamics and vibrational spectroscopic study (2018) Wuli Huaxue Xuebao/ Acta Physico - Chimica Sinica, 34 (10), pp. 1124-1135., 2018 Линк

955. Wang, Y., Roller, J., Maric, R. Morphology-Controlled One-Step Synthesis of Nanostructured LiNi1/3Mn1/3Co1/3O2 Electrodes for Li-Ion Batteries (2018) ACS Omega, 3 (4), pp. 3966-3973., 2018 Линк

956. Çapraz, Rajput, S., White, S., Sottos, N.R. Strain Evolution in Lithium Manganese Oxide Electrodes (2018) Experimental Mechanics, 58 (4), pp. 561-571., 2018 Линк

957. Ludwig, J., Nilges, T. Recent progress and developments in lithium cobalt phosphate chemistry- Syntheses, polymorphism and properties (2018) Journal of Power Sources, 382, pp. 101-115., 2018 Линк

Page 61: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

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958. Luo, W., Hayden, J., Jang, S.-H., Wang, Y., Zhang, Y., Kuang, Y., Wang, Y., Zhou, Y., Rubloff, G.W., Lin, C.-F., Hu, L. Highly Conductive, Light Weight, Robust, Corrosion-Resistant, Scalable, All-Fiber Based Current Collectors for Aqueous Acidic Batteries (2018) Advanced Energy Materials, 8 (9), art. no. 1702615, ., 2018 Линк

959. Ketenoglu, D., Spiekermann, G., Harder, M., Oz, E., Koz, C., Yagci, M.C., Yilmaz, E., Yin, Z., Sahle, C.J., Detlefs, B., Yavaş, H. X-ray Raman spectroscopy of lithium-ion battery electrolyte solutions in a flow cell (2018) Journal of Synchrotron Radiation, 25 (2), pp. 537-542., 2018 Линк

960. Yu, X., Manthiram, A. Electrode-electrolyte interfaces in lithium-based batteries (2018) Energy and Environmental Science, 11 (3), pp. 527-543., 2018 Линк

961. Zhan, C., Wu, T., Lu, J., Amine, K. Dissolution, migration, and deposition of transition metal ions in Li-ion batteries exemplified by Mn-based cathodes-A critical review (2018) Energy and Environmental Science, 11 (2), pp. 243-257., 2018 Линк

962. Ulissi, U., Elia, G.A., Jeong, S., Mueller, F., Reiter, J., Tsiouvaras, N., Sun, Y.-K., Scrosati, B., Passerini, S., Hassoun, J. Low-Polarization Lithium–Oxygen Battery Using [DEME][TFSI] Ionic Liquid Electrolyte (2018) ChemSusChem, 11 (1), pp. 229-236., 2018 Линк

963. Zhuo, Z., Lu, P., Delacourt, C., Qiao, R., Xu, K., Pan, F., Harris, S.J., Yang, W. Breathing and oscillating growth of solid-electrolyte-interphase upon electrochemical cycling (2018) Chemical Communications, 54 (7), pp. 814-817., 2018 Линк

964. Song, Y., Li, Y., Zhu, L., Pan, Z., Jiang, Y., Wang, P., Zhou, Y.-N., Fang, F., Hu, L., Sun, D. CuGaS2 nanoplates: A robust and self-healing anode for Li/Na ion batteries in a wide temperature range of 268-318 K (2018) Journal of Materials Chemistry A, 6 (3), pp. 1086-1093., 2018 Линк

965. Hu, Z., Sheng, J., Chen, J., Sheng, G., Li, Y., Fu, X.-Z., Wang, L., Sun, R., Wong, C.-P. Enhanced Li ion conductivity in Ge-doped Li0.33La0.56TiO3 perovskite solid electrolytes for all-solid-state Li-ion batteries (2018) New Journal of Chemistry, 42 (11), pp. 9074-9079., 2018 Линк

966. Mu, L., Rahman, M.M., Zhang, Y., Feng, X., Du, X.-W., Nordlund, D., Lin, F. Surface transformation by a "cocktail" solvent enables stable cathode materials for sodium ion batteries (2018) Journal of Materials Chemistry A, 6 (6), pp. 2758-2766., 2018 Линк

967. Schulz, N., Hausbrand, R., Wittich, C., Dimesso, L., Jaegermann, W. XPS-surface analysis of SEI layers on Li-ion cathodes: Part II. SEI-composition and formation inside composite electrodes (2018) Journal of the Electrochemical Society, 165 (5), pp. A833-A846., 2018 Линк

968. Schulz, N., Hausbrand, R., Dimesso, L., Jaegermann, W. XPS-surface analysis of SEI layers on Li-ion cathodes: Part I. Investigation of initial surface chemistry (2018) Journal of the Electrochemical Society, 165 (5), pp. A819-A832., 2018 Линк

969. Wright, Daniel R., Nuria Garcia-Araez, and John R. Owen. "Review on high temperature secondary Li-ion batteries." Energy Procedia 151 (2018): 174-181., 2018 Линк

970. Lin, W. A. N. G., et al. "Microscopic Investigation of Ethylene Carbonate Interface: A Molecular Dynamics and Vibrational Spectroscopic Study." Acta Physico-Chimica Sinca 34.10 (2018): 1124-1135., 2018 Линк

971. Trequattrini, Francesco, et al. "Hot Pressing of Electrospun PVdF-CTFE Membranes as Separators for Lithium Batteries: a Delicate Balance Between Mechanical Properties and Retention." Materials Research 21 (2018)., 2018 Линк

972. Yu, Yang, et al. "Coupled LiPF6 Decomposition and Carbonate Dehydrogenation Enhanced by Highly Covalent Metal Oxides in High-Energy Li-Ion Batteries." The Journal of Physical Chemistry C (2018), 122 (48), pp. 27368-27382., 2018 Линк

973. Lee, Hyeon Jeong, et al. "Off-Stoichiometry Induced Few-Nanometer Surface Layer for High-Performance Layered Cathode in Nonaqueous and Aqueous Electrolytes." ACS Applied Energy Materials 1.10 (2018): 5726-5734., 2018 Линк

974. Kim, Sangwook, et al. "Multiphysics Coupling in Lithium-Ion Batteries with Reconstructed Porous Microstructures." The Journal of Physical Chemistry C 122.10 (2018): 5280-5290., 2018 Линк

975. Li, Dongjiang. "Aging Mechanisms of Li-ion Batteries.", 2018 Линк

976. Chen, Bin, et al. "Understanding Surface Structural Stabilization of the High-Temperature and High-Voltage Cycling Performance of Al3+ Modified LiMn2O4 Cathode Material." ACS applied materials & interfaces, 2018, 10 (1), pp 550–559 ., 2018 Линк

977. Thompson, Lauren. "CHANGES TO THE ELECTROLYTE IN AGED LI-ION CELLS." (2018)., 2018 Линк

978. Gauthier, Magali, et al. "Probing Surface Chemistry Changes Using LiCoO2-only Electrodes in Li-Ion Batteries." Journal of The Electrochemical Society 165.7 (2018): A1377-A1387., 2018 Линк

979. Jehnichen, Philipp, Klaus Wedlich, and Carsten Korte. "Degradation of high voltage cathodes for advanced lithium ion batteries–differential capacity study on differently balanced cells." Science and Technology of Advanced Materials just-accepted (2018)., 2018 Линк

980. Shapira, Alon, et al. "A Robust AlF3 ALD Protective Coating on LiMn1. 5Ni0. 5O4 Particles-An Advanced Li-ion Battery Cathode Material Powder." ACS Applied Energy Materials (2018)., 2018 Линк

981. Jung Hyeong - Degradation of surface film on LiCoO2 electrode at moderately elevated temperature and its effect on cell properties, and the countermeasures. Diss. jung Seoul National University Graduate School, 2018., 2018 Линк

982. Li, Yu, et al. "Improved high rate capability of Li [Li0. 2Mn0. 534Co0. 133Ni0. 133] O2 cathode material by surface modification with Co3O4." Journal of Alloys and Compounds (2018)., 2018 Линк

983. Wu, Yao. "Non-Invasive Aging Detection Methods of Lithium-Ion Batteries.", 2018 Линк

984. Li, Guohua, et al. "Surface element segregation and electrical conductivity of lithium layered transition-metal oxide cathode materials." Applied Surface Science 427 (2018): 226-232., 2018 Линк

Page 62: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 62/154

985. Liu, S., Su, J., Zhang, C., Chen, X., Zhao, J., Huang, T., Wu, J., Yu, A. Understanding the effects of surface modification on improving the high-voltage performance of Ni-rich cathode materials (2018) Materials Today Energy, 10, pp. 40-47., 2018 Линк

986. Faenza, N.V., Pereira, N., Halat, D.M., Vinckeviciute, J., Bruce, L., Radin, M.D., Mukherjee, P., Badway, F., Halajko, A., Cosandey, F., Grey, C.P., Van Der Ven, A., Amatucci, G.G. Phase Evolution and Degradation Modes of R3 m LixNi1- y- zCoyAlzO2 Electrodes Cycled Near Complete Delithiation (2018) Chemistry of Materials, 30 (21), pp. 7545-7574., 2018 Линк

987. Manohar, C.V., Forsyth, M., MacFarlane, D.R., Mitra, S. Role of N-Propyl-N-Methyl Pyrrolidinium bis(trifluoromethanesulfonyl)imide as an Electrolyte Additive in Sodium Battery Electrochemistry (2018) Energy Technology, 6 (11), pp. 2232-2237., 2018 Линк

988. Li, J., Li, W., You, Y., Manthiram, A. Extending the Service Life of High-Ni Layered Oxides by Tuning the Electrode–Electrolyte Interphase (2018) Advanced Energy Materials, 8 (29), art. no. 1801957, ., 2018 Линк

989. Xiao, B., Sun, X. Surface and Subsurface Reactions of Lithium Transition Metal Oxide Cathode Materials: An Overview of the Fundamental Origins and Remedying Approaches (2018) Advanced Energy Materials, 8 (29), art. no. 1802057, ., 2018 Линк

258. Imaz, I., Pechev, S., Koseva, I., Bouree, F., Gravereau, P., Chaminade, J.-P., Peshev, P.. Structural filiation in the new complex titanates SrLiMTi4O11 (M=Cr, Fe). Acta Crystallographica Section B, 63, 2007, DOI:10.1107/S0108768106041929, 26-36. ISI IF:2.163

Цитира се в:

990. Griffin, William, et al. "Carmeltazite, ZrAl2Ti4O11, a New Mineral Trapped in Corundum from Volcanic Rocks of Mt Carmel, Northern Israel." Minerals 8.12 (2018): 601., 2018 Линк

259. Koleva, V., Effenberger, H.. Crystal chemistry of M[PO2(OH)2]2•2H2O compounds (M = Mg, Mn, Fe, Co, Ni, Zn, Cd). Structural investigation of the Ni-, Zn- and Cd-salts. J. Solid State Chem., 180, Elsevier, 2007, ISSN:0022-4596, 956-967. ISI IF:2.299

Цитира се в:

991. Singh, R. K., Srivastava, M., Prasad, N. K., Shetty, P. H., & Kannan, S. (2018). Hyperthermia effect and antibacterial efficacy of Fe3+/Co2+ co‐substitutions in β‐Ca3 (PO4) 2 for bone cancer and defect therapy. Journal of Biomedical Materials Research Part B: Applied Biomaterials 106 (3), pp. 1317-1328., 2018 Линк

260. Ivanova, E., Mihaylov, M., Thibault-Starzyk, F., Daturi, M., Hadjiivanov, K.. FTIR spectroscopy study of CO and NO adsorption and Co-adsorption on Pt/TiO2. Journal of Molecular Catalysis A: Chemical, 274, 1-2, Elsevier, 2007, DOI:10.4236/mrc.2013.24019, 179-184. ISI IF:3.615

Цитира се в:

992. M. Tasbihi, F. Fresno, U. Simon, I.J. Villar-García, V. Pérez-Dieste, C. Escudero, V.A. de la Peña O’Shea, On the selectivity of CO2 photoreduction towards CH4 using Pt/TiO2 catalysts supported on mesoporous silica, Appl. Catal. B, 239 (2018) 68 [ISI]., 2018 Линк

993. G. Ren, G. Pei, Y. Ren, K. Liu, Z. Chen, J. Yang, Y. Su, X. Liu, W. Li and T. Zhang, Effect of group IB metals on the dehydrogenation of propane to propylene over anti-sintering Pt/MgAl2 O4, J. Catal., 366 (2018) 115 [ISI]., 2018 Линк

994. S. Mosallanejad, B.Z. Dlugogorski, E.M. Kennedy and M. Stockenhuber, On the Chemistry of Iron Oxide Supported on γ-Alumina and Silica Catalysts, ACS Omega, 3 (2018) 5362 [ISI]., 2018 Линк

995. Y.A. Abdu, F.C. Hawthorne and M.E. Varela, Infrared Spectroscopy of Carbonaceous-chondrite Inclusions in the Kapoeta Meteorite: Discovery of Nanodiamonds with New Spectral Features and Astrophysical Implications, Astrophys. J. Lett., 856 (2018) L9 [ISI]., 2018 Линк

996. K. Mori, Y. Kanda ans Y. Uemichi, Dehydrogenation of Methylcyclohexane over Zinc-containing Platinum/Alumina Catalysts, J. Japan Petrol. Inst., 61 (2018) 350 [ISI]., 2018 Линк

997. D. Degler, S. Mueller, D.E. Doronkin, D. Wang, J.-D. Grunwaldt, U. Weimar and N. Barsan, Platinum loaded tin dioxide: A model system for unravelling the interplay between heterogeneous catalysis and gas sensing, J. Mater. Chem. A, 6 (2018) 2034 [ISI]., 2018 Линк

998. J. Zhu, J. Wang, J. Wang, M. Dong and M. Shen, Controlling N2O formation during regeneration of NOx storage and reduction catalysts: from impact of platinum-group metal type to rational utilization, Phys. Chem. Chem. Phys., 19 (2018) 32361 [ISI]., 2018 Линк

261. Chakarova, K., Hadjiivanov, K., Atanasova, G., Tenchev, K.. Effect of preparation technique on the properties of platinum in NaY zeolite: a study by FTIR spectroscopy of adsorbed CO. Journal of Molecular Catalysis A: Chemical, 264, 2007, DOI:10.1016/j.molcata.2006.09.040, 270-279. ISI IF:2.707

Цитира се в:

999. P. Niu, H. Xi, J. Ren, M. Lin, Q. Wang, X. Chen, P. Wang, L. Jia, B. Hou and D. Li, Catal. Sci. Technol., 8 (2018) 6407 [ISI]., 2018

262. Nikolov, P., Khristova, M., Mehandjiev, D.. Low-temperature NO removal over copper-containing activated carbon. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 295, 1-3, Elsevier, 2007, ISSN:09277757, DOI:10.1016/j.colsurfa.2006.09.004, 239-245. ISI IF:1.601

Page 63: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

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Цитира се в:

1000. Gao, F., Tang, X., Yi, H., Zhang, B., Zhao, S., Wang, J., Gu, T., Wang, Y., "NiO-Modified Coconut Shell Based Activated Carbon Pretreated with KOH for the High-Efficiency Adsorption of NO at Ambient Temperature", Ind. Eng. Chem. Res., 57/49 (2018) 16593–16603., 2018 Линк

263. Georgieva, I., Trendafilova, N., Aquino, A.J.A., Lischka, H.. Excited state proton transfer in 7-hydroxy-4-methylcoumarin along a hydrogen-bonded water wire. Journal of Physical Chemistry A, 111, ACS, 2007, ISSN:ISSN 1089-5639, 127-135. ISI IF:2.952

Цитира се в:

1001. Abdel-Mottaleb, M.S.A., Hamed, E., Saif, M., Hafez, H.S., Binding, and thermodynamics of β-cyclodextrin inclusion complexes with some coumarin laser dyes and coumarin-based enzyme substrates: a simulation study (2018) Journal of Inclusion Phenomena and Macrocyclic Chemistry, 92 (3-4), pp. 319-327., 2018 Линк

1002. Antony Muthu Prabhu, A., Fatiha, M., Sivaraman, B., Yáñez-Gascón, M.J., Pérez-Sánchez, H., Effect of natural and modified cyclodextrins on the excited state proton transfer of 7-hydroxy-4-methylcoumarin (2018) Journal of Molecular Liquids, 268, pp. 911-924., 2018 Линк

1003. Beniwal, V., Kumar, A., Pal, H., Dutta Choudhury, S., Excited-state prototropism of 7-hydroxy-4-methylcoumarin in [C: Nmim][BF4] series of ionic liquid-water mixtures: Insights on reverse micelle-like water nanocluster formation (2018) Photochemical and Photobiological Sciences, 17 (9), pp. 1256-1266, 2018 Линк

264. M. Milanova, R. Iordanova, Y.Dimitriev, K. L. Kostov. Glass formation and structure of glasses in the MoO3-CuO-Bi2O3 system. Phys. Chem. Glasses: Eur. J. Glass Sci. Technol. B, 48, Society of Glass Technology, 2007, ISSN:1753-3562, 255-258. ISI IF:0.63

Цитира се в:

1004. Gaikwad, D. K., et al. "Comparative study of gamma ray shielding competence of WO3-TeO2-PbO glass system to different glasses and concretes." Materials Chemistry and Physics 213 (2018): 508-517., 2018

265. Talyosef, Y., Markovsky, B., Lavi, R., Salitra, G., Aurbach, D., Kovacheva, D., Gorova, M., Zhecheva, E., Stoyanova, R.. Comparing the behavior of nano- and microsized particles of LiMn 1.5Ni0.5O4 spinel as cathode materials for li-ion batteries. Journal of the Electrochemical Society, 154, 7, 2007, ISSN:0013-4651, DOI:10.1149/1.2736657, A682-A691. ISI IF:3.266

Цитира се в:

1005. Li, Y., Zhang, Q., Xu, T., Wang, D., Pan, D., Zhao, H., & Bai, Y. LaF 3 nanolayer surface modified spinel LiNi 0.5 Mn 1.5 O 4 cathode material for advanced lithium-ion batteriesр Volume 44, Issue 4, 2018, Pages 4058-4066., 2018 Линк

1006. Armer, Ceilidh F., et al. "Electrospun vanadium-based oxides as electrode materials." Journal of Power Sources 395 (2018): 414-429., 2018 Линк

1007. Luo, Ying, et al. "Octahedral and Porous Spherical Ordered LiNi0. 5Mn1. 5O4 Spinel: the Role of Morphology on Phase Transition Behavior and Electrode/Electrolyte Interfacial Properties." ACS applied materials & interfaces 10.37 (2018): 31795-31803., 2018 Линк

1008. Mou, Jirong, et al. "Excellent rate capability and cycling stability in Li+-conductive Li 2 SnO 3-coated LiNi 0.5 Mn 1.5 O 4 cathode materials for lithium-ion batteries." Dalton Transactions 47.20 (2018): 7020-7028., 2018 Линк

266. Mancheva M, Iordanova R, Kamenova A, Stoyanova A, Dimitriev Y, Kunev B. INFLUENCE OF MECHANICAL TREATMENT ON MORPHOLOGY OF THE MoO3 NANOCRYSTALS. Nanoscience & Nanotechnology, 2007, 74-76

Цитира се в:

1009. Zazhigalov, V. A., et al. "The Ultrasonic Treatment as a Promising Method of Nanosized Oxide CeO 2-MoO 3 Composites Preparation." International Conference on Nanotechnology and Nanomaterials. Springer, Cham, 2018., 2018

267. Amarilla, J.M., Rojas, R.M., Pico, F., Pascual, L., Petrov, K., Kovacheva, D., Lazarraga, M.G., Lejona, I., Rojo, J.M.. Nanosized LiMYMn2-YO4 (M = Cr, Co and Ni) spinels synthesized by a sucrose-aided combustion method. Structural characterization and electrochemical properties. Journal of Power Sources, 174, 2, 2007, ISSN:0378-7753, DOI:10.1016/j.jpowsour.2007.06.056, ISI IF:6.217

Цитира се в:

1010. Windmüller, Anna, et al. "Thermal stability of 5 V LiCoMnO 4 spinels with LiF additive." Solid State Ionics 320 (2018): 378-386., 2018 Линк

268. A. Penkova, S. Dzwigaj, Kefirov, R., Hadjiivanov , K., M. Che. Effect of the preparation method on the state of nickel ions in BEA zeolites. A study by fourier transform infrared spectroscopy of adsorbed CO and NO, temperature-programmed reduction, and X-Ray diffraction. J. Phys. Chem., C, 111, 2007, DOI:DOI: 10.1021/jp071927p, 8623. ISI IF:4.772

Цитира се в:

1011. M.J. Menart, The Role of Acidity in Heterogeneous Nickel Catalysts for the Oligomerization of Light Olefins, Ph. D. Thesis, Colorado School of Mines, USA, 2018 [GS]., 2018

Page 64: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 64/154

1012. D.P. Gamliel, Renewable Fuels Produced from Biomass Pyrolysis Vapors: Catalysis and Reaction Engineering, Ph. D. Thesis, University of Connecticut, Storrs, USA, 2018 [GS]., 2018

1013. I. Miletto, E. Catizzone, G. Bonura, C. Ivaldi, M. Migliori, E. Gianotti, L. Marchese, F. Frusteri and G. Giordano, In situ FT-IR characterization of CuZnZr/ferrierite hybrid catalysts for one-pot CO2 -to-DME conversion, Materials, 11 (2018) 2275 [ISI]., 2018 Линк

1014. S. Moussa, P. Concepción, M.A. Arribas and A. Martinez, Nature of Active Nickel Sites and Initiation Mechanism for Ethylene Oligomerization on Heterogeneous Ni-beta Catalysts, ACS Catal., 8 (2018) 3903 [ISI]., 2018 Линк

1015. R. Joshi, G. Zhang, J. Miller and R. Gounder, Evidence for the Coordination-Insertion Mechanism of Ethene Dimerization at Nickel Cations Exchanged onto Beta Molecular Sieves, ACS Catal , 8 (2018) 11407 [ISI]., 2018 Линк

1016. R. Henry, M. Komurcu, Y. Ganjkhanlou, R.Y. Brogaard, L. Lu, K.-J. Jens, G. Berlier and U. Olsbye, R. Henry, M. Komurcu, Y. Ganjkhanlou, R.Y. Brogaard, L. Lu, K.-J. Jens, G. Berlier and U. Olsbye, Catal. Today, 299 (2018) 154 [ISI]., Catal. Today, 299 (2018) 154 [ISI]., 2018 Линк

1017. D.P. Gamliel, B.P. Baillie, E. Augustine, J. Hall, G.M. Bollas and J.A. Valla, Nickel impregnated mesoporous USY zeolites for hydrodeoxygenation of anisole, Microporous Mesoporous Mater., 261 (2018) 18 [ISI]., 2018 Линк

1018. P. Concepción, Application of Infrared Spectroscopy in Catalysis: Impacts on Catalysts’ Selectivity, in Infrared Spectroscopy - Principles, Advances, and Applications, IntechOpen, 2018, p. 1 [ISI]., 2018 Линк

269. Yovcheva, T., Avramova, I., Mekishev, G., Marinova,Ts.. Corona-charged polypropylene electrets analyzed by XPS. Journal of Electrostatics, 65, 10-11, 2007, ISSN:0304-3886, 667-671. SJR:0.562, ISI IF:1.115

Цитира се в:

1019. Galikhanov, M.F.Improvement of the Electret Properties of Polystyrene with Introduction of Titanium Dioxide (2018) Surface Engineering and Applied Electrochemistry, 54 (1), pp. 111-116., 2018 Линк

270. Hadjiivanov , K., A. Penkova, M.A. Centeno. FTIR Indication of CO Interaction with O2- ions: A New Adsorption Form in the Gap between Chemi- and Physisorbed CO. Catalysis Communications, 8, 11, Elsevier, 2007, DOI:doi:10.1016/j.catcom.2007.02.002, 1715-1718. ISI IF:3.699

Цитира се в:

1020. M.E.Z. Velthoen, A. Muñoz-Murillo, A. Bouhmadi, M. Cecius, S. Diefenbach and B.M. Weckhuysen, The Multifaceted Role of Methylaluminoxane in Metallocene-Based Olefin Polymerization Catalysis, Macromolecules, 51 (2018) 343 [ISI]., 2018 Линк

1021. R. Joshi, G. Zhang, J.T. Miller and R. Gounder, Evidence for the Coordination-Insertion Mechanism of Ethene Dimerization at Nickel Cations Exchanged onto Beta Molecular Sieves, ACS Catal , 8 (2018) 11407 [ISI]., 2018 Линк

271. Georgieva, I., Trendafilova, N.. Bonding Analysеs, Formation Energies, and Vibrational Properties of M-R2dtc Complexes (M = Ag(I), Ni(II), Cu(II), Zn(II)). Journal of Physical Chemsitry A, 111, 50, American Chemical Society, 2007, ISSN:1089-5639, 13075-13087. ISI IF:2.952

Цитира се в:

1022. Mohan, B., Modi, K., Bhatia, P., (...), Jain, V.K., Arora, L.S., An ionic receptor for Zn2+metal ion using synthesised bis-formylpyrazole calix[4]arene and its computational study, 2018, Supramolecular Chemistry, 30(7), pp. 589-599., 2018 Линк

1023. Valle, E.M.A., Maltarollo, V.G., Almeida, M.O., (...), dos Santos, M.C., Cerchiaro, G., Time dependent-density functional theory (TD-DFT) and experimental studies of UV–Visible spectra and cyclic voltammetry for Cu(II) complex with Et2DTC, 2018, Journal of Molecular Structure, 1157, pp. 463-468., 2018 Линк

1024. Festus, C., Ekennia, A.C., Osowole, A.A., Olasunkanmi, L.O., Onwudiwe, D.C., Ujam, O.T., Synthesis, experimental and theoretical characterization, and antimicrobial studies of some Fe(II), Co(II), and Ni(II) complexes of 2-(4, 6-dihydroxypyrimidin-2-ylamino)naphthalene-1, 4-dione (2018) Research on Chemical Intermediates, 44 (10), pp. 5857-5877., 2018 Линк

1025. Ahmed, M.Z., Habib, U., DFT studies of temperature effect on coordination chemistry of Cu(II)-trimethoprim complexes (2018) Journal of Coordination Chemistry, 71 (8), pp. 1102-1113., 2018 Линк

272. Koleva V.. Vibrational behavior of the phosphate ions in dittmarite-type compounds M'M''PO4.H2O (M' = K+, NH4+; M'' = Mn2+, Co2+, Ni2+). Spectrochimica Acta Part A, 66, Elsevier, 2007, ISSN:1386-1425, 413-418. ISI IF:2.353

Цитира се в:

1026. Hou, C.-H., Miao, J.-Y., Wang, R.-Z., Wang, Y., Wang, H.-B. Kinetics of NH4MnPO4•H2O Thermal Decomposition of NH4MnPO4•H2O. (2018) Journal of Chemical Engineering of Chinese Universities, 32 (4), pp. 856-861., 2018 Линк

1027. Viani, A., Mácová, P. Polyamorphism and frustrated crystallization in the acid-base reaction of magnesium potassium phosphate cements (2018) CrystEngComm, 20 (32), pp. 4600-4613., 2018 Линк

1028. El Khalfaouy, R., Elabed, A., Addaou, A., Laajeb, A., & Lahsini, A. Synthesis and Characterization of LiMnPO4 Cathode Material via Dittmarite-Type NH4MnPO4.H2O as an Intermediate Compound. Arabian Journal for Science and Engineering, 1-7, 2018

1029. Priyadharsini, N., Shanmugavani, A., Vasylechko, L., Kalai Selvan, R. Sol-gel synthesis, structural refinement, and electrochemical

Page 65: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 65/154

properties of potassium manganese phosphate for supercapacitors (2018) Ionics, 24 (7), pp. 2073-2082., 2018 Линк

273. Spasova I., Nickolov P., Mehandjiev D.. Ozone decomposition over alumina supported copper, manganese and copper-manganese catalysts. Ozone: Science and Engineering, 29, 1, 2007, 41-45. ISI IF:0.953

Цитира се в:

1030. Gong, S., Wu, X., Zhang, J., Han, N., & Chen, Y. (2018). Facile solution synthesis of Cu 2 O–CuO–Cu (OH) 2 hierarchical nanostructures for effective catalytic ozone decomposition. CrystEngComm, 20(22), 3096-3104., 2018

1031. Ye, Z., Giraudon, J. M., De Geyter, N., Morent, R., & Lamonier, J. F. (2018). The design of MnOx based catalyst in post-plasma catalysis configuration for toluene abatement. Catalysts, 8(2), 91., 2018

1032. Mohamed, E. F., Awad, G., Zaitan, H., Andriantsiferana, C., & Manero, M. H. (2018). Transition metals-incorporated zeolites as environmental catalysts for indoor air ozone decomposition. Environmental technology, 39(7), 878-886., 2018

1033. Zhiping Ye, Plasma-catalytic processes with copper manganese oxide catalysts for the abatement of volatile organic compounds, PhD Thesis, 2018, Ghent University, Belgium, 2018

1034. Tatibouët, J. M., Valange, S., & Touati, H. (2018). Near-ambient temperature ozone decomposition kinetics on manganese oxide-based catalysts. Applied Catalysis A: General. https://doi.org/10.1016/j.apcata.2018.10.026, 2018

1035. Shuyan Gong, Jiayuan Chen, Xiaofeng Wu, Ning Han, Yunfa Chen, In-situ synthesis of Cu2O/reduced graphene oxide composite as effective catalyst for ozone decomposition, Catalysis Communications, 106 (2018) 25-29., 2018 Линк

1036. Longgang Tao, Guofeng Zhao, * Pengjing Chen, Zhiqiang Zhang, Ye Liu and Yong Lu, High-performance Co-MnOx composite oxide catalyst structured onto Al-fiber felt for high-throughput O3 decomposition, ChemCatChem, doi: 10.1002/cctc.201801401, 2018

274. Mihaylov, M., J.C. Fierro-Gonzalez, H. Knözinger, B.C. Gates, Hadjiivanov , K.. Redox Behavior of Gold Species in Zeolite NaY: Characterization by Infrared Spectroscopy of Adsorbed CO. J. Phys. Chem., C, 111, 6, American Chemical Society, 2007, DOI:10.1021/jp066005l, 2548-2556. ISI IF:4.772

Цитира се в:

1037. T. Yoshida, T. Murayama, N. Sakaguchi, M. Okumura, T. Ishida and M. Haruta, Carbon Monoxide Oxidation by Polyoxometalate-Supported Gold Nanoparticulate Catalysts: Activity, Stability, and Temperature- Dependent Activation Properties, Angew. Chem. Int. Ed., 130 (2018) 1523-1527 [ISI]., 2018 Линк

1038. N. Wang, Q. Sun and J. Yu, Ultrasmall Metal Nanoparticles Confined within Crystalline Nanoporous Materials: A Fascinating Class of Nanocatalysts, Adv. Mater. (2018) doi: 10.1002/adma.201803966 [ISI]., 2018 Линк

275. Bozhkov, O., Tzvetkova, Chr., Blagoeva, T.. Plant Biosphere- Natural Extractor and Concentrator of Rhenium from Soils and Waters. Proceedings of the WSEAS International Conference on Waste Management, Water Pollution, Air Pollution, Indoor Climate, Arcachon, France, October 13-15, 2007, 2007, ISBN:978-960-6766-09-1, ISSN:1790-5095, 257-261

Цитира се в:

1039. Honghua He, Zhigang Dong, Jiayin Pang, Gao-Lin Wu, Jiyong Zheng, Xingchang Zhang. “Phytoextraction of rhenium by Lucerne (Medicago Sativa) and erect milkvetch (Astragalus adsurgens) from alkaline soils amended with coal fly ash”. Science of the Total Environment 630, 570–577, 2018, 2018

276. Mihaylov, M., H. Knözinger, Hadjiivanov , K., B.C. Gates. Characterization of the Oxidation States of Supported Gold Species by IR Spectroscopy of CO Probe Molecule. Chemie Ingenieur Technik, 79, 6, WILEY-VCH, 2007, ISSN:1522-2640, DOI:10.1002/cite.200700029, 795-806. ISI IF:0.658

Цитира се в:

1040. S. Najafishirtari, C. Guglieri, S. Marras, A. Scarpellini, R. Brescia, M. Prato, G. Righi, A. Franchini, R. Magri, L. Manna and M. Colombo, Metal-support interaction in catalysis: The influence of the morphology of a nano-oxide domain on catalytic activity, Appl. Catal. B, 237 (2018) 753 [ISI]., 2018 Линк

1041. G. Giannakakis, A. Trimpalis, J. Shan, Z. Qi, S. Cao, J. Liu, J. Ye, J. Biener and M. Flytzani-Stephanopoulos, NiAu Single Atom Alloys for the Non-oxidative Dehydrogenation of Ethanol to Acetaldehyde and Hydrogen, Top. Catal., 61 (2018) 475 [ISI]., 2018 Линк

1042. S. Wei, X.-P. Fu, W.-W. Wang, Z. Jin, Q.-S. Song and C. Jia, Au/TiO2 Catalysts for CO Oxidation: Effect of Gold State to Reactivity, J. Phys. Chem. C, 122 (2018) 4928 [ISI]., 2018 Линк

1043. Yoshida, T., Murayama, T., Sakaguchi, N., Okumura, M., ; Ishida, T., Haruta, M., Carbon Monoxide Oxidation by Polyoxometalate-Supported Gold Nanoparticulate Catalysts: Activity, Stability, and Temperature-Dependent Activation Properties, ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 57 (2018) 1523-1527, DOI: 10.1002/anie.201710424, 2018 Линк

1044. Z. Duan and G. Henkelman, Calculations of CO Oxidation over a Au/TiO2 Catalyst: A Study of Active Sites, Catalyst Deactivation, and Moisture Effects, ACS Catal., 8 (2018) 1376 [ISI]., 2018 Линк

1045. R. Moreira, Setup of a Molecular Beam Apparatus to Study the Reactivity of Single Crystal Surfaces and its Application to CO Oxidation on Au(332), Ph. D. Thesis, Freie Universität Berlin, Berlin, Germany, 2018 [GS]., 2018

1046. D. Li, S. Chen, R. You, Y. Liu, M. Yang, T. Cao, K. Qian, Z. Zhang, J. Tian and W. Huang, Titania-morphology-dependent dual-

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page 66/154

perimeter-sites catalysis by Au/TiO2 catalysts in low-temperature CO oxidation, J. Catal., 368 (2018) 163 [ISI]., 2018 Линк

1047. B. Shao, J. Zhang, J. Huang, B. Qiao, Y. Su, S. Miao, Y. Zhou, D. Li, W. Huang and W. Shen, Size‐Dependency of Gold Nanoparticles on TiO2 for CO Oxidation, Small Methods (2018) 1800273 [ISI]., 2018 Линк

1048. M Silva, R Junnio, Setup of a Molecular Beam Apparatus to study the reactivity of single crystal surfaces and its application to CO oxidation on Au (332), Ph. D. Thesis, Freien Universität Berlin, Berlin, Germany (2018), 2018 Линк

1049. L. Abis, Gold and Gold-Palladium Catalysts Synthesized by a Modified Sol-Immobilisation Method for Thermal and Plasmonic Glycerol Oxidation, Ph. D. Thesis, Cardiff University, Cardiff, UK, 2018 [GS]., 2018

1050. A. Taketoshi, T. Ishida, H. Ohashi, T. Honma and M. Haruta, Preparation of gold clusters on metal oxides by deposition-precipitation with microwave drying and their catalytic performance for CO and sulfide oxidation, Chin. J. Catal., 38 (2018) 1888 [ISI]., 2018 Линк

2008

277. Tzankov, D., Kovacheva, D., Krezhov, K., Puźniak, R., Wiśniewski, A., Sváb, E., Mikhov, M.. Magnetic properties of Bi 0.5 Sr 0.5 Fe x Mn 1− x O 3 (0⩽ x⩽ 0.7). Journal of Applied Physics, 103, 5, 2008, ISSN:0021-8979, DOI:10.1063/1.2888529, 053910-1-053910-7. ISI IF:2.068

Цитира се в:

1051. Krichene, A., et al. "Magnetic phase separation in polycrystalline Pr0. 5–xBixSr0. 5MnO3 (x≤ 0.15)." Ceramics International (2018)., 2018 Линк

278. Boiadjieva, T., Kovacheva, D., Lyutov, L., Monev, M.. Deposition of Zn-Cr alloy coatings from sulfate electrolyte: Effect of polypropylene glycol 620 and glycine and combinations thereof. Journal of Applied Electrochemistry, 38, 10, 2008, ISSN:0021-891X, DOI:10.1007/s10800-008-9586-3, 1435-1443. ISI IF:2.409

Цитира се в:

1052. Osuchowska, E., Z. Buczko, and K. Olkowicz. "Proces elektroosadzania a skład powłok stopowych Zn-Cr." Inżynieria Powierzchni (2018)., 2018 Линк

279. Dimitriev, Y., Ivanova, Y., Iordanova, R.. History of sol-gel science and technology (review). Journal of the University of Chemical Technology and Metallurgy, 43, 2, 2008, ISSN:1314-7978, 181-192. SJR:0.168

Цитира се в:

1053. Garcia-Rios, M., & Gouze, P., Experimental Assessment of the Sealing Potential of Hydrated Solgel for the Remediation of Leaky Reservoirs (2018) Geosciences, 8(8), 290, 2018 Линк

1054. Mahltig, B., Nanosols for smart textiles. , (2018) Chapter in book Smart Textiles: Wearable Nanotechnology, 91-110, 2018 Линк

1055. Sajjadi, S. M., & Haghighi, M. Impregnation vs. sol-gel and sol-gel-plasma dispersion of nickel nanoparticles over Al2O3 employed in combined dry reforming and partial oxidation of greenhouse gases to syngas (2018) International Journal of Hydrogen Energy, 43(32), 15014-15029, 2018 Линк

1056. Figueira, R. B., & Silva, C. J. Application of Sol–Gel Method to Synthesize Organic–Inorganic Hybrid Coatings to Minimize Corrosion in Metallic Substrates (2018) Hybrid Organic‐Inorganic Interfaces: Towards Advanced Functional Materials, 355-412, 2018 Линк

280. Shinova, E., Stoyaova, R., Zhecheva, E., Ortiz, G. F., Lavela, P., Tirado, J. L.. Cationic distribution and electrochemical performance of LiCo1/3Ni1/3Mn1/3O2 electrodes for lithium-ion batteries. Solid State Ionics, 179, 38, 2008, ISSN:0167-2738, 2198-2208. ISI IF:2.561

Цитира се в:

1057. Billy, E., Joulié, M., Laucournet, R., Boulineau, A., De Vito, E., Meyer, D. "Dissolution Mechanisms of LiNi1/3Mn1/3Co1/3O2Positive Electrode Material from Lithium-Ion Batteries in Acid Solution". ACS Applied Materials and Interfaces, 10 (19), pp. 16424-16435, 2018, 2018 Линк

1058. Tian, M., Li, X., Shao, Z., Shen, F. "Influence of Temperature on the Performance of LiNi1/3Co1/3Mn1/3O2 Prepared by High-Temperature Ball-Milling Method". Advances in Materials Science and Engineering, 2018, art. no. 6842694, 2018, 2018 Линк

281. Mihaylov, M., Ivanova, E., Hao, Y., Hadjiivanov, K., Knözinger, H., B.C. Gates. Gold Supported on La2O3: Structure and Reactivity with CO2 and Implications for CO Oxidation Catalysis. J. Phys. Chem., C, 112, 48, American Chemical Society, 2008, DOI:10.1021/jp805212w, 18973. SJR:2.514, ISI IF:4.772

Цитира се в:

1059. D. Stadler, S. Siribbal, I. Gessner, S. Öz, S. Ilyas and S. Mathur, Asymmetric attachment and functionalization of plasmonic nanoparticles on ceramic interfaces, J. Nanostruct. Chem., 8 (2018) 33 [ISI]., 2018 Линк

1060. S.A.C. Carabineiro, L.M.D.R.S. Martins, A.J.L. Pombeiro and J.L. Figueiredo, Commercial Gold(I) and Gold(III) Compounds Supported on Carbon Materials as Greener Catalysts for the Oxidation of Alkanes and Alcohols, ChemCatChem, 10 (2018) 1804

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page 67/154

[ISI]., 2018 Линк

282. Hagendorf, Ch., Sachert, S., Bochmann, B., Kostov, K., Widdra, W.. Growth, atomic structure, and vibrational properties of MnO ultrathin films on Pt(111). Physical Review B, 77, 7, American Physical Society, 2008, ISSN:1098-0121, DOI:10.1103/PhysRevB.77.075406, 075406 (1)-075406 (9). ISI IF:3.736

Цитира се в:

1061. Moller, C., Barreto, J., Stavale, F. and Nilius, N., Manganese Oxide Thin Films on Au (111): Growth Competition between MnO and Mn3O4. The Journal of Physical Chemistry C, Article ASAP, 2018., 2018 Линк

1062. Kundu, A.K., Barman, S. and Menon, K.S., Evolution of surface antiferromagnetic Néel temperature with film coverage in ultrathin MnO films on Ag (001). Journal of Magnetism and Magnetic Materials, 466, pp.186-191, 2018, 2018 Линк

1063. Arble, C.M., Heterogeneous small molecule interactions on surfaces probed with ambient pressure X-ray photoelectron spectroscopy (Doctoral dissertation, University of Delaware), 2018, 2018 Линк

283. Hadjiivanov , K.. Application of Isotopically Labelled IR Probe Molecules for Characterization of Porous Materials. Ordered Porous Solids - Recent Advances and Prospects, Elsevier, 2008, ISBN:978-0-444-53189-6, DOI:10.1016/B978-0-444-53189-6.00010-X, 18

Цитира се в:

1064. N. Bion and M. Richard, Actualite Chimique, 425 (2018) 63 [Scopus]., 2018

284. Kefirov, R., Ivanova, E., Hadjiivanov , K., S. Dzwigaj, M. Che. FTIR Characterization of Fe3+–OH groups in Fe–H–BEA Zeolite: Interaction with CO and NO. Catalysis Letters, 125, Springer US, 2008, DOI:10.1007/s10562-008-9577-3, 209-214. ISI IF:2.307

Цитира се в:

1065. K. Sudarshan, R. Venkateshwaran, P. Kotteeswaran and M. Arumugam, Res. J. Chem. Environ., 22 (2018) 7 [ISI]., 2018

285. Novakovic, T., Radic, N., Grbic, B., Dondur, V., Mitric, M., Randjelovic, D., Stoychev, D., Stefanov, P.. The thermal stability of porous alumina/stainless steel catalyst support obtained by spray pyrolysis. Applied Surface Science, 255, 5, Elsevier, 2008, ISSN:01694332, DOI:10.1016/j.apsusc.2008.08.074, 3049-3055. SJR:0.913, ISI IF:2.711

Цитира се в:

1066. Saini, A., Dhayal, V., Agarwal, D.C. Evaluation of corrosion protective behaviour of alumina film deposited by oxime-modified aluminium(III) alkoxide precursor Surface and Coatings Technology, 335, pp. 241-247, (2018), 2018 Линк

286. Vitanov, P., Stefanov, P., Harizanova, A., Ivanova, T.. XPS characterization of thin (Al2O3) x(TiO2)1-x films deposited on silicon. Journal of Physics: Conference Series, 113, 1, IOPscience, 2008, ISSN:17426588, DOI:10.1088/1742-6596/113/1/012036, a.n.012036. SJR:0.22

Цитира се в:

1067. Valente, J.S., Valle-Orta, M., Armendáriz-Herrera, H., Quintana-Solórzano, R., Del Angel, P., Ramírez-Salgado, J., Montiel-López, J.R. Controlling the redox properties of nickel in NiO/ZrO2catalysts synthesized by sol-gel (2018) Catalysis Science and Technology, 8 (16), pp. 4070-4082., 2018 Линк

1068. Peng, H., Wei, G., Sun, K., Ma, G., Feng, E., Yang, X., Lei, Z. Integrated and heterostructured cobalt manganese sulfide nanoneedle arrays as advanced electrodes for high-performance supercapacitors (2018) New Journal of Chemistry, 42 (22), pp. 18328-18334, 2018 Линк

287. Uzunova-Buznova M., Dimitrov D., Radev D., Bojinova A., Todorovski D.. Effect of the mechanoactivation on the structure, sorption and photocatalytic properties of titanium dioxide. Materials Chemistry and Physics, 110, 2008, ISSN:0254-0584, DOI:10.1016/j.matchemphys.2008.02.005, 291-298. ISI IF:2.259

Цитира се в:

1069. Persson et al. United States Patent METHOD OF APPLYING A PHOTOCATALYTIC DISPERSION. Patent No . : US 9 , 945 , 075 B2 Date of Patent : Apr . 17 , 2018, 2018 Линк

1070. Brummerstedt Iversen et al .United States Patent, PRODUCTION OF TITANIA NANOPARTICLE ( 52 ) COLLOIDAL SUSPENSIONS WITH MAINTAINED CRYSTALLINITY BY USING A BEAD MILL WITH MICROMETER SIZED BEADS Patent No . : US 9 , 963 , 609 B2, Date of Patent : May 8 , 2018, 2018 Линк

1071. Ken-ichi Saitow. Mechano-synthesized orange TiO2 shows significant photocatalysis under visible light, Scientific Reports, volume 8, Article number: 15549 (2018), 2018 Линк

1072. Santhosh Balanand., Aqueous Mechanical Oxidation of Zn Dust: An Inventive Technique for Bulk Production of ZnO Nanorods, Sustainable Chem. Eng. 2018, 6, 1, 143-154, 2018 Линк

288. Drenchev B., Spassov T., Radev D.. Influence of alloying and microstructure on the electrochemical hydriding of TiNi-based ternary alloys. Journal of Applied Electrochemistry, 38, 4, 2008, ISSN:0021-891X, 437-444. ISI IF:2.223

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page 68/154

Цитира се в:

1073. Cuevas F. Electrochemical properties of AB compounds. In: Burzo E. (eds) Hydrogen Storage Materials. Advanced Materials and Technologies, vol 8. Springer, Berlin, Heidelberg, 2018 Линк

1074. Roozbeh Abbasi. Electrochemical and kinetic performance of amorphous/nanostructured TiNi-based intermetallic compound with Nb substitution synthesized by mechanical alloying, J. of Mater. Res., Volume 33, Issue 22 28 November 2018 , pp. 3774-3784, 2018 Линк

289. Grigorova E., Khristov M., Khrussanova M., Peshev P.. Hydrogen sorption characteristics of the composites 90 wt.% Mg (MgH2)–10 wt.% V0.855Ti0.095Fe0.05. Journal of Materials Science, 43, Springer Netherlands, 2008, ISSN:0022-2461, DOI:10.1007/s10853-008-2779-7, 5336-5341. SJR:0.93, ISI IF:2.371

Цитира се в:

1075. V. Paul-Boncour .Hydrogen Storage Materials pp 24-38 "Thermodynamic and kinetic properties of Mg-based compounds" 1. Chapter Part of the Advanced Materials and Technologies book series (volume 8) Springer 2018, 2018 Линк

1076. Wang, Z., Ren, Z., Jian, N., Gao, M., Hu, J., Du, F., Pan, H., Liu, Y. "Vanadium oxide nanoparticles supported on cubic carbon nanoboxes as highly active catalyst precursors for hydrogen storage in MgH2" Journal of Materials Chemistry A, Vol. 6, Pages 16177-16185, 2018., 2018 Линк

290. Vassileva P., Tzvetkova P., Lakov L., Peshev P.. Thiouracil modified acticvated carbon as a sorbent for some precious and heavy metal ions. J. Porous. Mater, 15, 2008, 593-599. ISI IF:0.96

Цитира се в:

1077. Sharma, H.K., Sofi, I.R., Wani, K.A., Low cost absorbents, techniques, and heavy metal removal efficiency, (2018) Biostimulation Remediation Technologies for Groundwater Contaminants, pp. 50-79., 2018

291. Gentscheva G., Vassileva P., Tzvetkova P., Lakov L., Peshev O., Ivanova E.. Activated carbon sorbent with thioetheric sites – preparation and characterization. J. Porous. Mater., 15, 2008, 331-334. ISI IF:0.96

Цитира се в:

1078. Quelen Letícia Shimabuku, Tânia Ueda-Nakamura, Rosangela Bergamasco, Márcia Regina Fagundes-Klen (2018) Chick-Watson kinetics of virus inactivation with granular activated carbon modified with silver nanoparticles and/or copper oxide, Process Safety and Environmental Protection, 117, 33-42., 2018 Линк

292. Spassova I., Khristova M., Nickolov R., Mehandjiev D.. Novel application of depleted fullerene soot (DFS) as support of catalysts for low-temperature reduction of NO with CO. Journal of Colloid and Interface Science, 320, 1, Elsevier, 2008, 186-193. ISI IF:3.453

Цитира се в:

1079. Zhang, L., Yao, X., Lu, Y., Sun, C., Tang, C., Gao, F., & Dong, L. (2018). Effect of precursors on the structure and activity of CuO-CoOx/γ-Al2O3 catalysts for NO reduction by CO. Journal of colloid and interface science, 509, 334-345., 2018 Линк

1080. Wang Li, Theoretical Study on the Structures and Nonlinear Optical Properties of Functional Modification Derivatives of Fullerene, Northeast Normal University, Physical Chemistry, 2018, PhD, 2018

293. Kefirov, R., A. Penkova, Hadjiivanov , K., S. Dzwigaj, M. Che. Stabilization of Cu+ Ions in BEA Zeolite: Study by FTIR Spectroscopy of Adsorbed CO and TPR. Microporous and Mesoporous Materials, 116, 1-3, Elsevier, 2008, DOI:doi:10.1016/j.micromeso.2008.03.032, 180-187. ISI IF:3.453

Цитира се в:

1081. J. Chen, R. Zhao and R. Zhou, Chin. J. Inorg. Chem., 34 (2018) 2135 [ISI]., 2018

1082. R. Armstrong, V. Peneau, N. Ritterskamp, C. Kiely, S. Taylor and G.J. Hutchings, The role of copper speciation in the low temperature oxidative upgrading of short chain alkanes over Cu/ZSM‐5 catalysts, ChemPhysChem, 19 (2018) 469 [ISI]. doi:10.1002/cphc.201701046, 2018 Линк

1083. S. Ming, Z. Chen, C. Fan, L. Pang, W. Guo, K.B. Albert, P. Liu and T. Li, The effect of copper loading and silicon content on catalytic activity and hydrothermal stability of Cu-SAPO-18 catalyst for NH3 -SCR, Appl. Catal. A, 559 (2018) 47 [ISI]., 2018 Линк

1084. H. Wang, R. Xu, N. Liu and R. Zhang, Zeolite structure effects on Cu active center, SCR performance and stability of Cu-zeolite catalysts, Catal. Today, (2018) doi: 10.1016/j.cattod.2018.04.035 [ISI]., 2018

1085. J. Woo, K. Leistner, D. Bernin, H. Ahari, M. Shost, M. Zammit and L. Olsson, Effect of various structure directing agents (SDAs) on low-temperature deactivation of Cu/SAPO-34 during NH3 -SCR reaction, Catal. Sci. Technol., 8 (2018) 3090 [ISI]., 2018 Линк

1086. F. Xia, J. Zhang, Y. Yang, C. Yang, X. Li, Z. Song, Q. Zhang And J. Peng, Catalytic performance and hydrothermal stability of Cu/SAPO-34 catalyst in the selective catalytic oxidation of NH3 | [Cu/SAPO-34催化剂的NH3 -SCO活性及抗水热性能研究], J. Fuel Chem.

Technol., 46 (2018) 328 [ISI]., 2018 Линк

1087. J. Chen, R. Zhao and R. Zhou, A New Insight into Active Cu2+ Species Properties in One‐Pot Synthesized Cu‐SSZ‐13 Catalysts for NOx Reduction by NH3, ChemCatChem, 10 (2018) 5182 [ISI]., 2018

Page 69: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 69/154

294. Panayotov, D., Morris, J.R.. Catalytic Degradation of a Chemical Warfare Agent Simulant: Reaction Mechanisms on TiO2-Supported Au Nanoparticles. Journal of Physical Chemistry C, 112, American Chemical Society, 2008, ISSN:1932-7447, DOI:10.1021/jp7118668, 7496-7502. ISI IF:4.772

Цитира се в:

1088. Gibson, K. D.; Sibener, S. J., "Fate of Some Chemical Warfare Simulants Adsorbed on an Inert Surface when Exposed to Rapid Laser Initiated Heating". The Journal of Physical Chemistry C 2018, 122 (43), 24684-24689, 2018 Линк

1089. Boateng, A. D.; Gutsev, G. L.; Jena, P.; Tibbetts, K. M., "Ultrafast coherent vibrational dynamics in dimethyl methylphosphonate radical cation". PCCP 2018, 20, 4636-4640. DOI: 10.1039/C7CP07261A, 2018 Линк

1090. Bagul, S. D.; Patil, D. G.; Patil, L. A., "Room Temperature DMMP Sensor Based on Nanocrystalline TiO2 Thin Films Prepared by Pyrolysis of Fine Mist Generated from Ultrasonic Atomizer". Sensor Letters 2018, 16 (6), 436-444; DOI: 10.1166/sl.2018.3960, 2018 Линк

1091. Thompson, R. S.; Langlois, G. G.; Sibener, S. J., "Oxidative Destruction of Multilayer Diisopropyl Methylphosphonate Films by O(3P) Atomic Oxygen". J. Phys. Chem. B 2018, 122 (2), pp 455–463., 2018 Линк

1092. Le, N. Q.; Ekuma, C. E.; Dunlap, B. I.; Gunlycke, D., "First-Principles Calculations of Sarin Adsorption on Anatase Surfaces". The Journal of Physical Chemistry C 2018, 122 (5), 2832-2839; DOI: 10.1021/acs.jpcc.7b11509, 2018 Линк

295. Naydenov, A., Konova, P., Nikolov, P., Kligstedt, F., Kumar, N., Kovacheva, D., Stefanov, P., Stoyanova, R., Mehandjiev, D.. Decomposition of ozone on Ag/SiO2 catalyst for abatement of waste gases emissions. Catalysis Today, 137, 2-4, Elsevier, 2008, DOI:10.1016/j.cattod.2007.11.020, 471-474. SJR:1.692, ISI IF:3.893

Цитира се в:

1093. Li, Xiaotong, et al. "Facile synthesis of Ag-modified manganese oxide for effective catalytic ozone decomposition." Journal of Environmental Sciences (2018)., 2018

1094. Li, Xiaotong, et al. "Oxygen vacancies induced by transition metal doping in γ-MnO2 for highly efficient ozone decomposition." Environmental science & technology (2018)., 2018 Линк

1095. Xu, T., Zheng, H., Zhang, P. Performance of an innovative VUV-PCO purifier with nanoporous TiO2 film for simultaneous elimination of VOCs and by-product ozone in indoor air (2018) Building and Environment, 142, pp. 379-387., 2018 Линк

1096. Liu, Y., Yang, W., Zhang, P., Zhang, J. Nitric acid-treated birnessite-type MnO2: An efficient and hydrophobic material for humid ozone decomposition (2018) Applied Surface Science, 442, pp. 640-649., 2018 Линк

1097. He, X.-L., Sun, Q., Li, Y.-Y., Zou, K.-J., Han, X. Catalyst adaptation of ozone catalytic oxidation for wastewater treatment (2018) Journal of Tianjin Polytechnic University, 37 (1), pp. 32-37 and 42., 2018 Линк

1098. Wang, H., Rassu, P., Wang, X., Li, H., Wang, X., Wang, X., Feng, X., Yin, A., Li, P., Jin, X., Chen, S.-L., Ma, X., Wang, B. An Iron-Containing Metal–Organic Framework as a Highly Efficient Catalyst for Ozone Decomposition (2018) Angewandte Chemie - International Edition, 57(50) 16416-16420., 2018 Линк

296. F. Romero-Sarria, A. Penkova, L.M. Martinez, M.A. Centeno, Hadjiivanov , K., J.A. Odriozola. Role of Water in the CO Oxidation Reaction on Au/CeO2: Modification of the Surface Properties. Applied Catalysis B: Environmental, 84, 1-2, Elsevier, 2008, DOI:doi:10.1016/j.apcatb.2008.03.010, 119-124. ISI IF:7.435

Цитира се в:

1099. S.S. Parab, Propene Partial Oxidation and Luminescence Studies on Selected Transition Metal Oxides, Ph. D. Thesis, Goa University, Taleigai, India, 2018 [GS]., 2018

1100. Z. Li, W. Li, H. Abroshan, Q. Ge, G. Li and R. Jin, Dual effects of water vapor on ceria-supported gold clusters, Nanoscale, 10 (2018) 6558 [ISI]., 2018 Линк

297. Dimitriev Y., Bachvarova-Nedelcheva A., Iordanova R.. Glass formation tendency in the system SeO2-B2O3-Ag2O. Mater. Res. Bull., 43, 2008, ISSN:0025-5408, 1905-1910. SJR:0.842, ISI IF:2.435

Цитира се в:

1101. Palui А., Ghosh А., Structure and dielectric properties of Ag2O-SeO2-TeO2 mixed former glasses, J. Non-Cryst. Sol., 482 (2018) pp. 230–235, 2018 Линк

1102. Abdel-Wahab F.A., Fayad A.M., Abdel-Baki M., Abdel Maksoud H., Role of non-bridging oxygen defect in the ionic conductivity and associated oxygen trap centers in lead-borate oxide glass: Effect of structural substitution of PbO for Ag2O and Li2O modifiers, J. Non-Cryst. Sol., 500 (2018) pp. 84-91., 2018 Линк

1103. Chen Q., Su K., Li Y., Zhao Zh., Structure, spectra and thermal, mechanical, Faraday rotation properties of novel diamagnetic SeO2-PbO-Bi2O3-B2O3 glasses, Opt. Mater., 80 (2018) pp. 216–224., 2018 Линк

298. Stoilova, D., Wildner, M., Marinova, D., Georgiev, M.. Vibrational behavior of SO42- ions included in K2Zn(CrO4)2.2H2O and crystal structure of K2Zn(CrO4)2.2H2O: a new structure type containing kröhnkite-type chains. Journal of Molecular Structure, 892, Elsevier, 2008, ISSN:0022-2860, DOI:doi:10.1016/j.molstruc.2008.05.036, 239-245. SJR:0.405, ISI IF:1.602

Page 70: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 70/154

Цитира се в:

1104. Hemissi, H., Fezai, R., Mezni, A., Besbes-Hentati, S., Rzaigui, M., "First copper(II)-cyclophosphato complex with macrocyclic N-donor ligand: Single crystal structure elucidation with Hirshfeld surface analysis, optical, electrochemical and antioxidant properties" (2018) Journal of Solid State Chemistry, 263, pp. 1-10., 2018

299. Nikolova, V., Iliev, P., Petrov, K., Vitanov, T., Zhecheva, E., Stoyanova, R., Valov, I., Stoychev, D.. Electrocatalysts for bifunctional oxygen/air electrodes. Journal of Power Sources, 185, 2, Elsevier, 2008, ISSN:0378-7753, 727-733. ISI IF:6.217

Цитира се в:

1105. Ye, F., Xu, C., Liu, G., Li, J., Wang, X., Du, X., & Lee, J. K. (2018). A novel PtRuIr nanoclusters synthesized by selectively electrodepositing Ir on PtRu as highly active bifunctional electrocatalysts for oxygen evolution and reduction. Energy Conversion and Management, 155, 182-187., 2018 Линк

1106. Diao, J.-X., Qiu, Y., Guo, X.-H. "Synthesis of Mesoporous Co3S4 Nanorods and Their Application as Electrocatalysts for Efficient Oxygen Evolution" Rengong Jingti Xuebao/Journal of Synthetic Crystals, 47 (2), pp. 370-373 and 381, 2018, 2018 Линк

1107. Li, M., Cheng, J., Gan, Y., & Xu, C. In situ construction of Co 3 O 4 nanoarray catalysts on (La 0.8 Sr 0.2) 0.95 MnO 3–δ cathode for high-efficiency intermediate-temperature solid oxide fuel cells. Ceramics International, Volume 44, Issue 3, 15 February 2018, Pages 3472-3479., 2018 Линк

1108. Xiong, M.; Ivey, D.G. "Synthesis of Bifunctional Catalysts for Metal‐Air Batteries Through Direct Deposition Methods". Batteries&Supercaps (2018) p 1-11, 2018 Линк

1109. Tangbunsuk, S., Meeying, S., Viravathana, P., Wongchaisuwat, A. "The Effect of Metal Ratios in Graphene-Supported PdCoNi Anodic Electrocatalysts on Catalytic Property for Enhanced Methanol Electrooxidation". Catalysis Letters, 148 (11), pp. 3292-3308, 2018, 2018 Линк

1110. Wang, Y.-J., Fang, B., Wang, X., Ignaszak, A., Liu, Y., Li, A., Zhang, L., Zhang, J. "Recent advancements in the development of bifunctional electrocatalysts for oxygen electrodes in unitized regenerative fuel cells (URFCs)". Progress in Materials Science, 98, pp. 108-167, 2018, 2018 Линк

1111. Park, S., Nam, G., Lee, J.-S., Cho, J., Jung, J.-I. "Influence of Surface Charges/Chemistry on the Catalysis of Perovskite Complexes". ACS Applied Materials and Interfaces, 10 (34), pp. 28502-28508, 2018, 2018 Линк

1112. Muthurasu, A., Sheen Mers, S.V., Ganesh, V. "itrogen doped graphene quantum dots (N-GQDs)/Co3O4composite material as an efficient bi-functional electrocatalyst for oxygen evolution and oxygen reduction reactions". International Journal of Hydrogen Energy, 43 (9), pp. 4726-4737, 2018, 2018 Линк

1113. Kumar, K., Loupias, L., Canaff, C., Morisset, S., Pronier, S., Morais, C., Habrioux, A., Napporn, T.W., Kokoh, K.B. "Preparation and Electrochemical Properties of NiCo2O4 Nanospinels Supported on Graphene Derivatives as Earth-Abundant Oxygen Bifunctional Catalysts". ChemPhysChem, 19 (3), pp. 319-326, 2018, 2018 Линк

1114. Fang, Y., Wang, Y., Wang, F., Shu, C., Zhu, J., Wu, W. "Fe-Mn bimetallic oxides-catalyzed oxygen reduction reaction in alkaline direct methanol fuel cells". RSC Advances, 8 (16), pp. 8678-8687, 2018, 2018 Линк

300. Uzunova E, Mikosch H, Nikolov G. Electronic structure of oxide, peroxide, and superoxide clusters of the 3d elements: A comparative density functional study. J. Chem. Phys., 128, AIP, 2008, DOI:http://dx.doi.org/10.1063/1.2831583, 094307. ISI IF:3.017

Цитира се в:

1115. Xiong, X., Hua, X., Zheng, Y., Lu, X., Li, S., Cheng, H., Xu, Q. Oxidation mechanism of chalcopyrite revealed by X-ray photoelectron spectroscopy and first principles studies (2018) Applied Surface Science, 427, pp. 233-241, 2018

1116. Chou, Y.-C. The low-lying triplet electronic excited states of TiO2 and ZrO2: A symmetry adapted cluster–configuration interaction (SAC-CI) study (2018) Computational and Theoretical Chemistry, 1143, pp. 20-28., 2018 Линк

301. Stoilova, D., Wildner, M., Marinova, D., Georgiev, M.. Infrared spectroscopic study of SO42- ions included in K2Me(CrO4)2.2H2O (Me = Mg, Cd) and crystal structure of K2Cd(CrO4)2.2H2O. Journal of molecular structure, 889, Elsevier, 2008, ISSN:0022-2860, 12-19. SJR:0.463, ISI IF:1.78

Цитира се в:

1117. Ayadi R, Lhoste J, Dammak T, Ledoux-Rak I, Mhiri T, Boujelbene M. "Crystal structure, thermal behaviour, vibrational spectroscopy and optical properties of new compounds K2Ca(HAsO4)2·2H2O with kröhnkite-type chain" (2018) Bulletin of Materials Science, 41(3), pp.78., 2018

302. Stefanov, P., Shipochka, M., Stefchev, P., Raicheva, Z., Lazarova, V., Spassov, L.. XPS characterization of TiO2 layers deposited on quartz plates. Journal of Physics: Conference Series, 100, 2008, ISSN:1742-6588, 012039. SJR:0.229

Цитира се в:

1118. Dwivedi, P., Arya, D.S., Dhanekar, S., Das, S., Development of scalable planar MEMS technology for low power operated ethanol sensor, Journal of Micromechanics and Microengineering 28(10), 105020, 2018, 2018 Линк

1119. Folli, A., Bloh, J.Z., Armstrong, K., (...), McLaughlin, A.C., Macphee, D.E., Improving the Selectivity of Photocatalytic NOx Abatement through Improved O2 Reduction Pathways Using Ti0.909 W0.091 O2 Nx Semiconductor Nanoparticles: From Characterization to

Page 71: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 71/154

Photocatalytic Performance, ACS Catalysis 8(8), pp. 6927-6938, 2018, 2018 Линк

1120. Wang, F.X., Ye, C., Mo, S., (...), Luo, H.Q., Li, N.B., A novel "signal-on" photoelectrochemical sensor for ultrasensitive detection of alkaline phosphatase activity based on a TiO2 /g-C3 N4 heterojunction , Analyst 143(14), pp. 3399-3407, 2018, 2018 Линк

1121. Zhang, Y., Liu, Y., Han, G., Liu, H., Hao, Y., Improving metal/n-Ge ohmic contact by inserting TiO2 deposited by PEALD, Micro and Nano Letters 13(6), pp. 801-803, 2018, 2018 Линк

2009

303. Mihaylova, A., Naydenov, A., Kovacheva, D., Ivanova, E., Stoyanova, D., Stefanov, P.. Silver-based storage catalyst for neutralization of nitrogen oxides. Catalysis Communications, 10, 9, 2009, DOI:10.1016/j.catcom.2009.02.009, 1288-1291. ISI IF:3.699

Цитира се в:

1122. Nguyen, D.B., Heo, I.J., Mok, Y.S. Enhanced performance at an early state of hydrocarbon selective catalyst reduction of NOx by atmospheric pressure plasma (2018) Journal of Industrial and Engineering Chemistry, 68, pp. 372-379., 2018 Линк

304. Bulánek, R., Voleská, I, Ivanova, E., Hadjiivanov, K., Nachtigall, P.. Localization and Coordination of Mg2+ Cations in Ferrierite: Combined FTIR Spectroscopic and Computation Investigation of CO Adsorption Complexes. J. Phys. Chem., C, 113, 2009, DOI:10.1021/jp901575p, 11066. ISI IF:4.772

Цитира се в:

1123. J. Vitillo, T. Fjermestad, M. D’Amore, M. Milanesio, L. Palin, G. Ricchiardi and S. Bordiga, Phys. Chem. Chem. Phys., 20 (2018) 18503 [ISI]., 2018

1124. S. Morpurgo, J. Catal., 366 (2018) 189 [ISI]., 2018

305. Penkova, A., Chakarova, K., Laguna, O. H., Hadjiivanov, K., Romero Saria, F., Centeno, M. A., Odriozola, J. A.. Redox chemistry of gold in a Au/FeOx/CeO2 CO oxidation catalyst. Catalysis Communications, 10, 2009, DOI:10.1016/j.catcom.2009.01.014, 1196-1202. ISI IF:3

Цитира се в:

1125. E. Kolobova, E. Pakrieva, L. Pascual, V. Cortés Corberán, N. Bogdanchikova, M. Farias and A. Pestryakov, Catal. Today, (2018) doi: 10.1016/j.cattod.2018.04.046 [ISI]., 2018

1126. Y. Wu, L. Dong, B. Li, "Effect of iron on physicochemical properties: Enhanced catalytic performance for novel Fe2O3 modified CuO/Ti0.5Sn0.5O2 in low temperature CO oxidation", Mol. Catal., 456 (2018) 65-74., 2018 Линк

306. Martha, S.K., Markevich, E., Burgel, V., Salitra, G., Zinigrad, E., Markovsky, B., Sclar, H., Pramovich, Z., Heik, O., Aurbach, D., Exnar, I., Buqa, H., Drezen, T., Semrau, G., Schmidt, M., Kovacheva, D., Saliyski, N.. A short review on surface chemical aspects of Li batteries: A key for a good performance. Journal of Power Sources, 189, 1, 2009, ISSN:0378-7753, DOI:10.1016/j.jpowsour.2008.09.084, 288-296. ISI IF:6.217

Цитира се в:

1127. Wang, C., Yu, L., Fan, W., Liu, R., Liu, J., Ouyang, L., Yang, L., Zhu, M. Enhanced high-voltage cyclability of LiNi0.5Co0.2Mn0.3O2-based pouch cells via lithium difluorophosphate introducing as electrolyte additive (2018) Journal of Alloys and Compounds, 755, pp. 1-9., 2018 Линк

1128. Basile, A., Hilder, M., Makhlooghiazad, F., Pozo-Gonzalo, C., MacFarlane, D.R., Howlett, P.C., Forsyth, M. Ionic Liquids and Organic Ionic Plastic Crystals: Advanced Electrolytes for Safer High Performance Sodium Energy Storage Technologies (2018) Advanced Energy Materials, 8 (17), art. no. 1703491, ., 2018 Линк

1129. Aravindan, V., Lee, Y.-S. Electrochemical Activity of Hematite Phase in Full-Cell Li-ion Assemblies (2018) Advanced Energy Materials, 8 (11), art. no. 1702841, ., 2018 Линк

1130. Apostolova, R.D., Peskov, R.P. Increasing the efficiency of thin-layer Co-doped LiMn2O4-carbon nanotubes electrodes for the use in Li-Ion batteries (2018) Voprosy Khimii i Khimicheskoi Tekhnologii, (2), pp. 60-69., 2018 Линк

1131. Vicente, N., Haro, M., Garcia-Belmonte, G. New approaches to the lithiation kinetics in reaction-limited battery electrodes through electrochemical impedance spectroscopy (2018) Chemical Communications, 54 (9), pp. 1025-1040., 2018 Линк

1132. Wang, Chengyun, et al. "Lithium Difluorophosphate as a Promising Electrolyte Lithium Additive for High-Voltage Lithium-Ion Batteries." ACS Applied Energy Materials 1.6 (2018): 2647-2656., 2018 Линк

1133. Wang, Xingyu, et al. "Adiponitrile as Lithium-Ion Battery Electrolyte Additive: A Positive and Peculiar Effect on High-Voltage Systems." ACS Applied Energy Materials 1.10 (2018): 5347-5354., 2018 Линк

1134. Cao, Guozhong, and L. I. Yanwei. "Polycrystalline vanadium oxide nanosheets." U.S. Patent No. 9, 997, 778. 12 Jun. 2018., 2018 Линк

307. Hao, Y., Mihaylov, M., Ivanova, E., Hadjiivanov, K., Knözinger, H., Gates, B.C.. CO Oxidation Catalyzed by Gold Supported on MgO: Spectroscopic Identification of Carbonate-like Species Bonded to Gold during Catalyst Deactivation. Journal of Catalysis, 261, 2, 2009, DOI:doi:10.1016/j.jcat.2008.11.005, 137-149. ISI IF:6.921

Page 72: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 72/154

Цитира се в:

1135. C. D’Agostino, R.D. Armstrong, G.J. Hutchings and L.F. Gladden, Product Inhibition in Glycerol Oxidation over Au/TiO2 Catalysts Quantified by NMR Relaxation, ACS Catal., 8 (2018) 7334 [ISI]., 2018 Линк

1136. F.J. Burpo, E.A. Nagelli, L.A. Morris, K. Woronowicz and A.N. Mitropoulos, Salt-Mediated Au-Cu Nanofoam and Au-Cu-Pd Porous Macrobeam Synthesis, Molecules, 23 (2018) 1701 [ISI]., 2018 Линк

308. Martha, S.K., Sclar, H., Szmuk Framowitz, Z., Kovacheva, D., Saliyski, N., Gofer, Y., Sharon, P., Golik, E., Markovsky, B., Aurbach, D.. A comparative study of electrodes comprising nanometric and submicron particles of LiNi0.50Mn0.50O2, LiNi0.33Mn0.33Co0.33O2, and LiNi0.40Mn0.40Co0.20O2 layered compounds. Journal of Power Sources, 189, 1, 2009, ISSN:0378-7753, DOI:10.1016/j.jpowsour.2008.09.090, 248-255. ISI IF:6.217

Цитира се в:

1137. Susai, F.A., Sclar, H., Shilina, Y., Penki, T.R., Raman, R., Maddukuri, S., Maiti, S., Halalay, I.C., Luski, S., Markovsky, B., Aurbach, D. Horizons for Li-Ion Batteries Relevant to Electro-Mobility: High-Specific-Energy Cathodes and Chemically Active Separators (2018) Advanced Materials, 30 (41), art. no. 1801348, ., 2018 Линк

1138. Peralta, D., Salomon, J., Colin, J.-F., Boulineau, A., Fabre, F., Bourbon, C., Amestoy, B., Gutel, E., Bloch, D., Patoux, S. Submicronic LiNi1/3Mn1/3Co1/3O2 synthesized by co-precipitation for lithium ion batteries - Tailoring a classic process for enhanced energy and power density (2018) Journal of Power Sources, 396, pp. 527-532., 2018 Линк

1139. Wang, L.-P., Zhang, X.-D., Wang, T.-S., Yin, Y.-X., Shi, J.-L., Wang, C.-R., Guo, Y.-G. Ameliorating the Interfacial Problems of Cathode and Solid-State Electrolytes by Interface Modification of Functional Polymers (2018) Advanced Energy Materials, 8 (24), art. no. 1801528, ., 2018 Линк

1140. Steiner, J.D., Mu, L., Walsh, J., Rahman, M.M., Zydlewski, B., Michel, F.M., Xin, H.L., Nordlund, D., Lin, F. Accelerated Evolution of Surface Chemistry Determined by Temperature and Cycling History in Nickel-Rich Layered Cathode Materials (2018) ACS Applied Materials and Interfaces, 10 (28), pp. 23842-23850., 2018 Линк

1141. CHEN, Q.-C., YAN, G.-J., LUO, L.-M., CHEN, F., XIE, T.-F., DAI, S.-C., YUAN, M.-L. Enhanced cycling stability of Mg–F co-modified LiNi0.6Co0.2Mn0.2–yMgyO2–zFz for lithium-ion batteries (2018) Transactions of Nonferrous Metals Society of China (English Edition), 28 (7), pp. 1397-1403., 2018 Линк

1142. Kim, T., Leyden, M.R., Ono, L.K., Qi, Y. Stacked-graphene layers as engineered solid-electrolyte interphase (SEI) grown by chemical vapour deposition for lithium-ion batteries (2018) Carbon, 132, pp. 678-690., 2018 Линк

1143. Qi, Z., Jian, J., Huang, J., Tang, J., Wang, H., Pol, V.G., Wang, H. LiNi0.5Mn0.3Co0.2O2/Au nanocomposite thin film cathode with enhanced electrochemical properties (2018) Nano Energy, 46, pp. 290-296., 2018 Линк

1144. Zhou, S., Wang, G., Tang, W., Xiao, Y., Yan, K. Enhanced rate performance and high potential as well as decreased strain of LiNi0.6Co0.2Mn0.2O2 by facile fluorine modification (2018) Electrochimica Acta, 261, pp. 565-577., 2018 Линк

1145. Xu, Z.-Z., Gu, Y.-J., Liu, H.-Q., Chen, Y.-B., Lin, M.-C. Lithium-ion migration in layered Li1.06Ni0.5Co0.2Mn0.3O2 cathode materials synthesized at different temperatures (2018) International Journal of Electrochemical Science, 13 (1), pp. 936-950., 2018 Линк

1146. Cao, Guozhong, and L. I. Yanwei. "Polycrystalline vanadium oxide nanosheets." U.S. Patent No. 9, 997, 778. 12 Jun. 2018., 2018 Линк

1147. Zhang, Yong Tao, and Xiao Li Hu. "On the Latest Development of some Typical Cathode Materials for Lithium Ion Battery." Key Engineering Materials. Vol. 783. Trans Tech Publications, 2018., 2018 Линк

1148. Wu, Yao. "Non-Invasive Aging Detection Methods of Lithium-Ion Batteries.", 2018 Линк

1149. Liu, L., Li, J., Xiao, Y., Sun, W., Yue, B. Structure and electrochemical performance of LiNi0.6Co0.1Mn0.2Fe0.1O2 tetrad cathode material for Li-battery (2018) Journal of Materials Science: Materials in Electronics, 29 (24), pp. 21213-21222., 2018 Линк

309. Detcheva, A., Barth, P., Hassler, J.. Calibration Possibilities and Modifier Use in ETV ICP OES Determination of Trace and Minor Elements in Plant Materials. Analytical and Bioanalytical Chemistry, 2009, DOI:DOI 10.1007/s00216-009-2835-4, 1485-1495. ISI IF:3.48

Цитира се в:

1150. Mirjam Schmidt et al. „Chemische Strukturaufklaerung“ Chapter in book: „Stoffliche Nutzung von Braunkohle“, pp. 75-114 DOI: 10.1007/978-3-662-46251-5_9 Springer Verlag GmbH Deutschland, January 2018, 2018

310. Marinova, D., Georgiev, M., Stoilova, D.. Vibrational behavior of matrix-isolated ions in Tutton compounds. I. Infrared spectroscopic study of NH4+ and SO42- ions included in magnesium sulfates and selenates. Journal of Molecular Structure, 929, Elsevier, 2009, ISSN:0022-2860, DOI:doi:10.1016/j.molstruc.2009.04.004, 67-72. SJR:0.405, ISI IF:1.602

Цитира се в:

1151. Stella Rani, C., Daniel Sweetlin, M., Selvarajan, P., "Studies of L-methionine doped Ammonium Ferrous Sulfate single crystals grown by solution method" (2018) International Journal of Research and Analytical Reviews, 5 (3), pp. 615y-622y, 2018

311. Tzvetkov, P., Ivanova, D., Kovacheva, D., Nikolov, V.. Synthesis and powder XRD characterization of Al2-xInx(WO4)3 solid solutions. Journal of Alloys and Compounds, 470, 1-2, 2009, ISSN:09258388, DOI:10.1016/j.jallcom.2008.03.004, 492-496. ISI IF:2.999

Page 73: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 73/154

Цитира се в:

1152. Wang, L., Gao, C., Dai, L., Zhou, H., Li, Y., Meng, W., He, Z., Kumar, R.V. Improvement of Al3+ ion conductivity by F doping of (Al0.2Zr0.8)4/3.8NbP3O12 solid electrolyte for mixed potential NH3 sensors (2018) Ceramics International, 44 (8), pp. 8983-8991., 2018 Линк

312. Stankova, N.E., Dimitrov, I.G., Stoyanchov, T.R., Atanasov, P.A., Kovacheva, D.. Structure and optical anisotropy of pulsed-laser deposited TiO2 films for optical applications. Applied Surface Science, 255, 10, 2009, DOI:10.1016/j.apsusc.2008.07.203, 5275-5279. ISI IF:4.439

Цитира се в:

1153. Abass, K.H., Shinen, M.H., Alkaim, A.F. Preparation of TiO2 nanolayers via. sol-gel method and study the optoelectronic properties assolar cell applications (2018) Journal of Engineering and Applied Sciences, 13 (22), pp. 9631-9637., 2018 Линк

313. Dodoff, N. I., Kubiak, M., Kuduk-Jaworska, J., Mastalarz, A., Kochel, A., Vassilieva, V., Vassilev, N., Trendafilova, N., Georgieva, I., Lalia-Kantouri, M., Apostolova, M.. Structure, NMR spectra and cytotoxic effect of palladium(II) and platinum(II) complexes of glyoxylic acid oxime. Chemija, 20, 4, Lithuanian Academy of Sciences Publishers, 2009, ISSN:0235-7216, 208-217. ISI IF:0.472

Цитира се в:

1154. Zülfikaroğlu, A., Batı, H., Dege, N., A theoretical and experimental study on isonitrosoacetophenone nicotinoyl hydrazone: Crystal structure, spectroscopic properties, NBO, NPA and NLMO analyses and the investigation of interaction with some transition metals (2018) Journal of Molecular Structure, 1162, pp. 125-139, 2018 Линк

1155. Jaimes, N., Salmen, S., Colmenares, M.C., Mendoza, R.V., In vitro antiproliferative activity of palladium(II) complexes included within the β-cyclodextrin against various human tumor cell lines [Actividad antiproliferativa in vitro, de los complejos de paladio(II) incluidos en la β-ciclodextrina, frente a varias líneas de células tumorales de humano] (2018) Investigacion Clinica (Venezuela), 59 (1), pp. 17-27, 2018 Линк

1156. Noodeh, M. F., Divsalar, A., Seyedarabi, A., Akbar Saboury, A., Antiproliferative and interaction studies of a synthesized palladium(II) complex with human hemoglobin, (2018) Journal of Molecular Liquids, Vol. 249, pp. 265-271., 2018 Линк

314. Petrov, A., Gentscheva, G., Havezov, I., Ivanova, E.. Determination of the Uncertainty of the Flame Atomic Absorption Spectrometer for Copper, Cobalt, Cadmium and Nickel. Analytical Letters, 42, 16, 2009, ISSN:0003-2719, 2509-2519. ISI IF:1.088

Цитира се в:

1157. Kanokporn Supong, Parnuwat Usapein Parnuwat (2018) “Quality Assurance Analysis for the Determination of Copper Ion in Synthetic Wastewater Using Flame Atomic Absorption Spectrometer (FAAS)”, Conference: 3rd Regional IWA Diffuse Pollution Conference “Innovation and Frontier Technology for Water Security and Scarcity” At: Chiang Mai, Thailand, 2018 Линк

315. Hadjiivanov , K., H. Knözinger. Characterization of Vacant Coordination Sites of Cations on the Surfaces of Oxides and Zeolites using Infrared Spectroscopy of Adsorbed Probe Molecules. Surface Science, 603, 10-12, Elsevier, 2009, DOI:doi:10.1016/j.susc.2008.09.052, 1629-1636. ISI IF:1.925

Цитира се в:

1158. C.M. Mfoumou, S. Mignard and T. Belin, The preferential adsorption sites of H2 O on adsorption sites of CO2 at low temperature onto NaX and BaX zeolites, Adsorption Sci. Technol., 36 (2018) 1246 [ISI]., 2018 Линк

316. Rabadjieva, D, Tepavitcharova, S, Todorov, T, Dassenakis, M, Paraskevopoulou, V, Petrov, M. Chemical speciation in mining affected waters: The case study of Asarel-Medet mine. Environmental Monitoring and Assessment, 159, 1-4, Springer Netherlands, 2009, ISSN:01676369, DOI:10.1007/s10661-008-0634-6, 353-366. SJR:0.648, ISI IF:1.873

Цитира се в:

1159. Stefan Đorđievski, Daizo Ishiyama, Yasumasa Ogawa, Zoran Stevanović, Mobility and natural attenuation of metals and arsenic in acidic waters of the drainage system of Timok River from Bor copper mines (Serbia) to Danube River, Environmental Science and Pollution Research, 2018, p. 1-15, , 2018 Линк

317. Yoncheva, M., Stoyanova, R., Zhecheva, E., Alcantara, R., Tirado, J. L.. Effect of the synthesis procedure on the local cationic distribution in layered LiNi1/2Mn1/2O2. Journal of Alloys and Compounds, 475, 1-2, 2009, ISSN:0925-8388, 96-101. ISI IF:2.999

Цитира се в:

1160. Yao, W., Zhang, H., Zhong, S., Li, J., Wang, L. "Facile synthesis of Li2ZrO3-modified LiNi0.5Mn0.5O2cathode material from a mechanical milling route for lithium-ion batteries". Journal of Electroceramics, 2018, 2018 Линк

318. Milanova, M., Iordanova, R., Kostov, K.L.. Glass formation in the MoO3-CuO-PbO system. Journal of Non-Crystalline Solids, 355, 6, Elsevier, 2009, ISSN:00223093, DOI:doi:10.1016/j.jnoncrysol.2008.12.004, 379-385. SJR:0.753, ISI IF:1.766

Цитира се в:

1161. Hu, Changwei, et al. "The Conversion of Jatropha Oil into Jet‐fuel on NiMo/Al‐MCM‐41 Catalyst: Intrinsic Synergic Effects between

Page 74: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 74/154

Ni and Mo." Energy Technology., 2018

1162. Wu, K., Huang, Q., Yang, X. and Liu, T., Arsenic Removal from Aqueous Solution by Using Aluminum-Zirconium Bimetal Oxide: Adsorption Characteristics and Mechanisms. Journal of Water Sustainability, 8(3), pp.99-110, 2018., 2018 Линк

319. Koleva, V., Zhecheva, E., Stoyanova, R.. A new phosphate-formate precursor method for the preparation of carbon coated nano-crystalline LiFePO4. Journal of Alloys and Compounds, 476, 1-2, 2009, ISSN:0925-8388, 950-957. ISI IF:2.999

Цитира се в:

1163. Jiang, G., Hu, Z., Xiong, J., Zhu, X., Yuan, S. Enhanced performance of LiFePO4 originating from the synergistic effect of graphene modification and carbon coating (2018) Journal of Alloys and Compounds, 767, pp. 528-537., 2018 Линк

1164. Mauger, A., & Julien, C. (2018). Olivine Positive Electrodes for Li-Ion Batteries: Status and Perspectives. Batteries, 4(3), 39., 2018 Линк

320. Sclar, H., Kovacheva, D., Zhecheva, E., Stoyanova, R., Lavi, R., Kimmel, G., Grinblat, J., Girshevitz, O., Amalraj, F., Haik, O., Zinigrad, E., Markovsky, B., Aurbach, D.. On the performance of LiNi1/3Mn1/3Co 1/3O2 nanoparticles as a cathode material for lithium-ion batteries. Journal of the Electrochemical Society, 156, 11, 2009, ISSN:0013-4651, DOI:10.1149/1.3212850, A938-A948. ISI IF:3.226

Цитира се в:

1165. Gao, T.-P., Wong, K.W., Fung, K.Y., Zhang, W., Ng, K.M. A rational three-step calcination strategy for synthesizing high-quality LiNi0.5Mn0.3Co0.2O2 cathode materials: The key role of suppressing Li2O formation (2018) Electrochimica Acta, 288, pp. 153-164., 2018 Линк

1166. Stein, P., Moradabadi, A., Diehm, M., Xu, B.-X., Albe, K. The influence of anisotropic surface stresses and bulk stresses on defect thermodynamics in LiCoO2 nanoparticles (2018) Acta Materialia, 159, pp. 225-240., 2018 Линк

1167. Lawagon, C.P., Nisola, G.M., Cuevas, R.A.I., Kim, H., Lee, S.-P., Chung, W.-J. Li1− xNi0.33Co1/3Mn1/3O2/Ag for electrochemical lithium recovery from brine (2018) Chemical Engineering Journal, 348, pp. 1000-1011., 2018 Линк

1168. Ivanishchev, A.V., Bobrikov, I.A., Ivanishcheva, I.A., Ivanshina, O.Y. Study of structural and electrochemical characteristics of LiNi0.33Mn0.33Co0.33O2 electrode at lithium content variation (2018) Journal of Electroanalytical Chemistry, 821, pp. 140-151., 2018 Линк

1169. Wang, Y., Roller, J., Maric, R. Morphology-Controlled One-Step Synthesis of Nanostructured LiNi1/3Mn1/3Co1/3O2 Electrodes for Li-Ion Batteries (2018) ACS Omega, 3 (4), pp. 3966-3973., 2018 Линк

1170. Luo, M., Jiang, W., Han, X., Guo, R., Li, T., Yu, L. Synthesis and Characterization of Full Concentration-gradient LiNi0.643Co0.055Mn0.302O2 Cathode Material for Lithium-ion Batteries (2018) Gaodeng Xuexiao Huaxue Xuebao/Chemical Journal of Chinese Universities, 39 (1), pp. 148-156., 2018 Линк

1171. Bankole, O.E., Lei, L. Recovery of LiMn1/3Ni1/3Co1/3O2 from spent lithium-ion battery using a specially designed device (2018) Environmental Engineering and Management Journal, 17 (5), pp. 1043-1051., 2018 Линк

321. Georgieva, I., Trendafilova, N., Creaven, B. S., Walsh, M., Noble, A., McCann, M.. Is the C=O frequency shift a reliable indicator of coumarin binding to metal ions through the carbonyl oxygen?. Chemical Physics, 365, 1-2, Elsevier, 2009, ISSN:0301-0104, 69-79. ISI IF:1.652

Цитира се в:

1172. Islas, M.S., Martínez Medina, J.J., Piro, O.E., (...), Ferrer, E.G., Williams, P.A.M., Comparisons of the spectroscopic and microbiological activities among coumarin-3-carboxylate, o-phenanthroline and zinc(II) complexes, 2018, Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy, 198, pp. 212-221., 2018 Линк

322. Dimitriev, Y., Iordanova, R.. Non-traditional molybdate glasses. Physics and Chemistry of Glasses-European Journal of Glass Science and Technology Part B, 50, 2, 2009, ISSN:00319090, 123-132. ISI IF:0.68

Цитира се в:

1173. Nishida, T., Furumoto, I., Fujita, Y., Kubuki, S., & Oka, N. "Structural relaxation and electrical conductivity of molybdovanadate glass" (2018). Journal of Materials Science: Materials in Electronics, 1-6, 2018 Линк

323. Stefov V., Cahil A., Šoptrajanov B., Najdoski M., Spirovski F., Engelen B., Lutz H., Koleva V.. Infrared and Raman spectra of magnesium ammonium phosphate hexahydrate (struvite) and its isomorphous analogues. VII. Spectra of protiated and partially deuterated hexagonal magnesium caesium phosphate hexahydrate. Journal of Molecular Structure, 924-925, Elsevier, 2009, ISSN:0022-2860, 100-106. ISI IF:1.602

Цитира се в:

1174. Wei, L., Hong, T., Hu, Z., Luo, L., Zhang, Q., Chen, T. Modeling surface acid-base properties of struvite crystals synthesized in aqueous solution (2018) Colloids and Surfaces A: Physicochemical and Engineering Aspects, 553, pp. 237-243., 2018 Линк

324. Vassileva P., Tzvetkova P., Nickolov R.. Removal of ammonium ions from aqueous solutions with coal-based activated carbons modified by oxidation. Fuel, 88, 2009, 387-390. ISI IF:3.18

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page 75/154

Цитира се в:

1175. Khamidun, M.H., Abdullah, S., Ali, U.F.M., Fulazzaky, M.A., Analysis of ammonium adsorption behavior and mass transfer resistance from aerated lagoon effluent onto activated carbon (2018) Malaysian Journal of Analytical Sciences, 22 (4), pp. 723-734., 2018

1176. Huang, J., Kankanamge, N.R., Chow, C., Welsh, D.T., Li, T., Teasdale, P.R., Removing ammonium from water and wastewater using cost-effective adsorbents: A review (2018) Journal of Environmental Sciences (China), 63, pp. 174-197., 2018

1177. Xu, K., Lin, F., Dou, X., Zheng, M., Tan, W., Wang, C., Recovery of ammonium and phosphate from urine as value-added fertilizer using wood waste biochar loaded with magnesium oxides, (2018) Journal of Cleaner Production, 187, pp. 205-214., 2018

1178. Shi, J., Han, Y., Xu, C., Han, H., Biological coupling process for treatment of toxic and refractory compounds in coal gasification wastewater, (2018) Reviews in Environmental Science and Biotechnology, 17 (4), pp. 765-790., 2018

1179. Shang, L., Xu, H., Huang, S., Zhang, Y., Adsorption of Ammonium in Aqueous Solutions by the Modified Biochar and its Application as an Effective N-Fertilizer, (2018) Water, Air, and Soil Pollution, 229 (10), art. no. 320 = , 2018

1180. Fushimi, C., Yazaki, M., Tomita, R., Reactivity of solid residue from hydrothermal liquefaction of diatom in oxidizing atmosphere, (2018) Journal of the Taiwan Institute of Chemical Engineers, 90, pp. 68-78., 2018

1181. Peng, X., Wang, M., Hu, F., Qiu, F., Zhang, T., Dai, H., Cao, Z., Multipath fabrication of hierarchical CuAl layered double hydroxide/carbon fiber composites for the degradation of ammonia nitrogen, (2018) Journal of Environmental Management, 220, pp. 173-182., 2018

1182. Khalil, A., Sergeevich, N., Borisova, V., Removal of ammonium from fish farms by biochar obtained from rice straw: Isotherm and kinetic studies for ammonium adsorption(2018) Adsorption Science and Technology, 36 (5-6), pp. 1294-1309, 2018

1183. Karri, R.R., Sahu, J.N., Chimmiri, V., Critical review of abatement of ammonia from wastewater, (2018) Journal of Molecular Liquids, 261, pp. 21-31., 2018

1184. Dong, S., Feng, C., Cui, W., Chen, N., Liu, Y., Liu, T., Anaerobic bioremediation performance and indigenous microbial communities in treatment of trichloroethylene/nitrate-contaminated groundwater, (2018) Environmental Engineering Science, 35 (4), pp. 311-322., 2018

1185. Ibrahim, B., Schlegel, M., Kanswohl, N., Effectiveness of Biochar from Hydrothermal Carbonization of Wetland Biomass for Sorption of Ammonia (2018) Chemie-Ingenieur-Technik, 90 (3), pp. 340-347., 2018

1186. Zhu, Y., Kolar, P., Shah, S.B., Cheng, J.J., Lim, P.K., Simultaneous mitigation of p- cresol and ammonium using activated carbon from avocado seed, (2018) Environmental Technology and Innovation, 9, pp. 63-73. DOI: 10.1016/j.eti.2017.10.006, 2018

325. Ivanova, S., Senyshin, A., Zhecheva, E., Tenchev, K., Nikolov, V., Stoyanova, R., Fuess, H.. Effect of the synthesis route on the microstructure and the reducibility of LaCoO3. Journal of Alloys and Compounds, 480, 2, 2009, ISSN:0925-8388, 279-285. ISI IF:2.999

Цитира се в:

1187. Hare, B.J., Maiti, D., Daza, Y.A., Bhethanabotla, V.R., Kuhn, J.N. "Enhanced CO2Conversion to CO by Silica-Supported Perovskite Oxides at Low Temperatures". ACS Catalysis, 8 (4), pp. 3021-3029, 2018, 2018 Линк

1188. Ávila-Neto, C. N., Oliveira, K. D., Oliveira, K. F., Arouca, A. M., Ferreira, R. A., & Hori, C. E. (2018). Interconnection between feed composition and Ni/Co ratio in (La-Ni-Co-O)-based perovskites and its effects on the stability of LPG steam reforming. Applied Catalysis A: General, 550, 184-197., 2018 Линк

326. Stayanova A.,, Iordanova, R., Mancheva, M., Dimitriev, Y.,. Synthesis and structural characterization of MoO3 phases obtained from molybdic acid by addition of HNO3 and H2O2. Journal of optoelectronics and advanced materials, 11, 8, 2009, 1127-1131. ISI IF:0.443

Цитира се в:

1189. Tamboli, Parvin S., et al. "Spray pyrolytic deposition of α-MoO 3 film and its use in dye-sensitized solar cell." Applied Physics A 124.4 (2018): 339., 2018

327. Radev, L., Fernandes, M.H.V., Salvado, I.M., Kovacheva, D.. Organic/inorganic bioactive materials part III: In vitro bioactivity of gelatin/silicocarnotite hybrids. Central European Journal of Chemistry, 7, 4, Central European Science Journals, 2009, ISSN:1895-1066, DOI:10.2478/s11532-009-0078-z, 721-730. ISI IF:1.164

Цитира се в:

1190. Hassoune, J., Tahiri, S., El Krati, M., Luisa Cervera, M., De La Guardia, M. Removal of Hexavalent Chromium from Aqueous Solutions Using Biopolymers (2018) Journal of Environmental Engineering (United States), 144 (8), art. no. 04018060, ., 2018 Линк

1191. Hamai, Ryo, et al. "Structural effects of phosphate groups on apatite formation in a copolymer modified with Ca 2+ in a simulated body fluid." Journal of Materials Chemistry B 6.1 (2018): 174-182., 2018 Линк

328. Khristova M., Petrović Srdjan P., Terlecki-Baričević Ana, Mehandjiev D.. Catalytic reduction of NO by CO over Pd — doped Perovskite-type catalysts. Central European Journal of Chemistry, 7, 4, 2009, ISSN:1895-1066, DOI:10.2478/s11532-009-0065-4, 857-863. ISI IF:1.329

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page 76/154

Цитира се в:

1192. Hosseini, S.A., Mehri, B., Niaei, A., Izadkhah, B., Alvarez-Galvan, C., Fierro, J.G.L. Selective catalytic reduction of NOxby CO over LaMnO3nano perovskites prepared by microwave and ultrasound assisted sol–gel method (2018) Journal of Sol-Gel Science and Technology, 85 (3), pp. 647-656., 2018

329. Hadjiivanov , K., A. Penkova, Kefirov, R., S. Dzwigaj, M. Che. Influence of Dealumination and Treatments on the Chromium Speciation in Zeolite CrBEA. Microporous and Mesoporous Materials, 124, 1-3, Elsevier, 2009, DOI:doi:10.1016/j.micromeso.2009.04.038, 59-69. ISI IF:3.453

Цитира се в:

1193. W. Wei and S. Wu, Experimental and kinetic study of glucose conversion to levulinic acid in aqueous medium over Cr/HZSM-5 catalyst, Fuel, 225 (2018) 311 [ISI]., 2018 Линк

330. Koleva V., Stefov V., Cahil A., Najdoski M., Šoptrajanov B., Engelen B., Lutz H.. Infrared and Raman studies of manganese dihydrogen phosphate dihydrate, Mn(H2PO4)2•2H2O. I. Region of the vibrations of the phosphate ions and external modes of the water molecules. Journal of Molecular Structure, 917, Elsevier, 2009, ISSN:0022-2860, 117-124. ISI IF:1.602

Цитира се в:

1194. Han, D., Luo, Y., Ju, Q., Xiao, X., Xiao, M., Xiao, N., Chen, S., Peng, X., Wang, S., Meng, Y. "Nano-brickwall architectures account for super oxygen barrier PET film by quadlayer assembly of polyelectrolytes and α-ZrP nanoplatelets". (2018) Polymers, 10 (10), art. no. 1082 ., 2018 Линк

1195. Guo, Y., Wang, J., Li, D., Tang, P., Leroux, F., Feng, Y. "Micrometer-sized dihydrogenphosphate-intercalated layered double hydroxides: Synthesis, selective infrared absorption properties, and applications as agricultural films". (2018) Dalton Transactions, 47 (9), pp. 3144-3154., 2018 Линк

331. A. Penkova, J.M. Martinez Blanes, S.A. Cruz, A.M. Centeno, Hadjiivanov , K., J.A. Odriozola. Gold Nanoparticles on Silica Monospheres Modified by Amino Groups. Microporous and Mesoporous Materials, 117, 3, Elsevier, 2009, DOI:doi:10.1016/j.micromeso.2008.07.041, 530-534. ISI IF:3.453

Цитира се в:

1196. M. Zienkiewicz-Strzałka, A. Deryło-Marczewska and R.B. Kozakevych, 3-Aminopropyl-triethoxysilane/spion/GC Electrode for Simultaneous Quantification of Tin and Lead, Appl. Nanosci., 8 (2018) 1649 [ISI]., 2018 Линк

1197. P. Kraszkiewicz and W. Mista, Thermally stable SBA-15 supported sub-2 nm gold clusters, highly active in room temperature CO oxidation: Effect of thermal pretreatment, Catal. Commun., 110 (2018) 14 [ISI]., 2018 Линк

1198. H. Lippold, L. Karimzadeh, J. Kulenkampff, L. Wissmeier, C. Stuhlfauth, M. Stoll and J. Lippmann-Pipke, Effect of pH on the mobility of the herbicide MCPA in a sand-goethite column: 1D and 2D reactive transport modeling, Appl. Geochem , 98 (2018) 345 [ISI]., 2018 Линк

1199. S.S. Mortazavi and A. Farmany, 3-Aminopropyl-triethoxysilane/spion/GC Electrode for Simultaneous Quantification of Tin and Lead, Iran. J. Sci. Technol. Trans. Sci., 42 (2018) 539 [ISI]. https://doi.org/10.1007/s40995-017-0231-z, 2018 Линк

332. Bachvarova-Nedelcheva A., Dimitriev Y., Iordanova R.. Selenite glasses containing Ag+ and Cu2+ ions as modifiers. J. Univ. Chem. Technol. Metall., 44, 3, 2009, ISSN:1314-7471, 221-226. SJR:0.196

Цитира се в:

1200. Palui A., Ghosh A., Structure and dielectric properties of Ag2O-SeO2-TeO2 mixed former glasses, Journal of Non-Crystalline Solids, 482 (2018) pp. 230–235., 2018 Линк

333. Vassileva P., Voikova D.. Investigation on natural and pretreated Bulgarian clinoptilolite for ammonium ions removal from aqueous solutions. Journal of Hazardous Materials, 170, 2009, 948-953. ISI IF:4.14

Цитира се в:

1201. Chin, A., Schmidt, S., Buckley, S., Pirie, R., Redding, M., Laycock, B., Luckman, P., Batstone, D.J., Robinson, N., Brackin, R., Sorbents can tailor nitrogen release from organic wastes to match the uptake capacity of crops, (2018) Science of the Total Environment, 645, pp. 1474-1483., 2018

1202. Rodríguez-Iznaga, I., Rodríguez-Fuentes, G., Petranovskii, V., Ammonium modified natural clinoptilolite to remove manganese, cobalt and nickel ions from wastewater: Favorable conditions to the modification and selectivity to the cations, (2018) Microporous and Mesoporous Materials, 255, pp. 200-210., 2018

1203. Guo, J., Du, J., Chen, P., Huang, X., Chen, Q., Enhanced efficiency of swine wastewater treatment by the composite of modified zeolite and a bioflocculant enriched from biological sludge, (2018) Environmental Technology (United Kingdom), 39 (23), pp. 3096-3103., 2018

1204. Wu, Z., Xie, J., Liu, H., Chen, T., Cheng, P., Wang, C., Kong, D., Preparation, characterization, and performance of 4A zeolite based on opal waste rock for removal of ammonium ion, (2018) Adsorption Science and Technology, 36 (9-10), pp. 1700-1715., 2018

1205. Alshameri, A., He, H., Zhu, J., Xi, Y., Zhu, R., Ma, L., Tao, Q., Adsorption of ammonium by different natural clay minerals:

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page 77/154

Characterization, kinetics and adsorption isotherms, (2018) Applied Clay Science, 159, pp. 83-93., 2018

1206. Zarabi, M., Jalali, M., Competitive Removal of Ammonium-Nitrogen from Aqueous Solutions by Mineral and Organic Adsorbents(2018) Communications in Soil Science and Plant Analysis, 49 (10), pp. 1129-1143., 2018

1207. Pleşa Chicinaş, R., Gál, E., Bedelean, H., Darabantu, M., Măicăneanu, A., Novel metal modified diatomite, zeolite and carbon xerogel catalysts for mild conditions wet air oxidation of phenol: Characterization, efficiency and reaction pathway, (2018) Separation and Purification Technology, 197, pp. 36-46., 2018

1208. Zheng, X., Yang, Z., Xu, X., Shi, X., Dai, M., Guo, R., Distillers’ grains anaerobic digestion residue biochar used for ammonium sorption and its effect on ammonium leaching from an Ultisol (2018) Environmental Science and Pollution Research, 25 (15), pp. 14563-14574., 2018

1209. Wasielewski, S., Rott, E., Minke, R., Steinmetz, H., Evaluation of different clinoptilolite zeolites as adsorbent for ammonium removal from highly concentrated synthetic wastewater, (2018) Water (Switzerland), 10 (5), art. no. 584., 2018

1210. Aziz, M. S. A., Malek, N. A. N. N., Ishak, S. N., Asraf, M. H., Hadi, A. A., & Awaluddin, M. Z. A. Simultaneous action of surfactant modified clinoptilolite: Adsorbent of dyes and antibacterial agent. (2018) Malaysian Journal of Fundamental and Applied Sciences, 14, 477-481., 2018

1211. Chu, Y.-B., Xu, Y., Liu, H., Yuan, Z.-W., Zhao, H.-Z., Novel Na-zeolite covalently bonded with quaternary ammonium for simultaneous removal of phosphate, ammonium and nitrate, (2018) Desalination and Water Treatment, 106, pp. 153-164., 2018

1212. Wasielewski, S., Rott, E., Minke, R., & Steinmetz, H. (2018). Recovery of Ammonium from Sludge Dewatering Processes for the Production of Ammonium Sulfate Solution. Proceedings of the Water Environment Federation, 2018 (5), 763-773., 2018

334. Alcantara, R., Ortiz, G., Tirado, J. L., Stoyanova, R., Zhecheva, E., Ivanova, Sv.. Fe3+ and Ni3+ impurity distribution and electrochemical performance of LiCoO2 electrode materials for lithium ion batteries. Journal of Power Sources, 194, 1, 2009, ISSN:0378-7753, 494-501. ISI IF:6.217

Цитира се в:

1213. Teemu Tuovinen, PhD Thesis "SEOSTETTUJEN LITIUM IONIAKKU MATERIAALIEN KARAKTERISOINTI", University of Oulu, 2018 Линк

335. C. Resini, T. Venkov, Hadjiivanov , K., S. Presto, P. Riani, R. Marazza, G. Ramis, G. Busca. An FTIR Study of the Dispersed Ni Species on Ni–YSZ catalysts. Applied Catalysis A: General, 353, 1, Elsevier, 2009, DOI:doi:10.1016/j.apcata.2008.10.042, 137-143. ISI IF:3.942

Цитира се в:

1214. Y. Yu, Y.M. Chan, Z. Bian, F. Song, J. Wang, Q. Zhong and S. Kawi, Enhanced performance and selectivity of CO2 methanation over g-C3 N4 assisted synthesis of Ni–CeO2 catalyst: Kinetics and DRIFTS studies, Int. J. Hydrogen Energy, 43 (2018) 15191 [ISI]., 2018 Линк

1215. Y. Yu, Z. Bian, F. Song, J. Wang, Q. Zhong and S. Kawi, Influence of Calcination Temperature on Activity and Selectivity of Ni–CeO2 and Ni–Ce0.8 Zr0.2 O2 Catalysts for CO2 Methanation, Top. Catal. 61 (2018)1514-1527 doi: 10.1007/s11244-018-1010-6 [ISI]., 2018 Линк

1216. H. Zhao, M. Li and G.Luo, Chem. Ind. Eng. Progress, 37 (2018) 419 [GS]., 2018

336. Aleksandrov, L., Iordanova, R., Dimitriev, Y.. Glass formation in the MoO3-Nd2O3-La2O3-B2O3 system. Journal of Non-Crystalline Solids, 355, 2009, 2023-2026. ISI IF:1.825

Цитира се в:

1217. Brehault, A., D. Patil, H. Kamat, R. E Youngman, L. M Thirion, J.C. Mauro, C. Corkhill, J. S.McCloy, and A. Goel. “Compositional Dependence of Solubility/Retention of Molybdenum Oxides in Aluminoborosilicate-Based Model Nuclear Waste Glasses”. J. Phys. Chem. B 122.5 (2018) 1714., 2018 Линк

337. Bachvarova-Nedelcheva A., Iordanova R., Yordanov St., Dimitriev Y.. Optical properties of selenite glasses. Journal of Non-Crystalline Solids, 355, 37-42, 2009, ISSN:0022-3093, 2027-2030. SJR:0.922, ISI IF:1.34

Цитира се в:

1218. Satya Gopal Rao P., Siripuram Rajesh & Sripada Suresh, Structural study of TeO2–SeO2–Li2O ternary glass system using Raman and IR, Phys. Chem. Glasses: Eur. J. Glass Sci. Technol. B, 59 (2) (2018) pp. 88-92., 2018 Линк

338. Gabrovska, M., Nikolova, D., Krstić, J., Stanković, M., Stefanov, P., Edreva-Kardjieva, R., Jovanović, D.. The state of nickel in the silver modified NiMg/SiO2 vegetable oil hydrogenation catalysts. Russian Journal of Physical Chemistry A, 83, 9, MAIK NAUKA/INTERPERIODICA/SPRINGER, 2009, ISSN:0036-0244, 1461-1467. ISI IF:0.549

Цитира се в:

1219. ang, L., Wang, W., Wang, Y., Wang, T., Zhou, S., Hu, L., Liu, T., Elfalleh, W., Yu, D. Structural characteristics of a Ni–Ag magnetic catalyst and its properties in soybean oil hydrogenation Food and Bioproducts Processing, 109, pp. 139-147., (2018), 2018 Линк

1220. Du, J., Zou, D., Zhao, Y., Chen, J., Jiang, L., Liu, T., Yu, D., Li, W., Elfalleh, W. Preparation and characterization of Ni-Agx/SBA-15 and

Page 78: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 78/154

its catalytic properties on the hydrogenation of soybean oil Journal of Food Process Engineering, 41 (8), art. no. e12926, (2018), 2018 Линк

339. Pekounov, Y., Chakarova, K., Hadjiivanov, K.. Surface acidity of amorphous calcium phosphate and calcium apatite: FTIR spectroscopic study of low-temperature CO adsorption. Materials Science and Engineering: C, 29, 2009, DOI:10.1016/j.msec.2008.10.011, 1178-1181. ISI IF:1.842

Цитира се в:

1221. A. A. Ivanova, M. A. Surmeneva, A. I. Tyurin, R. A. Surmenev, "Correlation between structural and mechanical properties of RF magnetron sputter deposited hydroxyapatite coating", Mater. Charact., 142 (2018) 261-269., 2018 Линк

340. Alexandrova A., Uzunov I., Banov B., Momchilov A.. Potassium bronzes as active material for Li-ion batteries. CR Acad Bulg Sci, 62, 4, Bulgarian Academy of Sciences, 2009, ISSN:1310-1331, 453-460. SJR:0.21, ISI IF:0.27

Цитира се в:

1222. Hao P. et al. "Electrospun Single Crystalline Fork-Like K2V8O21 as High-Performance Cathode Materials for Lithium-Ion Batteries". Frontiers in Chemistry 6, 2018; DOI: 0.3389/fchem.2018.00195, 2018

341. Uzunova E, Mikosch H, Hafner J. Theoretical Study of Transition Metal Cation Exchanged Zeolites: Interaction with NO. Theochem, 912, Elsevier, 2009, ISSN:0166-1280, 88-97. ISI IF:1.37

Цитира се в:

1223. Wei, L., Cui, S., Guo, H., Zhang, L. The effect of alkali metal over Mn/TiO2 for low-temperature SCR of NO with NH3 through DRIFT and DFT (2018) Computational Materials Science, 144, pp. 216-222., 2018

1224. Yang, G., Du, X., Ran, J., Wang, X., Chen, Y., Zhang, L. Understanding SO2 Poisoning over Different Copper Species of Cu-SAPO-34 Catalyst: A Periodic DFT Study (2018) Journal of Physical Chemistry C, 122 (37), pp. 21468-21477., 2018 Линк

1225. Terzić, A., Pezo, L., Mijatović, N., Stojanović, J., Kragović, M., Miličić, L., Andrić, L. The effect of alternations in mineral additives (zeolite, bentonite, fly ash) on physico-chemical behavior of Portland cement based binders (2018) Construction and Building Materials, 180, pp. 199-210., 2018 Линк

1226. Pezo, M., Pezo, L., Jovanović, A.P., Terzić, A., Andrić, L., Lončar, B., Kojić, P. Discrete element model of particle transport and premixing action in modified screw conveyors (2018) Powder Technology, 336, pp. 255-264., 2018 Линк

1227. Yang, G., Ran, J., Du, X., Wang, X., Chen, Y., Zhang, L. Different copper species as active sites for NH3-SCR reaction over Cu-SAPO-34 catalyst and reaction pathways: A periodic DFT study (2018) Microporous and Mesoporous Materials, 266, pp. 223-231., 2018 Линк

1228. Fernández, E., Moreno-González, M., Moliner, M., Blasco, T., Boronat, M., Corma, A. Modeling of EPR Parameters for Cu(II): Application to the Selective Reduction of NOx Catalyzed by Cu-Zeolites (2018) Topics in Catalysis, 61 (9-11), pp. 810-832., 2018

1229. Yao, G., Lei, J., Zhang, X., Sun, Z., Zheng, S. One-step hydrothermal synthesis of zeolite X powder from natural low-grade diatomite (2018) Materials, 11 (6), art. no. 906, , 2018

342. Uzunova E, Goeltl F, Kresse G, Hafner J. Application of Hybrid Functionals to the Modeling of NO Adsorption on Cu-SAPO-34 and Co-SAPO-34: A Periodic DFT Study. J. Phys.Chem. C, 113, ACS, 2009, ISSN:1932-7447, 5274-5285. ISI IF:4.77

Цитира се в:

1230. Bernales, V., Ortuño, M.A., Truhlar, D.G., Cramer, C.J., Gagliardi, L. Computational design of functionalized metal-organic framework nodes for catalysis (2018) ACS Central Science, 4 (1), pp. 5-19., 2018

1231. Liu, L., Zheng, C., Wang, J., Zhang, Y., Gao, X., Cen, K. NO adsorption and oxidation on Mn-doped CeO2 (111) surfaces: A DFT+U study (2018) Aerosol and Air Quality Research, 18 (4), pp. 1080-1088., 2018

1232. Yang, G., Du, X., Ran, J., Wang, X., Chen, Y., Zhang, L. Understanding SO2 Poisoning over Different Copper Species of Cu-SAPO-34 Catalyst: A Periodic DFT Study (2018) Journal of Physical Chemistry C, 122 (37), pp. 21468-21477., 2018 Линк

1233. Yang, G., Ran, J., Du, X., Wang, X., Chen, Y., Zhang, L. Different copper species as active sites for NH3-SCR reaction over Cu-SAPO-34 catalyst and reaction pathways: A periodic DFT study (2018) Microporous and Mesoporous Materials, 266, pp. 223-231., 2018 Линк

343. Stoilova, D., Marinova, D., Georgiev, M.. Hydrogen bond strength in chromates with kröhnkite-type chains, K2Me(CrO4)2.2H2O (Me = Mg, Co, Ni, Zn, Cd). Vibrational spectroscopy, 50, Elsevier, 2009, ISSN:0924-2031, 245-249. SJR:0.615, ISI IF:1.682

Цитира се в:

1234. Siidra, O.I., Lukina, E.A., Nazarchuk, E.V., Depmeier, W., Bubnova, R.S., Agakhanov, A.A., Avdontseva, E.Y., Filatov, S.K., Kovrugin, V.M., "SaranChinaite, Na2Cu(SO4)2, a new exhalative mineral from Tolbachik volcano, Kamchatka, Russia, and a product of the reversible dehydration of kröhnkite, Na2Cu(SO4)2(H2O)2" (2018) Mineralogical Magazine, 82 (2), pp. 257-274., 2018

344. Stoilova, D., Marinova, D., Wildner, M., Georgiev, M.. Comparative study on energetic distortions of SO42- ions matrix-isolated in

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compounds with kröhnkite-type chains, K2Me(CrO4)2.2H2O and Na2Me(SeO4)2.2H2O (Me = Mg, Co, Ni, Zn, Cd). Solid State Sciences, 11, Elsevier, 2009, ISSN:1293-2558, 2044-2050. SJR:0.608, ISI IF:2.041

Цитира се в:

1235. Siidra, O.I., Lukina, E.A., Nazarchuk, E.V., Depmeier, W., Bubnova, R.S., Agakhanov, A.A., Avdontseva, E.Y., Filatov, S.K., Kovrugin, V.M., "SaranChinaite, Na2Cu(SO4)2, a new exhalative mineral from Tolbachik volcano, Kamchatka, Russia, and a product of the reversible dehydration of kröhnkite, Na2Cu(SO4)2(H2O)2" (2018) Mineralogical Magazine, 82 (2), pp. 257-274., 2018

345. Tepavitcharova, S, Rabadjieva, D, Todorov, T, Dassenakis, M, Paraskevopoulou, V. Trace Elements Speciation in Mining Affected Waters. Water Treatment Technologies for the Removal of High-Toxicity Pollutants. NATO Science for Peace and Security Series-C: Environmental Security, Springer, 2009, ISBN:978-90-481-3497-7, DOI:https://doi.org/10.1007/978-90-481-3497-7_13, 161-168

Цитира се в:

1236. A.R. Karbassi, S. Tajziehchi, H. Khoshghal, Speciation of heavy metals in coastal water of Qeshm Island in the Persian Gulf, Global J. Environ. Sci. Manage., 4(1):31-46, DOI: 10.22034/gjesm.2018.04.01.00*, 2018, 2018 Линк

2010

346. Amalraj, S.F., Kovacheva, D., Talianker, M., Zeiri, L., Grinblat, J., Leifer, N., Goobes, G., Markovsky, B., Aurbach, D.. Synthesis of Integrated Cathode Materials xLi2MnO3⋅(1− x) LiMn1/3Ni1/3Co1/3O2 (x= 0.3, 0.5, 0.7) and Studies of Their Electrochemical Behavior. Journal of the Electrochemical Society, 157, 10, 2010, ISSN:0013-4651, DOI:10.1149/1.3463782, A1121-A1130. ISI IF:3.266

Цитира се в:

1237. Zhang, S., Tang, T., Ma, Z., Gu, H., Du, W., Gao, M., Liu, Y., Jian, D., Pan, H. Tuning Li2MO3 phase abundance and suppressing migration of transition metal ions to improve the overall performance of Li- and Mn-rich layered oxide cathode (2018) Journal of Power Sources, 380, pp. 1-11., 2018 Линк

1238. Zhang, S., Chen, J., Tang, T., Jiang, Y., Chen, G., Shao, Q., Yan, C., Zhu, T., Gao, M., Liu, Y., Pan, H. A novel strategy to significantly enhance the initial voltage and suppress voltage fading of a Li- and Mn-rich layered oxide cathode material for lithium-ion batteries (2018) Journal of Materials Chemistry A, 6 (8), pp. 3610-3624., 2018 Линк

1239. Dahiya, PP Ghanty, C Sahoo, K Basu, S Majumder, SB Suppression of Voltage Decay and Improvement in Electrochemical Performance by Zirconium Doping in Li-Rich Cathode Materials for Li-Ion Batteries, (2018) JOURNAL OF THE ELECTROCHEMICAL SOCIETY 165, 13, A3114-A3124, 2018 Линк

1240. Dahiya, P. P., et al. "Effect of Potassium Doping on the Electrochemical Properties of 0.5 Li2MnO3-0.5 LiMn0. 375Ni0. 375Co0. 25O2 Cathode." Journal of The Electrochemical Society 165.11 (2018): A2536-A2548., 2018 Линк

1241. Zhao, Jianqing, et al. "Phase transitions and related electrochemical performances of Li-Rich layered cathode materials for high-energy lithium ion batteries." Journal of Alloys and Compounds 732 (2018): 385-395., 2018 Линк

1242. Johnston-Peck, Aaron C., et al. "Local degradation pathways in lithium-rich manganese–nickel–cobalt oxide epitaxial thin films." Journal of Materials Science 53.2 (2018): 1365-1379., 2018 Линк

1243. Zhang, Yannan, et al. "Novel efficient regeneration of high-performance Li1. 2 [Mn0. 56Ni0. 16Co0. 08] O2 cathode materials from spent LiMn2O4 batteries." Journal of Alloys and Compounds (2018)., 2018

1244. Lu, Y., Pang, M., Shi, S., Ye, Q., Tian, Z., Wang, T. Enhanced Electrochemical Properties of Zr4+-doped Li1.20[Mn0.52Ni0.20Co0.08]O2 Cathode Material for Lithium-ion Battery at Elevated Temperature (2018) Scientific Reports, 8 (1), art. no. 2981, ., 2018 Линк

1245. Ouyang, H., Li, X., Wang, Z., Guo, H., Peng, W. Electrochemical and structural analysis of Mg substitution in lithium-rich layered oxide for lithium-ion battery (2018) Ionics, 24 (11), pp. 3347-3356., 2018 Линк

1246. Susai, F.A., Sclar, H., Shilina, Y., Penki, T.R., Raman, R., Maddukuri, S., Maiti, S., Halalay, I.C., Luski, S., Markovsky, B., Aurbach, D. Horizons for Li-Ion Batteries Relevant to Electro-Mobility: High-Specific-Energy Cathodes and Chemically Active Separators (2018) Advanced Materials, 30 (41), art. no. 1801348, ., 2018 Линк

1247. Pan, H., Zhang, S., Chen, J., Gao, M., Liu, Y., Zhu, T., Jiang, Y. Li- and Mn-rich layered oxide cathode materials for lithium-ion batteries: A review from fundamentals to research progress and applications (2018) Molecular Systems Design and Engineering, 3 (5), pp. 748-803., 2018 Линк

1248. Armer, C.F., Yeoh, J.S., Li, X., Lowe, A. Electrospun vanadium-based oxides as electrode materials (2018) Journal of Power Sources, 395, pp. 414-429., 2018 Линк

1249. Hu, X., Guo, H., Peng, W., Wang, Z., Li, X., Hu, Q. Effects of Nb doping on the performance of 0.5Li2MnO3·0.5LiNi1/3Co1/3Mn1/3O2 cathode material for lithium-ion batteries (2018) Journal of Electroanalytical Chemistry, 822, pp. 57-65., 2018 Линк

1250. Shenouda, A.Y., Munichandraih, N. Synthesis and electrochemical performance of Li2VxMn1−xO3 positive electrode for lithium batteries (2018) Journal of Materials Science: Materials in Electronics, 29 (10), pp. 8167-8175., 2018 Линк

1251. Zhang, S.-J., Deng, Y.-P., Wu, Q.-H., Zhou, Y., Li, J.-T., Wu, Z.-Y., Yin, Z.-W., Lu, Y.-Q., Shen, C.-H., Huang, L., Sun, S.-G. Sodium-Alginate-

Page 80: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 80/154

Based Binders for Lithium-Rich Cathode Materials in Lithium-Ion Batteries to Suppress Voltage and Capacity Fading (2018) ChemElectroChem, 5 (9), pp. 1321-1329., 2018 Линк

1252. Yan, W., Xie, Y., Jiang, J., Sun, D., Ma, X., Lan, Z., Jin, Y. Enhanced Rate Performance of Al-Doped Li-Rich Layered Cathode Material via Nucleation and Post-solvothermal Method (2018) ACS Sustainable Chemistry and Engineering, 6 (4), pp. 4625-4632., 2018 Линк

1253. Zhang, S., Gu, H., Tang, T., Du, W., Gao, M., Liu, Y., Jian, D., Pan, H. Insight into the synergistic effect mechanism between the Li2MO3 phase and the LiMO2 phase (M  =  Ni, Co, and Mn) in Li- and Mn-rich layered oxide cathode materials (2018) Electrochimica Acta, 266, pp. 66-77., 2018 Линк

1254. Johnston-Peck, A.C., Takeuchi, S., Bharathi, K.K., Herzing, A.A., Bendersky, L.A. Domain formation in lithium-rich manganese-nickel-cobalt-oxide epitaxial thin films and implications for interpretation of electrochemical behavior (2018) Thin Solid Films, 647, pp. 40-49., 2018 Линк

1255. Sarkar, T., Prakasha, K.R., Bharadwaj, M.D., Prakash, A.S. Role of transition metals in a charge transfer mechanism and oxygen removal in Li1.17Ni0.17Mn0.5Co0.17O2: Experimental and first-principles analysis (2018) Physical Chemistry Chemical Physics, 20 (29), pp. 19606-19613., 2018 Линк

347. Stoyanova, R., Barra, A. L., Yoncheva, M., Zhecheva, E., Shinova, E., Tzvetkova, P., Simova, S.. High-frequency electron paramagnetic resonance analysis of the oxidation state and local structure of Ni and Mn Ions in Ni, Mn-Codoped LiCoO2. Inorganic Chemistry, 49, 4, 2010, ISSN:0020-1669, 1932-1941. ISI IF:4.762

Цитира се в:

1256. Babu, B., Kadam, A. N., Rao, G. T., Lee, S. W., Byon, C., & Shim, J. . Enhancement of visible-light-driven photoresponse of Mn-doped SnO2 quantum dots obtained by rapid and energy efficient synthesis. Journal of Luminescence (2018) Volume 195, pp. 283-289., 2018 Линк

348. Gentscheva, G., Stafilov, Tr., Ivanova, E.. Determination of some essential and toxic elements in herbs from Bulgaria and Macedonia using atomic spectrometry. Eurasian Journal of Analytical Chemistry, 5, 2, 2010, 104-111

Цитира се в:

1257. Onyambu ZM, Nawiri MP, Kareru P, Wanjau RN, (2018) Levels of Selected Heavy Metals in Aloe Vera Branded Herbal Creams Sold in the Kenyan Markets, Journal of Chemical and Pharmaceutical Research, 10 (1) 9-12., 2018 Линк

349. Valova, E., Georgieva, J., Armyanov, S., Avramova, I., Dille, J., Kubova, O., Delplancke-Ogletree,M.-P.. Corrosion behavior of hybrid coatings: Electroless Ni-Cu-P and sputtered TiN. Surface and Coatings Technology, 204, 16-17, 2010, ISSN:0257-8972, 2775-2781. SJR:0.96, ISI IF:1.998

Цитира се в:

1258. Buchtík, M., Kosár, P., Wasserbauer, J., Tkacz, J., Doležal, P.Characterization of electroless Ni-P coating prepared on a wrought ZE10 magnesium alloy (2018) Coatings, 8 (3), art. no. 96, ., 2018 Линк

1259. S.M.A. Shibli, K. S. Chinchu, M. Ameen Sha.Development of Nano-tetragonal Zirconia-Incorporated Ni–P Coatings for High Corrosion Resistance.(2018) Acta Metallurgica Sinica (English Letters), 2018 Линк

350. Spassova I., Velichkova N., Khristova M., Georgescu V.. NO reduction with CO on Cu-Cr and Co-Cr oxide catalysts supported on Al2O3 and Al2O3+SiO2. Reaction Kinetics Mechanism and Catalysis, 101, 2010, 321-330. ISI IF:1.108

Цитира се в:

1260. Liu, K., Yu, Q., Qin, Q., & Wang, C. (2018). Selective catalytic reduction of nitric oxide with carbon monoxide over alumina-pellet-supported catalysts in the presence of excess oxygen. Environmental technology, 39(15), 1878-1885., 2018 Линк

1261. Stoyanova, D., Georgieva, P., Avramova, I., Aleksieva, K., Marinova, D., & Mehandjiev, D. (2018). Nitric oxide (NO) decomposition on catalysts, containing oxides of lanthanum and cerium, supported on γ-alumina. Journal of Rare Earths. https://doi.org/10.1016/j.jre.2018.06.009, 2018 Линк

351. Ivanova, S., Senyshyn, A., Zhecheva, E., Tenchev, K., Stoyanova, R., Fuess, H.. Crystal structure, microstructure and reducibility of LaNixCo1-xO3 and LaFexCo1-xO3 Perovskites (0<x≤0.5). Journal of Solid State Chemistry, 183, 4, 2010, ISSN:0022-4596, 940-950. ISI IF:2.133

Цитира се в:

1262. Ávila-Neto, C. N., Oliveira, K. D., Oliveira, K. F., Arouca, A. M., Ferreira, R. A., & Hori, C. E. (2018). Interconnection between feed composition and Ni/Co ratio in (La-Ni-Co-O)-based perovskites and its effects on the stability of LPG steam reforming. Applied Catalysis A: General, 550, 184-197., 2018 Линк

1263. Bakke, I. M. B. (2018). Struktur og magnetiske egenskaper til de perovskittliknende oksidene ACo0, 5B0, 5O3 (A = Y, La, Nd; B = Ti, Fe, Ni) (Master's thesis). UNIVERSITETET I OSLO, 2018 Линк

1264. Guo, S., Puleo, F., Wang, L., Wu, H., Liotta, L.F. "La0.6Sr0.4Co0.2Fe0.79M0.01O3−δ(M  =  Ni, Pd) perovskites synthesized by Citrate-EDTA method: Oxygen vacancies effect on electrochemical properties". Advanced Powder Technology, 29 (11), pp. 2804-2812,

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page 81/154

2018, 2018 Линк

1265. Liu, Y.-X., Wang, S.-F., Hsu, Y.-F., Kai, H.-W., Jasinski, P. "Characteristics of LaCo0.4Ni0.6-xCuxO3-δceramics as a cathode material for intermediate-temperature solid oxide fuel cells". Journal of the European Ceramic Society, 38 (4), pp. 1654-1662, 2018, 2018 Линк

1266. Liu, Y.-X., Wang, S.-F., Hsu, Y.-F., Jasinski, P. "Characteristics of La0.8Sr0.2Ga0.8Mg0.2O3-Δ-supported micro-tubular solid oxide fuel cells with LaCo0.4Ni0.6-xCuxO3-Δcathodes". International Journal of Hydrogen Energy, 43 (11), pp. 5703-5713, 2018, 2018 Линк

1267. Wang, X., Han, Y., Song, X., Liu, W., Jin, Y., Liu, W., Cui, H. "An insight into the effects of transition metals on the thermal expansion of complex perovskite compounds: An experimental and density functional theory investigation". Physical Chemistry Chemical Physics, 20 (26), pp. 17781-17789, 2018, 2018 Линк

352. Vassileva, P., Detcheva, A.. Adsorption of Some Transition Metals (Cu(II), Fe(III), Cr(III) and Au(III)) Onto Lignite-Based Activated Carbons Modified by Oxidation. Adsorption Science and Technology, 28, 2010, 229-242. ISI IF:0.559

Цитира се в:

1268. Choong, C.E., Lee, G., Jang, M., Park, C.M., Ibrahim, S., One step hydrothermal synthesis of magnesium silicate impregnated palm shell waste activated carbon for copper ion removal (2018) Metals, 8 (10), art. no. 741, ., 2018

1269. Alimin, La Agusu, Ahmad, L.O., Kadidae, L.O., Ramadhan, L., Nurdin, M., Isdayanti, N., Asria, Aprilia, M.P., Hasrudin, Kinetics and Equilibrium of Fe3+Ions Adsorption on Carbon Nanofibers (2018) IOP Conference Series: Materials Science and Engineering, 367 (1), art. no. 012046., 2018

353. Georgieva, I., Kostova, I., Trendafilova, N., Rastogi, V. K., Kiefer, W.. DFT, IR, Raman and NMR study of the coordination ability of coumarin-3-carboxylic acid to Pr(III). Journal of Molecular Structure, 979, 1-3, Elsevier, 2010, 115-121. ISI IF:1.602

Цитира се в:

1270. Islas, M.S., Martínez Medina, J.J., Piro, O.E., (...), Ferrer, E.G., Williams, P.A.M., Comparisons of the spectroscopic and microbiological activities among coumarin-3-carboxylate, o-phenanthroline and zinc(II) complexes, 2018, Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy, 198, pp. 212-221., 2018 Линк

354. Rabadjieva, D, Gergulova, R, Titorenkova, R, Tepavitcharova, S, Dyulgerova, E, Balarew, C, Petrov, O. Biomimetic transformations of amorphous calcium phosphate: Kinetic and thermodynamic studies. Journal of Materials Science: Materials in Medicine, 21, 9, Springer US, 2010, ISSN:0957-4530, DOI:10.1007/s10856-010-4103-8, 2501-2509. ISI IF:2.587

Цитира се в:

1271. Maximilian Ackermann, Emad Tolba, Meik Neufurth, Shunfeng Wang, Heinz C. Schröder, Xiaohong Wang, Werner E.G. Müller, Biomimetic transformation of polyphosphate microparticles during restoration of damaged teeth, Dental Materials, 2018, 2018 Линк

355. Kovachev, S., Kovacheva, D., Aleksovska, S., Svab, E., Krezhov, K.. Structure and properties investigation of mixed oxides YCr 1-xFexO3 (0≤x≤1). AIP Conference Proceedings, 1203, 2010, ISSN:0094-243X, DOI:10.1063/1.3322418, 199-204

Цитира се в:

1272. Pal, B., Liu, X., Wen, F., Kareev, M., N'Diaye, A.T., Shafer, P., Arenholz, E., Chakhalian, J. Electronic properties of ultra-thin YCrO3 films (2018) Applied Physics Letters, 112 (25), art. no. 252901, ., 2018 Линк

356. Sachert, S.,, Polzin, S., Kostov, K., Widdra, W.. Thickness dependent vibrational and electronic properties of MnO(100) thin films grown on Pt(111). Physical Review B, 81, 19, American Physical Society, 2010, DOI:10.1103/PhysRevB.81.195424, 195424 (1)-195424 (8). ISI IF:3.736

Цитира се в:

1273. Arble, C.M., 2018. Heterogeneous small molecule interactions on surfaces probed with ambient pressure X-ray photoelectron spectroscopy (Doctoral dissertation, University of Delaware)., 2018 Линк

1274. Song, J. and Kuch, W., The Growth and Crystalline Structure of Ultrathin Mn Films on Ni (111). physica status solidi (b), 255(9), p.1800173, 2018, 2018 Линк

357. MIntcheva, N., Tanabe, M., Osakada, K., Georgieva, I., Mihaylov, Tz., Trendafilova, N.. Synthesis and characterization of a dinuclear platinum complex with silsesquioxanate ligand. Journal of Organometallic Chemistry, 695, Elsevier, 2010, 1738-1743. ISI IF:2.173

Цитира се в:

1275. Liu, N., Yu, J., Meng, Y., Liu, Y. , Hyperbranched polysiloxanes based on polyhedral oligomeric silsesquioxane cages with ultra-high molecularweight and structural tuneability, Polymers (2018) 10(5), 496., 2018 Линк

358. Radev D., Uzunov I.. Nanosized Silicon Carbide Obtained from Rice Husks. Solid State Phenomena (Book Series), 159, Trans Tech

Page 82: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 82/154

Publications, Switzerland, 2010, ISSN:1662-9779, 153-156. SJR:0.39

Цитира се в:

1276. Real C. et al. "Synthesis and characterization of SiC/Si3N4 composites from rice husks". Ceramics International, 44, 12, 2018, 14645-14651, 2018 Линк

359. Georgiev, M., Wildner, M., Marinova, D., Stoilova, D.. Preparation, crystal structure and infrared spectroscopy of the new compound Rb4Be(SeO4)2(HSeO4)2.4H2O. Solid State Sciences, 12, Elsevier, 2010, ISSN:1293-2558, DOI:doi:10.1016/j.solidstatesciences.2010.01.034, 899-905. SJR:0.639, ISI IF:1.061

Цитира се в:

1277. Langer, E.M., Walter, O., Colle, J.-Y., Bosbach, D., Alekseev, E.V., Unexpected Behavior of Np in Oxo-selenate/Oxo-selenite Systems, (2018) Inorganic Chemistry, 57 (3), pp. 1604-1613, 2018

360. Drenchev, N., Ivanova, E., Mihaylov, M., Hadjiivanov, K.. CO as an IR Probe Molecule for Characterization of Copper Ions in a Basolite C300 MOF Sample. Phys. Chem. Chem. Phys., 12, 2010, DOI:10.1039/c000949k, 6423-6427. ISI IF:4.493

Цитира се в:

1278. Kochetygov, I., Bulut, S., Asgari, M., Queen, W.L. , "Selective CO2 adsorption by a new metal-organic framework: synergy between open metal sites and a charged imidazolinium backbone", Dalton Transactions (2018) 47(31), pp. 10527-10535 [ISI], 2018 Линк

1279. Zhang, H., Huo, J., Li, F., Duan, C., Xi, H., "Rapid Synthesis of Hierarchical Porous Metal-Organic Frameworks and the Simulation of Growth", Crystal Growth and Design (2018) 18(11), pp. 6661-6669 [ISI], 2018 Линк

361. Radev D. D.. Mechanical Synthesis of Nanostructured Titanium-Nickel Alloys. Advanced Powder Technology, 21, 4, 2010, ISSN:0921-8831, DOI:10.1016/j.apt.2010.01.010, 477-482. ISI IF:2.638

Цитира се в:

1280. S. Arunkumar, P. Kumaravel, C. Velmurugan, V. Senthilkumar, Microstructures and mechanical properties of nanocrystalline NiTi intermetallics formed by mechanosynthesis, International Journal of Minerals, Metallurgy, and Materials, January 2018, Volume 25, Issue 1, pp 80–87, 2018 Линк

1281. L.P. Babu Reddy, et al., "Copper ferrite-yttrium oxide (CFYO) nanocomposite as remarkable humidity sensor". Inorganic Chemistry Communications 99, 2018, 180–188, 2018 Линк

1282. L.P.Babu Reddy, R.Megha, B.Chethan. "Role of molybdenum trioxide in enhancing the humidity sensing performance of magnesium ferrite/molybdenum trioxide composite". Inorganic Chemistry Communications Volume 98, December 2018, Pages 68-74, 2018 Линк

1283. C. Velmurugan, V. Senthilkum. "The effect of Cu addition on the morphological, structural and mechanical characteristics of nanocrystalline NiTi shape memory alloys". 2018 J. Alloys Compd., 2018 Линк

1284. Abdollah BAHADOR, Esah HAMZAH, Katsuyoshi KONDOH, Tuty ASMA ABUBAKAR, Farazila YUSOF, Junko UMEDA, Safaa N. SAUD, Mustafa K. IBRAHIM. "Microstructure and superelastic properties of free forged Ti–Ni shape-memory alloy". Transactions of Nonferrous Metals Society of China, Volume 28, Issue 3, March 2018, Pages 502–514, 2018 Линк

1285. Tosun, Gul; Kilic, Musa; Ozler, Latif; et al. "CHARACTERIZATION OF A POROUS NICKEL-TITANIUM ALLOY PRODUCED WITH SELF-PROPAGATING HIGH-TEMPERATURE SYNTHESIS, MATERIALI IN TEHNOLOGIJE Volume: 52 Issue: 4 Pages: 435-442 Published: 2018, 2018 Линк

362. Marinova, D., Georgiev, M., Stoilova, D.. Vibrational behavior of matrix-isolated ions in Tutton compounds. V. Infrared spectroscopic study of NH4+ and SO42- ions included in zinc sulfates and selenates. Solid State Sciences, 12, Elsevier, 2010, ISSN:1293-2558, DOI:doi:10.1016/j.solidstatesciences.2010.02.023, 765-769. SJR:0.639, ISI IF:1.061

Цитира се в:

1286. Stella Rani, C., Daniel Sweetlin, M., Selvarajan, P., Studies of L-methionine doped Ammonium Ferrous Sulfate single crystals grown by solution method, (2018) International Journal of Research and Analytical Reviews, 5 (3), pp. 615y-622y, 2018

363. Mihaylov, Tz., Trendafilova, N., Georgieva, I., Kostova, I.. Coordination properties of warfarin towards Pr(III) predicted from DFT and FTIR studies. Chemical Physics, 374, 1-3, Elsevier, 2010, 37-45. ISI IF:1.652

Цитира се в:

1287. Kumari, R., Nath, M., Synthesis and characterization of novel trimethyltin(IV) and tributylltin(IV) complexes of anticoagulant, WARFARIN: Potential DNA binding and plasmid cleaving agents (2018) Inorganic Chemistry Communications, 95, pp. 40-46., 2018 Линк

364. Zhecheva, E., Stoyanova, R., Ivanova, S., Nikolov, V.. On the preparation of nanosized Al2(WO4)3 by a precipitation method. Solid State Sciences, 12, 12, Elsevier, 2010, ISSN:1293-2558, DOI:10.1016/j.solidstatesciences.2010.08.018, 2010-2014. SJR:0.639, ISI IF:1.839

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page 83/154

Цитира се в:

1288. Кондратенко, Антон Игоревич; "Исследование влияния ZrW2O8 на структурно-фазовое состояние и свойства керамических композитов"; Национальный исследовательский Томский политехнический университет, Инженерная школа новых производственных технологий, Отделение материаловедения, 2018 Линк

365. Tzvetkova P., Vassileva P., Nickolov R.. Modified silica gel with 5-amino-1,3,4-thiadiazole-2-thiol for heavy metal ions removal. Journal of Porous Materials, 2010, ISI IF:1.32

Цитира се в:

1289. Omondi, B.A., Okabe, H., Hidaka, Y., Hara, K., Fabrication of poly (1, 4-dioxa-7, 12-diazacyclotetradecane-8, 11-dione) macrocyclic functionalized hydrogel for high selective adsorption of Cr, Cu and Ni, (2018) Reactive and Functional Polymers, 130, pp. 90-97., 2018

1290. Li, C., Ma, C., Huang, S., Min, C., Huang, Q., Sun, X., Advances in the Synthesis and Application of 1, 3, 4-Thiadiazole Ring-containing Polymers, (2018) Cailiao Daobao/Materials Review, 32 (6), pp. 1891-1902., 2018

1291. Mir, N., Jalilian, S., Karimi, P., Nejati-Yazdinejad, M., Khammarnia, S., 1, 3, 4-Thiadiazol derivative functionalized- Fe3O4 SiO2 nanocomposites as a fluorescent probe for detection of Hg2+ in water samples, (2018) RSC Advances, 8 (39), pp. 21745-21753., 2018

366. Georgieva, I., Aquino, A.J.A., Trendafilova, N., Santos, P. S., Lischka,. Solvatochromic and ionochromic effects of iron(II)bis(1,10-phenanthroline)-dicyano: A theoretical study. Inorganic Chemistry, 49, 4, ACS, 2010, DOI:10.1021/ic9020299, 1634-1646. ISI IF:4.762

Цитира се в:

1292. Kjær, K.S., Kunnus, K., Harlang, T.C.B., (...), Cordones, A.A., Gaffney, K.J., Solvent control of charge transfer excited state relaxation pathways in [Fe(2, 2′-bipyridine)(CN)4]2-, 2018, Physical Chemistry Chemical Physics, 20(6), pp. 4238-4249., 2018 Линк

367. Koleva, V., Stoyanova, R., Zhecheva, E.. Nano-crystalline LiMnPO4 prepared by a new phosphate-formate precursor method. Materials Chemistry and Physics, 12, 1-2, 2010, ISSN:0254-0584, 370-377. ISI IF:2.259

Цитира се в:

1293. Priyadharsini, N., Shanmugavani, A., Surendran, S., Senthilkumar, B., Vasylechko, L., Kalai Selvan, R. Improved electrochemical performances of LiMnPO4 synthesized by a hydrothermal method for Li-ion supercapatteries (2018) Journal of Materials Science: Materials in Electronics, 29 (21), pp. 18553-18565., 2018 Линк

1294. Mauger, A., & Julien, C. (2018). Olivine Positive Electrodes for Li-Ion Batteries: Status and Perspectives. Batteries, 4(3), 39, 2018

1295. Li, J., Luo, S. H., Wang, Q., Yan, S., Feng, J., Liu, H., ... & He, P. (2018). Facile synthesis of carbon-LiMnPO4 nanorods with hierarchical architecture as a cathode for high-performance Li-ion batteries. Electrochimica Acta, 289, 415-421, 2018

368. Stoyanova, R., Carlier, D., Sendova-Vassileva, M., Yoncheva, M., Zhecheva, E., Nihtianova, D., Delmas, C.. Stabilization of over-stoichiometric Mn4+ in layered Na2/3MnO2. Journal of Solid State Chemistry, 183, 6, 2010, ISSN:0022-4596, 1372-1379. ISI IF:2.133

Цитира се в:

1296. Wang, T.; Su, D.; Shanmukaraj, D.; Rojo, T.; Armand, M.; "Electrode Materials for Sodium-Ion Batteries: Considerations on Crystal Structures and Sodium Storage Mechanisms" Electrochemical Energy Reviews 1 (2018) 200–237 ., 2018 Линк

1297. Sun, Y.; Guo, S.; Zhou, H.; "Exploration of Advanced Electrode Materials for Rechargeable Sodium‐Ion Batteries" Advanced Energy Materials, 1800212, 2018 Линк

1298. Kubota, K., Kumakura, S., Yoda, Y., Kuroki, K., Komaba, S. "Electrochemistry and Solid-State Chemistry of NaMeO2 (Me = 3d Transition Metals)". Advanced Energy Materials, 8 (17), art. no. 1703415, 2018, 2018 Линк

1299. Zhang, C., Gao, R., Zheng, L., Hao, Y., Liu, X. "New Insights into the Roles of Mg in Improving the Rate Capability and Cycling Stability of O3-NaMn0.48Ni0.2Fe0.3Mg0.02O2 for Sodium-Ion Batteries". ACS Applied Materials and Interfaces, 10 (13), pp. 10819-10827, 2018, 2018 Линк

1300. Kubota, K., Dahbi, M., Hosaka, T., Kumakura, S., Komaba, S. "Towards K-Ion and Na-Ion Batteries as “Beyond Li-Ion”. Chemical Record, 18 (4), pp. 459-479, 2018, 2018 Линк

1301. Wang, P.-F., You, Y., Yin, Y.-X., Guo, Y.-G. "Layered Oxide Cathodes for Sodium-Ion Batteries: Phase Transition, Air Stability, and Performance". Advanced Energy Materials, 8 (8), art. no. 1701912, 2018, 2018 Линк

1302. Maitra, U., House, R.A., Somerville, J.W., Tapia-Ruiz, N., Lozano, J.G., Guerrini, N., Hao, R., Luo, K., Jin, L., Pérez-Osorio, M.A., Massel, F., Pickup, D.M., Ramos, S., Lu, X., McNally, D.E., Chadwick, A.V., Giustino, F., Schmitt, T., Duda, L.C., Roberts, M.R., Bruce, P.G. "Oxygen redox chemistry without excess alkali-metal ions in Na 2/3 [Mg 0.28 Mn 0.72 ]O 2". Nature Chemistry, 10 (3), pp. 288-295, 2018, 2018 Линк

1303. Zhou, F., Gao, T., Luo, M., Li, H. "Preferential electrosorption of anions by C/Na0.7MnO2 asymmetrical electrodes". Separation and Purification Technology, 191, pp. 322-327, 2018, 2018 Линк

1304. Choi, J.U., Park, Y.J., Jo, J.H., Kuo, L.-Y., Kaghazchi, P., Myung, S.-T. "Unraveling the Role of Earth-Abundant Fe in the Suppression of Jahn-Teller Distortion of P′2-Type Na2/3MnO2: Experimental and Theoretical Studies". ACS Applied Materials and Interfaces,

Page 84: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 84/154

2018, 2018 Линк

1305. Zhao, C., Wang, Q., Lu, Y., Jiang, L., Liu, L., Yu, X., Chen, L., Li, B., Hu, Y.-S. "Decreasing transition metal triggered oxygen redox activity in Na-deficient oxides". Energy Storage Materials, 2018, 2018 Линк

1306. Hemalatha, K., Jayakumar, M., Prakash, A.S. "Influence of the manganese and cobalt content on the electrochemical performance of P2-Na0.67Mn:XCo1- xO2 cathodes for sodium-ion batteries". Dalton Transactions, 47 (4), pp. 1223-1232, 2018, 2018 Линк

369. Quétel, C., Vassileva, E., Petrov. I., Chakarova, K., Hadjiivanov, K.. First results on Fe solid-phase extraction from coastal seawater using anatase TiO2 nano-particles. Analytical and Bioanalytical Chemistry, 396, 2010, DOI:10.1007/s00216-009-3436-y, 2349-2361. ISI IF:3.841

Цитира се в:

1307. S. Febriani, T. Yolanda, V. Arianti and R. Zainul, A Review Solid Stated: Principles and Methode, 2018, doi: 10.31227/osf.io/7us4x [Google], 2018 Линк

1308. R. Sharma, D. Kumar, Nanoadsorbents: in “Nanotechnology for Sustainable Water Resources”, (A. K. Mishra and C. M. Hussain, Eds.), Scrivener Publishing, Wiley, 2018, pp. 371-405. ISBN: 978-1-119-32359-4, 2018 Линк

370. Krajewski WK, Buras J, Zurakowski M, Greer AL, Mancheva MN, Haberl K, Schumacher P. Development of environmentally friendly cast alloys. High-zinc Al alloys. Archives of Materials Science and Engineering, 2010, 120-124. SJR:0.2, ISI IF:0.57

Цитира се в:

1309. Hwang, Injoo, Zeyi Guan, and Xiaochun Li. "Scalable Manufacturing of Zinc-Tungsten Carbide Nanocomposites." Procedia Manufacturing 26 (2018): 140-145., 2018

1310. Buras, Janusz, et al. "The efficiency analysis of grain refinement in high-zinc aluminium alloys with Ti-containing master alloy." International Journal of Cast Metals Research 31.6 (2018): 352-359., 2018

371. Koleva, V., Zhecheva, E., Stoyanova, R.. Ordered olivine-type lithium-cobalt and lithium-nickel phosphates prepared by a new precursor method. European Journal of Inorganic Chemistry, 26, 2010, ISSN:1434-1948, 4091-4099. ISI IF:2.942

Цитира се в:

1311. Priyadharsini, N., Shanmugavani, A., Surendran, S., Senthilkumar, B., Vasylechko, L., Kalai Selvan, R.Improved electrochemical performances of LiMnPO4 synthesized by a hydrothermal method for Li-ion supercapatteries(2018) Journal of Materials Science: Materials in Electronics, 29 (21), pp. 18553-18565., 2018 Линк

1312. Ludwig, J., Nilges, T. Recent progress and developments in lithium cobalt phosphate chemistry- Syntheses, polymorphism and properties (2018) Journal of Power Sources, 382, pp. 101-115., 2018 Линк

1313. Zhang, M., Garcia-Araez, N., Hector, A.L. Understanding and development of olivine LiCoPO4 cathode materials for lithium-ion batteries (2018) Journal of Materials Chemistry A, 6 (30), pp. 14483-14517., 2018 Линк

372. Angelova D., Uzunova S., Uzunov I., Staykov S.. Preparation of a Biogenic Carbon/Silica Based Adsorbent for Removal of Petroleum Products Spills from Aqueous Medium. J Chem Technol Metall, 45, 1, University of Chemical Technology and Metallurgy, Sofia, 2010, ISSN:1311-7629, 25-32. SJR:0.331

Цитира се в:

1314. Li M. et al. "Preparation of sponge-reinforced silica aerogels from tetraethoxysilane and methyltrimethoxysilane for oil/water separation". Materials Research Express, 5, 4, 2018, 2018

373. Mihaylov, M., Ivanova, E., Drenchev, N., Hadjiivanov, K.. Coordination Chemistry of Fe2+ Ions in Fe,H–ZSM-5 Zeolite as Revealed by the IR Spectra of Adsorbed CO and NO. J. Phys. Chem., C, 114, 2, American Chemical Society, 2010, DOI:10.1021/jp906213a, 1004-1014. ISI IF:4.772

Цитира се в:

1315. M. Shahami, K.M. Dooley and D.F. Shantz, Steam-assisted crystallized Fe-ZSM-5 materials and their unprecedented activity in benzene hydroxylation to phenol using hydrogen peroxide, J. Catal., 368 (2018) 354 [ISI]., 2018 Линк

1316. Mosallanejad, S., Dlugogorski, B.Z., Kennedy, E.M., Stockenhuber, M., "On the Chemistry of Iron Oxide Supported on γ-Alumina and Silica Catalysts", ACS Omega (2018), 3(5), pp. 5362-5374, 2018 Линк

374. Atanasova, G., Guergova, D., Stoychev, D., Naydenov, A., Stefanov, P.. Preparation and characterization of catalytic thin films for exhaust emission control. Reaction Kinetics, Mechanisms and Catalysis, 101, 2, 2010, DOI:10.1007/s11144-010-0228-5, 397-406. ISI IF:1.515

Цитира се в:

1317. Todorova, S.Zh., Kolev, H.G., Shopska, M.G., (...), Holgado, J.P., Caballero, A., Silver-based catalysts for preferential CO oxidation in hydrogen-rich gases (PROX), 2018 Bulgarian Chemical Communications 50, pp. 17-23, 2018

Page 85: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

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375. Ivanova, E., Mihaylov, M., Hadjiivanov, K., Blasin-Aube, V., Marie, O., Plesniar, A., Daturi, M.. Evidencing Three Distinct FeII Sites in Fe-FER Zeolites by Using CO and NO as Complementary IR Probes. Appl. Catal., B, 93, 2010, DOI:10.1016/j.apcatb.2009.10.006, 325-338. SJR:2.583, ISI IF:7.435

Цитира се в:

1318. S. Najafishirtari, C. Guglieri, S. Marras, A. Scarpellini, R. Brescia, M. Prato, G. Righi, A. Franchini, R. Magri, L. Manna and M. Colombo, Appl. Catal. B, 237 (2018) 753 [ISI]., 2018

376. Dikovska, A.Og., Atanasova, G.B., Nedyalkov, N.N., Stefanov, P.K., Atanasov, P.A., Karakoleva, E.I., Andreev, A.Ts.. Optical sensing of ammonia using ZnO nanostructure grown on a side-polished optical-fiber. Sensors and Actuators B, 146, Elsevier, 2010, ISSN:09254005, DOI:10.1016/j.snb.2010.02.018, 331-336. SJR:1.155, ISI IF:4.097

Цитира се в:

1319. Parvinder Kaur, Mangalpady Rajaram Shenoy, Highly Sensitive Refractive Index Sensor Based on Silicon Nitride Strip Waveguide Directional Coupler, IEEE Sensors Letters ( Volume: 2 , Issue: 1 , March 2018, , 2018

1320. Chen, Kevin P. High Spatial Resolution Distributed Fiber-Optic Sensor Networks for Reactors and Fuel Cycle Systems. United States: N. p., 2018. Web. doi:10.2172/1475174., 2018

1321. Huey-Ing Chen, Cheng-Yu Hsiao, Wei-Cheng Chen, Ching-Hong Chang, Tzu-Chieh Chou, I-Ping Liu, Kun-Wei Lin, Wen-Chau Liu, Characteristics of a Pt/NiO thin film-based ammonia gas sensor, Sensors and Actuators B: Chemical, Volume 256, March 2018, Pages 962-967, 2018

1322. Liu, D., Kumar, R., Wei, F., (...), Semenova, Y., Wu, Q., High sensitivity optical fiber sensors for simultaneous measurement of methanol and ethanol, 2018 Sensors and Actuators, B: Chemical 271, pp. 1-8, 2018

1323. Zhu, Y., Fu, H., Ding, J., (...), Zhang, J., Liu, Y., Fabrication of three-dimensional zinc oxide nanoflowers for high-sensitivity fiber-optic ammonia gas sensors, 2018 Applied Optics, 57(27), pp. 7924-7930, 2018

1324. Zhang, W., Li, J.-Y., Xie, J., High sensitivity refractive index sensor based on metamaterial absorber, 2018 Progress In Electromagnetics Research M, 71, pp. 107-115, 2018

1325. Lee, S., Kim, J.T., Song, Y.-W., Graphene-Incorporated Soft Capacitors for Mechanically Adjustable Electro-Optic Modulators, ACS Appl. Mater. Interfaces 2018, 10, 47, 40781-40788, 2018

377. Sendova-Vassileva, M., Stoyanova, R., Carlier, D., Yoncheva, M., Zhecheva, E., Delmas, C.. Raman Spectroscopy Study on Na2/3Mn1-xFexO2 Oxides. Solid State Sciences, 74, Scientific.Net, 2010, ISSN:1662-0356, DOI:10.4028/www.scientific.net/AST.74.60, 60-65. ISI IF:1.742

Цитира се в:

1326. Thorne, J.S.; Zheng, L.; Lee, C.L.D.; Dunlap, R.A.; Obrovac, M.N. "Synthesis and Electrochemistry of O3-type NaFeO2–NaCo0.5Ni0.5O2 Solid Solutions for Na-Ion Positive Electrodes" ACS Appl. Mater. Interfaces, 2018, 10 (26), pp 22013–22022, 2018 Линк

378. Stambolova, I., Blaskov, V., Shipochka, M., Vassilev, S., Dushkin, C., Dimitriev, Y.. Porous photocatalytically active ZnO films obtained from ethylcellulose modified solutions by spray pyrolysis. Materials Chemistry and Physics, 121, 2010, ISSN:0254-0584, 447-452. SJR:0.841, ISI IF:2.072

Цитира се в:

1327. Marinov, G., Strijkova, V., Vasileva, M., (...), Malinowski, N., Babeva, T., Effect of Substrate Temperature on the Microstructural, Morphological, and Optical Properties of Electrosprayed ZnO Thin Films, Advances in Condensed Matter Physics 2018, 8957507, 2018 Линк

1328. Yu, Zexin, et al. "Solution precursor plasma spray process as an alternative rapid one-step route for the development of hierarchical ZnO films for improved photocatalytic degradation." Ceramics International 44(2) (2018) 2085-2092., 2018 Линк

379. Stoyanova, E., Guergova, D., Stoychev, D., Avramova, I., Stefanov, P.. Passivity of OC404 steel modified electrochemically with CeO2-Ce2O3 layers in sulfuric acid media. Electrochimica Acta, 55, 5, Elsevier Limited, 2010, ISSN:0013-4686, 1725-1732. SJR:1.391, ISI IF:4.86

Цитира се в:

1329. Pancrecious, J.K., Deepa, J.P., Jayan, V., Bill, U.S., Rajan, T.P.D., Pai, B.C.Nanoceria induced grain refinement in electroless Ni-B-CeO2 composite coating for enhanced wear and corrosion resistance of Aluminium alloy (2018) Surface and Coatings Technology, 356, pp. 29-37., 2018 Линк

380. Panayotov, D., S. Burrows, Mihaylov, M., Hadjiivanov , K., B.M. Tissue, J.R. Morris. Effect of Methanol on the Lewis Acidity of Rutile TiO2 Nanoparticles Probed through Vibrational Spectroscopy of Coadsorbed CO. Langmuir, 26, 11, American Chemical Society, 2010, DOI:10.1021/la100861n, 8106-8112. ISI IF:4.457

Цитира се в:

Page 86: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

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1330. Domenico, J.; Foster, M. E.; Spoerke, E. D.; Allendorf, M. D.; Sohlberg, K., "Effect of Solvent and Substrate on the Surface Binding Mode of Carboxylate-Functionalized Aromatic Molecules". The Journal of Physical Chemistry C 2018, 122 (20), 10846-10856; DOI: 10.1021/acs.jpcc.8b01526, 2018 Линк

381. Panchev, I., Slavov, A., Nikolova, K., Kovacheva, D.. On the water-sorption properties of pectin. Food Hydrocolloids, 24, 8, 2010, ISSN:0268-005X, DOI:10.1016/j.foodhyd.2010.04.002, 763-769. ISI IF:4.09

Цитира се в:

1331. Torres, María D., Francisco Chenlo, and Ramón Moreira. "Structural features and water sorption isotherms of carrageenans: A prediction model for hybrid carrageenans." Carbohydrate Polymers 180 (2018): 72-80., 2018 Линк

1332. Klinchongkon, Khwanjai, Pramote Khuwijitjaru, and Shuji Adachi. "Properties of subcritical water-hydrolyzed passion fruit (Passiflora edulis) pectin." Food Hydrocolloids 74 (2018): 72-77., 2018 Линк

1333. Rangelova, N., Aleksandrov, L., Nenkova, S. Synthesis and characterization of pectin/SiO2 hybrid materials (2018) Journal of Sol-Gel Science and Technology, 85 (2), pp. 330-339., 2018 Линк

1334. Einhorn-Stoll, U. Pectin-water interactions in foods – From powder to gel (2018) Food Hydrocolloids, 78, pp. 109-119., 2018 Линк

1335. La Cava, E.L., Gerbino, E., Sgroppo, S.C., Gómez-Zavaglia, A. Characterization of Pectins Extracted from Different Varieties of Pink/Red and White Grapefruits [Citrus Paradisi (Macf.)] by Thermal Treatment and Thermosonication (2018) Journal of Food Science, 83 (6), pp. 1613-1621., 2018 Линк

1336. do Nascimento Oliveira, A., de Almeida Paula, D., Basílio de Oliveira, E., Henriques Saraiva, S., Stringheta, P.C., Mota Ramos, A. Optimization of pectin extraction from Ubá mango peel through surface response methodology (2018) International Journal of Biological Macromolecules, 113, pp. 395-402., 2018 Линк

1337. Pancerz, Michał, et al. "Colligative and hydrodynamic properties of aqueous solutions of pectin from cornelian cherry and commercial apple pectin." Food Hydrocolloids (2018)., 2018 Линк

2011

382. Aleksandrov, L., Komatsu, T., Iordanova, R., Dimitriev, Y.. Raman spectroscopic study of structure of WO3-La2O3-B2O3 glasses with no color and crystallization of LaBWO6. Optical Materials, 43, 1, 2011, ISSN:09253467, DOI:10.1016/j.optmat.2011.08.002, 201-206. ISI IF:1.981

Цитира се в:

1338. Li, B., X. Huang, H.Guo, and Y. Zeng. “Energy transfer and tunable photoluminescence of LaBWO6:Tb3+, Eu3+ phosphors for near-UV white LEDs”. Dyes and Pigments 150 (2018) 67., 2018 Линк

1339. Sayyed, M.I., M.G. Dong, H.O. Tekin, G. Lakshminarayana, and M.A. Mahdi. “Comparative investigations of gamma and neutron radiation shielding parameters for different borate and tellurite glass systems using WinXCom program and MCNPX code”. Materials Chemistry and Physics Volume 215 (2018): 183., 2018 Линк

383. Donkova, B., Vasileva, P., Nihtianova, D., Velichkova, N., Stefanov, P., Mehandjiev, D.. Synthesis, characterization, and catalytic application of Au/ZnO nanocomposites prepared by coprecipitation. Journal of Materials Science, 46, 22, Springer, 2011, ISSN:00222461, DOI:10.1007/s10853-011-5503-y, 7134-7143. SJR:0.836, ISI IF:2.302

Цитира се в:

1340. Machín, A., Cotto, M., Duconge, J., Arango, J.C., Morant, C., Pinilla, S., Soto-Vázquez, L., Resto, E., Márquez, F. Hydrogen production via water splitting using different Au ZnO catalysts under UV–vis irradiation Journal of Photochemistry and Photobiology A: Chemistry, 353, pp. 385-394.(2018), 2018 Линк

1341. Matamoros-Ambrocio, M., De Lourdes Ruiz-Peralta, M., Chigo-Anota, E., García-Serrano, J., Pérez-Centeno, A., Sánchez-Cantú, M., Rubio-Rosas, E., Escobedo-Morales, A. A comparative study of gold impregnation methods for obtaining metal/semiconductor nanophotocatalysts: Direct turkevich, inverse turkevich, and progressive heating methods Catalysts, 8 (4), art. no. 161. (2018), 2018 Линк

1342. Vaiano, V., Matarangolo, M., Murcia, J.J., Rojas, H., Navío, J.A., Hidalgo, M.C. Enhanced photocatalytic removal of phenol from aqueous solutions using ZnO modified with Ag Applied Catalysis B: Environmental, 225, pp. 197-206, (2018), 2018 Линк

1343. Razavipanah, I., Alipour, E., Deiminiat, B., Rounaghi, G.H. A novel electrochemical imprinted sensor for ultrasensitive detection of the new psychoactive substance “Mephedrone” Biosensors and Bioelectronics, 119, pp. 163-169, (2018), 2018 Линк

384. Koleva, V., Zhecheva, E., Stoyanova, R.. Facile synthesis of LiMnPO4 olivines with a plate-like morphology from a dittmarite-type KMnPO4·H2O precursor. Dalton Transactions, 40, 28, 2011, ISSN:1477-9226, 7385-7394. ISI IF:4.197

Цитира се в:

1344. El Khalfaouy, R., Elabed, A., Addaou, A., Laajeb, A., & Lahsini, A. Synthesis and Characterization of LiMnPO4 Cathode Material via Dittmarite-Type NH4MnPO4.H2O as an Intermediate Compound. Arabian Journal for Science and Engineering, 1-7, 2018

Page 87: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 87/154

1345. Borges, R., Baika, L. M., Grassi, M. T., & Wypych, F. (2018). Mechanochemical conversion of chrysotile/K 2 HPO 4 mixtures into potential sustainable and environmentally friendly slow-release fertilizers. Journal of Environmental Management, 206, 962-970., 2018 Линк

385. Nihtianova, D., Velichkova, N., Nikolova, R., Koseva, I., Yordanova, A., Nikolov, V.. Characterization of nanosized Al2(WO4)3. Materials Research Bulletin, 46, Elsevier, 2011, ISSN:0025-5408, DOI:10.1016/j.materresbull.2011.06.038, 2125-2130. SJR:0.74, ISI IF:2.288

Цитира се в:

1346. Mahnicka-Goremikina, Ludmila, Ruta Svinka, and Visvaldis Svinka. "Influence of ZrO 2 and WO 3 doping additives on the thermal properties of porous mullite ceramics." Ceramics International (2018)., 2018 Линк

1347. Кондратенко, Антон Игоревич. "Исследование влияния ZrW2O8 на структурно-фазовое состояние и свойства керамических композитов." (2018)., 2018 Линк

386. Aleksandrov, L., Komatsu, T., Iordanova, R., Dimitriev, Y.. Structure study of MoO3-ZnO-B2O3 glasses by Raman spectroscopy and formation of α-ZnMoO4 nanocrystals. Optical Materials, 33, 6, elsevier, 2011, ISSN:09253467, DOI:10.1016/j.optmat.2011.01.003, 839-845. ISI IF:1.981

Цитира се в:

1348. Reddy, B.J., P. Vickraman, and A.S. Justin, “Investigation of novel zinc molybdate–graphene nanocomposite for supercapacitor applications”. Applied Physics A 124.6 (2018): 409., 2018

1349. Sayyed, M.I., M.G. Dong, H.O. Tekin, G. Lakshminarayana, and M.A. Mahdi. “Comparative investigations of gamma and neutron radiation shielding parameters for different borate and tellurite glass systems using WinXCom program and MCNPX code”. Materials Chemistry and Physics 215 (2018): 183., 2018 Линк

1350. Kindrat, I.I., B.V. Padlyak. “Luminescence properties and quantum efficiency of the Eu-doped borate glasses”. Optical Materials 77 (2018): 93., 2018 Линк

1351. Kindrat, I.I., B.V. Padlyak, B. Kukliński, A. Drzewiecki, and V.T. Adamiv. “Enhancement of the Eu3+ luminescence in Li2B4O7 glasses co-doped with Eu and Ag”. Journal of Luminescence 204 (2018):122., 2018 Линк

1352. Gao, Y.-P., K.-J. Huang, Ch. X. Zhang, Sh-Sh. Song, and X. Wu. “High-performance symmetric supercapacitor based on flower-like zinc molybdate”. Journal of Alloys and Compounds 731 (2018) 1151., 2018 Линк

1353. Amanulla, A.M., S. K. J. Shahina, R. Sundaram, C. M. Magdalane, K. Kaviyarasu, D. Letsholathebe, S.B. Mohamed, J. Kennedy, M.Maaza. Antibacterial, magnetic, optical and humidity sensor studies of β-CoMoO4 - Co3O4 nanocomposites and its synthesis and characterization. Journal of Photochemistry and Photobiology B: Biology 183 (2018): 233., 2018 Линк

387. Angelova D., Uzunov I., Uzunova S., Gigova A., Minchev L.. Kinetics of oil and oil products adsorption by carbonized rice husks. Chem Eng J, 172, Elsevier, 2011, ISSN:1385-8947, 306-311. SJR:1.86, ISI IF:6.735

Цитира се в:

1354. Chengua Yu et al. "Controlling porosity and density of nanocellulose aerogels for superhydrophobic light materials". Tappi Journal (2018) , 17(03):145-153, 2018

1355. Kharlyamov, D. A.et al. "The study of sorption activity by native and modified fruit shells of Wheat, Oats and Barley in relation to Bright Green Anionic Dye". DILEMAS CONTEMPORANEOS-EDUCACION POLITICA Y VALORES, 6, Special Issue: SI, Article Number: 68 (2018), 2018

1356. Pauzan, A. S., Ahad, N. " Biomass Modification Using Cationic Surfactant Cetyltrimethylammonium Bromide (CTAB) to Remove Palm-Based Cooking Oil". Journal of Chemistry, 2018, 1–7. doi:10.1155/2018/5059791, 2018

1357. Z. Wang et al., Preparation and characterization of modified rice husks by biological delignification and acetylation for oil spill cleanup, 2018, Environmental Technology, DOI: 10.1080/09593330.2018.1552725, 2018

1358. Hoang P. et al. "The efficient lignocellulose-based sorbent for oil spill treatment from polyurethane and agricultural residue of Vietnam". Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 40 , 3, 2018, 312-319, 2018

1359. Doshi B. et al. "A review of bio-based materials for oil spill treatment". Water Research, 135, 2018, 262-277, 2018

1360. T. Paulauskiene T. "Ecologically friendly ways to clean up oil spills in harbor water areas: crude oil and diesel sorption behavior of natural sorbents". Environmental Science and Pollution Research, 25, 10, 2018, 9981–9991, 2018

1361. Pang D. et al. "Study on Bio-modified Corn Straw Treating Oil Spilled Polluted Water Body". Journal of Agro-Environment Science , 37, (2), 2018, 309-315, 2018

1362. Li Y. et al. "Preparation of corn straw based spongy aerogel for spillage oil capture". Korean Journal of Chemical Engineering, 35, 5, 2018, 1119–1127, 2018

1363. P. Narayanan P. et al. "Theoretical and experimental investigation on the removal of oil spill by selective sorbents". Journal of Industrial and Engineering Chemistry, 63(25), 2018, 1-11, 2018

1364. Xu Y. et al. "Preparation of a new superhydrophobic/superoleophilic corn straw fiber used as an oil absorbent for selective absorption of oil from water". Bioresources and Bioprocessing, 2018, 5:8, 2018

1365. Shahid S. "Fibers-based Porous Structures for Oil Absorption Applications". Master Thesis, University of Waterloo, Faculty of

Page 88: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 88/154

Engineering; 2018-01-18, http://hdl.handle.net/10012/12887, 2018

1366. Zhang Y. et al. "Study on immobilization of marine oil-degrading bacteria by carrier of algae materials". World Journal of Microbiology and Biotechnology, 2018, 34(6):70, 2018

1367. Covaliu C. et al. "Synthesis and Technological Innovation of Applying Oxide Nanomaterials in Wastewater Treatment by Flotation". 2018, Proceedings of the IOP Conf. Ser.: Mater. Sci. Eng.374012062, 2018

1368. Liao W., Wang Yu-Z. "Cellulose-Based Absorbents for Oil Contaminant Removal". In book: "Cellulose-Based Superabsorbent Hydrogels". 2018; DOI:10.1007/978-3-319-76573-0_31-1, 2018

1369. Ifelebuegu A. et al. "Facile Fabrication of Recyclable, Superhydrophobic, and Oleophilic Sorbent from Waste Cigarette Filters for the Sequestration of Oil Pollutants from an Aqueous Environment". 2018, Processes 6(9):140, 2018

1370. Sidiras D. "Modified Biomass for Pollution Cleaning Under the Frames of Biorefinery and Sustainable Circular Bioeconomy". Proceeding of the 4th World Congress on Mechanical, Chemical, and Material Engineering, 2018 DOI:10.11159/iccpe18.107, 2018

1371. Ren X. et al. "Improved interfacial floatability of superhydrophobic and compressive S, N co-doped graphene aerogel by electrostatic spraying for highly efficient organic pollutants recovery from water". Applied Surface Science, 457, 2018, 780, 2018

1372. Li Z. et al. "Superhydrophobic/Superoleophilic Polycarbonate/Carbon Nanotubes Porous Monolith for Selective Oil Adsorption from Water". ACS Sustainable Chem. Eng.; DOI: 10.1021/acssuschemeng.8b01637, 2018, 2018

1373. Peng X. et al. "Optimization of preparation of monolithic carbon foam from rice husk char for benzene leakage emergency". Environmental Science and Pollution Research, 2018, 25, 26, 26046–26058, 2018

1374. Dan P. et al. "Study on Biologically Modified Corn Straw Treating Oil Spilled Water Body". Journal of Agro-Environment Science, 2018, 37(2): 309-315, 2018

1375. Priyanka M., Saravanakumar M. "Ultrahigh adsorption capacity of starch derived zinc based carbon foam for adsorption of toxic dyes and its preliminary investigation on oil-water separation". Journal of Cleaner Production, 197, 1, 2018, 511-524, 2018

1376. El Shahawy A., Heika G. "Organic pollutants removal from oily wastewater using clean technology economically, friendly biosorbent (Phragmites australis)". Ecological Engineering, 122, 2018, 207-218, 2018

1377. Lian J. et al. "Konjac Glucomannan Derived Carbon Aerogels for Multifunctional Applications". Nano brief reports and reviews, 2018; DOI:10.1142/S1793292018501138, 2018

1378. Choi Hee-J. "Agricultural bio-waste for adsorptive removal of crude oil in aqueous solution". Journal of Material Cycles and Waste Management, 2018; DOI: 10.1007/s10163-018-0797-3, 2018

1379. Vidal R., Moraes J. "Removal of organic pollutants from wastewater using chitosan: a literature review". International Journal of Environmental Science and Technology, 2018; DOI:10.1007/s13762-018-2061-8, 2018

388. Aleksandrov, L., Komatsu, T., Iordanova, R., Dimitriev, Y.. Study of molybdenum coordination state and crystallization behavior in MoO3-La2O3-B2O3 glasses by Raman apectroscopy. Journal of Physics and Chemistry of Solids, 72, 4, elsevier, 2011, ISSN:00223697, DOI:10.1016/j.jpcs.2011.01.004, 263-268. ISI IF:1.853

Цитира се в:

1380. Kaewjaeng, S., J. Kaewkhao, N. Chanthima, Y. Ruangtawep, W. Klysubun, S. Kothan, and H. J. Kim. “XANES and luminescence studies of M2 O3 -CaO-SiO2 -B2 O3 (M2 O3 = Y2 O3 and La2 O3 ) glasses doped with Dy3+ ions”. Key Engineering Materials 780 (2018): 37., 2018 Линк

1381. Patil, D. S., M. Konale, M. Gabel, O. K.Neill, J. V.Crum, A. Goel, M. C.Stennett, N. C.Hyatt, and J. S.McCloy. “Impact of rare earth ion size on the phase evolution of MoO3-containing aluminoborosilicate glass-ceramics”. Journal of Nuclear Materials 510 (2018) 539., 2018 Линк

1382. Brehault, A., D. Patil, H. Kamat, R. E Youngman, L. M Thirion, J.C. Mauro, C. Corkhill, J. S.McCloy, and A. Goel. “Compositional Dependence of Solubility/Retention of Molybdenum Oxides in Aluminoborosilicate-Based Model Nuclear Waste Glasses”. J. Phys. Chem. B 122.5 (2018) 1714., 2018 Линк

389. Chakarova, K., Mihaylov, M., Ivanova, S., Centeno, M. A., Hadjiivanov, K.. Well defined negatively charged gold carbonyls on Au/SiO2. Journal of Physical Chemistry C, 115, 2011, DOI:10.1021/jp2070562, 21273-21282. ISI IF:4.805

Цитира се в:

1383. Y Tan, XY Liu, L Li, L Kang, A Wang, T Zhang, "Effects of divalent metal ions of hydrotalcites on catalytic behavior of supported gold nanocatalysts for chemoselective hydrogenation of 3-nitrostyrene", J. Catal., 364 (2018) 174-182., 2018 Линк

1384. S. Cattaneo, S. J. Freakley, D. J. Morgan, M. Sankar, N. Dimitratos, G. J. Hutchings, "Cinnamaldehyde hydrogenation using Au-Pd catalysts prepared by sol immobilisation", Catal. Sci. Technol., 8 (2018) 1677-1685., 2018 Линк

1385. V. Ulrich, C. Froese, B. Moroz, P. Pyrjaev, E. Gerasimov, I. Sinev, B. Roldan Cuenya, M. Muhler, V. Bukhtiyarov, W. Grünert, "Three-way catalysis with supported gold catalysts: Poisoning effects of hydrocarbons", Appl. Catal. B, 237 (2018) 1021-1032., 2018 Линк

1386. F. Zaera, "Gold-Titania Catalysts for Low-Temperature Oxidation and Water Splitting", Topics in Catalysis, 61 (2018) 336-347., 2018 Линк

Page 89: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 89/154

390. Mihaylov, M., Lagunov, O., Ivanova, E., Hadjiivanov, K.. Nature of the Polycarbonyl Species on Ru/ZrO2: Re-assignment of Some Carbonyl Bands. J. Phys. Chem., C, 115, 2011, DOI:10.1021/jp203944c, 13860-13867. ISI IF:4.772

Цитира се в:

1387. H.V. Thang, H.S. Tosoni, L. Fang, P. Bruijnincx and G. Pacchioni, Nature of Sintering-Resistant, Single-Atom Ru Species Dispersed on Zirconia-Based Catalysts: A DFT and FTIR Study of CO Adsorption, ChemCatChem, 10 (2018) 2634 [ISI]., 2018 Линк

1388. F. Liu, Support Stability and Strong Metal-Support Effects in Catalysis: From Nanoparticles to Single Atoms, Ph. D. Thesis, Utrecht University, The Netherlands 2018 [GS]., 2018

1389. G. Lan, Y. Zhou, H. Shen, H. Tang, Y. Li, Formation mechanism of highly dispersed semi-embedded ruthenium nanoparticles in porous carbon matrix determined by in situ temperature-programmed infrared spectroscopy, Chinese Journal of Catalysis, 39 (2018) 146-156, 2018 Линк

391. M. Milanova, R.Iordanova, L.Aleksandrov, M.Hassan, Y.Dimitriev. Glass formation and structure of glasses in the ZnO―Bi2O3―WO3―MoO3 system. Journal of Non-Crystalline Solids, 357, Elsevier, 2011, ISSN:0022-3093, DOI:doi.org/10.1016/j.jnoncrysol.2011.03.015, 2713-2718. ISI IF:2.124

Цитира се в:

1390. Mao, Zhaozhao, et al. "Optical properties, thermal stability, and forming region of high refractive index La2O3–TiO2–Nb2O5 glasses." Journal of the American Ceramic Society 101.4 (2018): 1500-1507., 2018

392. Chakarova, K., Hadjiivanov, K.. H-Bonding of zeolite hydroxyls with weak bases: FTIR study of CO and N2 adsorption on H D ZSM-5. Journal of Physical Chemistry C, 115, 2011, DOI:10.1021/jp111961g, 4806-4817. ISI IF:4.805

Цитира се в:

1391. N. O. Popovych, P. I. Kyriienko, Y. Millot, L.Valentin, J. Gurgul, R. P. Socha, J. Żukrowski, S. Soloviev, S. Dzwigaj, "Sn-BEA zeolites prepared by two-step postsynthesis method: Physicochemical properties and catalytic activity in processes based on MPV reduction", Micropor. Mesopor. Mater., 268 (2018) 178-188., 2018 Линк

1392. N. O. Popovych, O. V. Larina, S. M. Orlyk, P. I. Kyriienko, S. O. Soloviev, S. Dzwigaj, "Design of Bifunctional Catalysts Based on Bea Zeolites for Tandem Processes with Participation of Ethanol", Theor. Exp. Chem., 54 (2018) 255-264., 2018 Линк

1393. M. E. Potter, J. Kezina, R. Bounds, M. Carravetta, T. M. Mezza, R. Raja, "Investigating the role of framework topology and accessible active sites in silicoaluminophosphates for modulating acid-catalysis", Catal. Sci. Technol., 8 (2018) 5155-5164., 2018 Линк

1394. M. Rubeš, M. Trachta, E. Koudelková, R. Bulánek, J. Klimeš, P. Nachtigall, O. Bludský, "Temperature Dependence of Carbon Monoxide Adsorption on a High-Silica H-FER Zeolite, J. Phys. Chem. C, 122 (2018) 26088-26095., 2018 Линк

1395. J.G.P. Vicente, "Estudo de embriões de zeólitas como catalisadores básicos na condensação de Knoevenagel", Ph. D. Thesis, Universidade Federal de São Carlos, Brazil, 2018 [GS]., 2018

1396. R. Osuga and J.N. Kondo, "IR study of dynamic behavior of Brønsted acid sites on zeolites at high temperatures", Zeolite, 35 (2018) 101-108 [ISI]., 2018 Линк

393. Grigorova, E., Mandzhukova, Ts., Khristov, M., Yoncheva, M., Stoyanova, R., Zhecheva, E.. Soft mechanochemically assisted synthesis of nano-sized LiCoO2 with a layered structure. Journal of Materials Science, 46, 22, 2011, ISSN:0022-2461, 7106-7113. ISI IF:2.371

Цитира се в:

1397. Kudielka, Alexandra; PhD Thesis "Größenselektive Synthese von nanokristallinem Cobaltoxidhydroxid - Partikelwachstum, strukturelle Fehlordnung, magnetische Eigenschafteen"; Fachbereich Chemie der Philipps-Universität Marburg, 2018

394. Chakarova, K., Hadjiivanov, K.. Problems in the IR measuring the acidity of zeolite bridging hydroxyls by low-temperature CO adsorption. Chemical Communications, 47, 2011, DOI:10.1039/C0CC04484A, 1878-1880. ISI IF:6.169

Цитира се в:

1398. C. Ng, U. J. Alengaram, L. S. Wong, K. H. Mo, M. Z. Jumaat, S. Ramesh, "A review on microstructural study and compressive strength of geopolymer mortar, paste and concrete", Constr. Build. Mater., 186 (2018) 550-576., 2018 Линк

1399. G. Paul, C. Bisio, I. Braschi, M. Cossi, G. Gatti, E. Gianotti , L. Marchese, "Combined solid-state NMR, FT-IR and computational studies on layered and porous materials", Chem. Soc. Rev., 47 (2018) 5684-5739., 2018 Линк

395. Stoyanova A., Dimitriev Y., Shalaby A., Bachvarova-Nedelcheva A., Iordanova R., Sredkova M.. Antibacterial properties of ZnTiO3 synthesized by sol-gel method. Journal of Optoelectronics and Biomedical Materials, 3, 1, 2011, ISSN:2066-0049, 24-29

Цитира се в:

1400. Anh Le H.T., Tri N., Van Nguyen T.T. and Ha Huynh K.P., Synthesis of ZnTiO3 and Ag/ZnTiO3 and Teir Antibacterial Performances, Materials Transactions, 59 (07) (2018) pp.1112-1116, 2018 Линк

1401. Anh Le H. T., Phuong Pham T. T., Van Nguyen T. T., Tri Nguyen, Minh Nguyen V., Ha Huynh K. P., Preparation of Ag/Zn2TiO4 and

Page 90: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 90/154

its antibacterial activity on enamel tile, Chemical Papers, https://doi.org/10.1007/s11696-018-0652-y, 2018 Линк

396. Konova, P., Naydenov, A., Nikolov, P., Klingstedt, F., Kumar, N.. Single and bi-metallic silver modified ZSM-5 for waste gases neutralization. Journal of Materials Science, 46, 22, Springer, 2011, ISSN:1573-4803, DOI:https://doi.org/10.1007/s10853-011-5411-1, 7123-7133. SJR:0.935, ISI IF:2.371

Цитира се в:

1402. Nicolas Brodu, Marie‐Hélène Manero, Caroline Andriantsiferana, Jean‐Stéphane Pic, Héctor Valdés, "Gaseous ozone decomposition over high silica zeolitic frameworks", The Canadian Journal of Chemical Engineering, 96/9 (2018) 1911 - 1918., 2018 Линк

397. Yoncheva, M., Koleva, V., Mladenov, M., Sendova-Vassileva, M., Nikolaeva-Dimitrova, M., Stoyanova, R., Zhecheva, E.. Carbon-coated nano-sized LiFe1-xMnxPO4 solid solutions (0 ≤ x ≤ 1) obtained from phosphate-formate precursors. Journal of Materials Science, 46, 22, 2011, ISSN:0022-2461, 7082-7089. ISI IF:2.371

Цитира се в:

1403. Dhaybi, S., Marsan, B. LiFe0.5Mn0.5PO4/C prepared using a novel colloidal route as a cathode material for lithium batteries (2018) Journal of Alloys and Compounds, 737, pp. 189-196., 2018 Линк

1404. Dell'Era, A., Pasquali, M., Bauer, E.M., Vecchio Ciprioti, S., Scaramuzzo, F.A., Lupi, C. Synthesis, characterization, and electrochemical behavior of LiMnxFe(1-x)PO4 composites obtained from phenylphosphonate-based organic-inorganic hybrids (2018) Materials, 11 (1), art. no. 56, , 2018 Линк

1405. Martínez, P. A., Orozco, J. C., Alonso, A., Luna, R. M., Barron, M. A., Medina, D. Y., & Garfias-García, E. (2018). Lithium Recovery from Electrodes in Cellphone Batteries through the Leaching Process with Organic Agents Assisted by Ultrasound. Journal of Materials Science and Chemical Engineering, 6(09), 1., 2018

398. Tepavitcharova, S, Todorov, T, Rabadjieva, D, Dassenakis, M, Paraskevopoulos, V. Chemical speciation in natural and brine sea waters. Environmental Monitoring and Assessment, 180, Springer, 2011, ISSN:0167-6369, DOI:10.1007/s10661-010-1783-y, 217-227. SJR:0.545, ISI IF:1.687

Цитира се в:

1406. Liu He, Cui Yan, Yanqing Duan, Stankovski Stevan, Zhang Xiaoshuan1 and Zhang Jian, Development and evaluation of a brine mining equipment monitoring and control system using Wireless Sensor Network and fuzzy logic, Transactions of the Institute of Measurement and Control, 40 (6), 2062-2081, 2018, 2018 Линк

399. Ivanova, Sv., Zhecheva, E., Nihtianova, D., Stoyanova, R.. Nano-domain structure of Li4Mn5O12 spinel. Journal of Materials Science, 46, 22, 2011, ISSN:0022-2461, 7098-7105. ISI IF:2.371

Цитира се в:

1407. Wu, X., Zeng, M., Wang, L., Li, J. "Synthesis and electrochemical properties of Spinel-type Li4Mn5-xTixO12materials". International Journal of Electrochemical Science, 13 (6), pp. 5956-5962, 2018, 2018 Линк

1408. Chen, M., Wu, R., Ju, S., Zhang, X., Xue, F., Xing, W. "Improved performance of Al-doped LiMn2O4ion-sieves for Li+adsorption". Microporous and Mesoporous Materials, 261, pp. 29-34, 2018, 2018 Линк

400. Markova-Velichkova, M., Iordanova, R., Dimitriev, Y.. Glass formation in the V2O5-MoO3-ZnO system. Physica Status Solidi (C) Current Topics in Solid State Physics, 8, 11-12, Wiley-VCH Verlag, 2011, ISSN:18626351, DOI:10.1002/pssc.201000752, 3159-3162. ISI IF:0.617

Цитира се в:

1409. Zhang, Y., Yu, P., Wu, J., Chen, F., Li, Y., Zhang, Y., Zuo, Y., Qi, Y. Enhancement of anticorrosion protection via inhibitor-loaded ZnAlCe-LDH nanocontainers embedded in sol–gel coatings (2018) Journal of Coatings Technology and Research, 15 (2), pp. 303-313., 2018 Линк

1410. Eduok, U., Szpunar, J. Ultrasound-assisted synthesis of zinc molybdate nanocrystals and molybdate-doped epoxy/PDMS nanocomposite coatings for Mg alloy protection (2018) Ultrasonics Sonochemistry, 44, pp. 288-298., 2018 Линк

401. S. Andonova, C.N. de Ávila, K. Arishtirova, J.M.C. Bueno, S. Damyanova. Structure and redox properties of Co promoted Ni/Al2O3 catalysts for oxidative steam reforming of ethanol. Applied Catalysis B: Environmental, 105, 2011, DOI:10.1016/j.apcatb.2011.04.029, 346-360. ISI IF:9.446

Цитира се в:

1411. Y. Jiang, Y. Wang, D. Zeng, Y. Xiao, H. Wang, X. Zhang, X. Dai. "Synthesis of bimetallic CoNi-CoNiO2 nanoparticles embedded into mesoporous carbon as high-performance catalysts for supercapacitor electrode" 272 (2018) 222-231., 2018 Линк

1412. Z. Yang, J. Han, Q. Fan, H. Jia, F. Zhang. "Catalytic hydrogenation of a pyrolysis gasoline model feed over supported NiRu bimetallic catalysts with Ru content from 0.01 wt% to 0.1 wt%". Applied Catalysis A: General 568 (2018) 183-190, 2018

1413. Qing Liu, Bing Bian, Junfeng Fan, Jing Yang. "Cobalt doped Ni based ordered mesoporous catalysts for CO2 methanation with

Page 91: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

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enhanced catalytic performance". International Journal of Hydrogen Energy 43 (2018) 4893-4901., 2018 Линк

1414. S.V. Moghaddam, M. Rezaei, F. Meshkani, R. Daroughegi. "Carbon dioxide methanation over Ni-M/Al2O3 (M: Fe, CO, Zr, La and Cu) catalysts synthesized using the one-pot sol-gel synthesis method". International Journal of Hydrogen Energy 43 (2018) 16522-16533., 2018 Линк

1415. V. S. Gharahshiran, M. Yousefpour. "Synthesis and characterization of Zr-promoted Ni-Co bimetallic catalyst supported OMC and investigation of its catalytic performance in steam reforming of ethanol". International Journal of Hydrogen Energy 43 (2018) 7020-7037, 2018 Линк

1416. Z. Lu, M. Xiaoliang, L. Tianshuo, F. Kegong. "Bimetallic Ni–Co catalysts supported on Mn–Al oxide for selective catalytic CO hydrogenation to higher alcohols". Catalysis Science & Technology 8 (2018) 2066-2076, 2018 Линк

1417. C. Ruocco, V. Palma, A. Ricca. "Experimental and kinetic study of oxidative steam reforming of ethanol over fresh and spent bimetallic catalysts". Chemical Engineering Journal, 2018, in press., 2018 Линк

1418. Marina Arapova. Synthesis and properties of the Ni-based catalysts for the valorization of ethanol and glycerol via steam reforming reaction for hydrogen production. Catalysis. Université de Strasbourg., 2018 Линк

402. Mancheva, M, Iordanova, R, Dimitriev, Y.,. Mechanochemical synthesis of nanocrystalline ZnWO4 at room temperature. Journal of Alloys and Compounds, 509, Elsevier, 2011, 15-20. ISI IF:2.289

Цитира се в:

1419. Karthiga, R., et al. "Synthesis of MoO3 microrods via phytoconsituents of Azadirachta indica leaf to study the cationic dye degradation and antimicrobial properties." Journal of Alloys and Compounds 753 (2018): 300-307., 2018

1420. Pavithra N.S. et al., "Surfactant assisted sonochemical synthesis of zinc tungstate nanoparticles: Anode for Li-ion battery and photocatalytic activities", Eur. Phys. J. Plus 133(2018): 498, 2018

1421. Pereira, P. F. S., et al. "ZnWO 4 nanocrystals: synthesis, morphology, photoluminescence and photocatalytic properties." Physical Chemistry Chemical Physics 20.3 (2018): 1923-1937, 2018

1422. Munusamy, Gnanasekaran, et al. "Investigation of γ-AlOOH and NiWO 4-coated boehmite micro/nanostructure under UV/visible light photocatalysis." Research on Chemical Intermediates 44.12 (2018): 7815-7834., 2018

1423. Harshan, Hitha, et al. "Structural, optical and magnetic properties of nanophase NiWO 4 for potential applications." The European Physical Journal B 91.11 (2018): 287., 2018

1424. Alshehri, Saad M., et al. "Synthesis, characterization, multifunctional electrochemical (OGR/ORR/SCs) and photodegradable activities of ZnWO 4 nanobricks." Journal of Sol-Gel Science and Technology (2018): 1-10., 2018

1425. Luo, Zhuo, et al. "Facile Hydrothermal Synthesis of ZnWO4 for Enhanced Photocatalytic Performance." Journal of Nanoscience and Nanotechnology 18.10 (2018): 7241-7245., 2018

1426. Zhang, Feng, et al. "Structure and photoluminescence properties of ZnWO4 film prepared by depositing WO3/ZnO/WO3 heterolayer via magnetron sputtering technique." Optical Materials 85 (2018): 186-192., 2018

403. Shinova, E., Mandzhukova, Ts., Grigorova, E., Hristov, M., Stoyanova, R., Nihtianova, D, Zhecheva, E.. On the incorporation of extra Li in lithium cobaltate Li 1+ x Co 1− x O 2. Solid State Ionics, 187, 1, Elsevier BV, 2011, ISSN:0167-2738, DOI:10.1016/j.ssi.2011.01.018, 43-49. SJR:0.771, ISI IF:2.561

Цитира се в:

1427. Zeng, X., Zhan, C., Lu, J., Amine, K. "Stabilization of a High-Capacity and High-Power Nickel-Based Cathode for Li-Ion Batteries". Chem Vol. 4, Pages 690-704, 2018, 2018 Линк

404. Iordanova R., Aleksandrov L., Bachvarova-Nedelcheva A., AtaaLa M., Dimitriev Y.. Glass formation and structure of glasses in the MoO3-Bi2O3-B2O3 system. J. Non-Cryst. Solids, 357, 2011, ISSN:0022-3093, 2663-2668. SJR:0.844, ISI IF:1.78

Цитира се в:

1428. Abo-Naf, S.M., Elwan, R.L. & ElBatal, H.A., Photoluminescence, optical properties, thermal behavior and nano-crystallization of molybdenum-doped borobismuthate glasses, J Mater Sci: Mater Electron, 29 (6) (2018), pp. 4915-4925, 2018 Линк

405. Carlier, D., Cheng, J.H., Berthelot, R., Guignard, M., Yoncheva, M., Stoyanova, R., Hwang, B.J., Delmas, C.. The P2-Na2/3Co2/3Mn1/3O2 phase: Structure, physical properties and electrochemical behavior as positive electrode in sodium battery. Dalton Transactions, 40, 36, RSC Publisihing, 2011, ISSN:14779226, DOI:10.1039/c1dt10798d, 9306-9312. ISI IF:4.197

Цитира се в:

1429. Wang, T.; Su, D.; Shanmukaraj, D.; Rojo, T.; Armand, M.; Wang, G. "Electrode Materials for Sodium-Ion Batteries: Considerations on Crystal Structures and Sodium Storage Mechanisms" Electrochemical Energy Reviews Volume 1, Issue 2, pp 200–237, 2018 Линк

1430. Gutierrez, A., Dose, W.M., Borkiewicz, O., Guo, F., Avdeev, M., Kim, S., Fister, T.T., Ren, Y., Bareño, J., Johnson, C.S. "On Disrupting the Na+-Ion/Vacancy Ordering in P2-Type Sodium-Manganese-Nickel Oxide Cathodes for Na+-Ion Batteries"". Journal of Physical Chemistry C, 122 (41), pp. 23251-23260, 2018, 2018 Линк

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1431. Birgisson, S., Christiansen, T.L., Iversen, B.B. "Exploration of Phase Compositions, Crystal Structures, and Electrochemical Properties of NaxFeyMn1- yO2 Sodium Ion Battery Materials". Chemistry of Materials, 30 (19), pp. 6636-6645, 2018, 2018 Линк

1432. Kjeldgaard, S., Birgisson, S., Kielland, A.G., Iversen, B.B. "Operando powder x-ray diffraction study of P2-NaxNi0.3Mn0.7O2 cathode material during electrochemical cycling". Journal of Applied Crystallography, 51 (5), pp. 1304-1310, 2018, 2018 Линк

1433. Bianchini, M., Wang, J., Clément, R., Ceder, G. "A First-Principles and Experimental Investigation of Nickel Solubility into the P2 NaxCoO2 Sodium-Ion Cathode". Advanced Energy Materials, 8 (26), art. no. 1801446, 2018, 2018 Линк

1434. Chandra, M., Shukla, R., Rashid, M., Gupta, A., Basu, S., Dhaka, R.S. "Synthesis and physical properties of NaxTO2 (T  =  Mn, Co) nanostructures for cathode materials in Na-ion batteries". Materials Research Bulletin, 105, pp. 178-183, 2018, 2018 Линк

1435. Wang, Y., Feng, Z., Zhu, W., Gariépy, V., Gagnon, C., Provencher, M., Laul, D., Veillette, R., Trudeau, M.L., Guerfi, A., Zaghib, K. "High capacity and high efficiency maple tree-biomass-derived hard carbon as an anode material for sodium-ion batteries". Materials, 11 (8), art. no. 1294, 2018, 2018 Линк

1436. Huang, Q., Liu, J., Xu, S., Wang, P., Ivey, D.G., Huang, B., Wei, W. "Roles of Coherent Interfaces on Electrochemical Performance of Sodium Layered Oxide Cathodes". Chemistry of Materials, 30 (14), pp. 4728-4737, 2018, 2018 Линк

1437. Wang, H., Li, Z.-Y., Yang, W., Yang, J., Chen, D., Su, C., Liu, X. "Structure modulation and performance optimization of P2-Na0.7Mn0.75Fe0.25-x-yNixCoyO2 through a synergistic substitution of Ni and Co for Fe". Electrochimica Acta, 277, pp. 88-99, 2018, 2018 Линк

1438. Kubota, K., Kumakura, S., Yoda, Y., Kuroki, K., Komaba, S. "Electrochemistry and Solid-State Chemistry of NaMeO2 (Me = 3d Transition Metals)". Advanced Energy Materials, 8 (17), art. no. 1703415, 2018, 2018 Линк

1439. Yu, L., Wang, L.P., Liao, H., Wang, J., Feng, Z., Lev, O., Loo, J.S.C., Sougrati, M.T., Xu, Z.J. "Understanding Fundamentals and Reaction Mechanisms of Electrode Materials for Na-Ion Batteries". Small, 14 (16), art. no. 1703338, 2018, 2018 Линк

1440. Zhang, D., Ding, Z., Yang, Y., Zhao, S., Huang, Q., Chen, C., Chen, L., Wei, W. "Fabricating 3D ordered marcoporous Na2MnSiO4/C with hierarchical pores for fast sodium storage". Electrochimica Acta, 269, pp. 694-699, 2018, 2018 Линк

1441. Sun, Y.; Guo, S.; Zhou, H. "Exploration of Advanced Electrode Materials for Rechargeable Sodium‐Ion Batteries" Adv. Energy Mater. 1800212, 2018 Линк

1442. Zhang, C., Gao, R., Zheng, L., Hao, Y., Liu, X. "New Insights into the Roles of Mg in Improving the Rate Capability and Cycling Stability of O3-NaMn0.48Ni0.2Fe0.3Mg0.02O2 for Sodium-Ion Batteries". ACS Applied Materials and Interfaces, 10 (13), pp. 10819-10827, 2018, 2018 Линк

1443. Wang, Y., Tang, J., Yang, X., Huang, W. "A study on electrochemical properties of P2-type Na-Mn-Co-Cr-O cathodes for sodium-ion batteries". Inorganic Chemistry Frontiers, 5 (3), pp. 577-584, 2018, 2018 Линк

1444. Huang, Q., Liu, J., Zhang, L., Xu, S., Chen, L., Wang, P., Ivey, D.G., Wei, W. "Tailoring alternating heteroepitaxial nanostructures in Na-ion layered oxide cathodes via an in-situ composition modulation route". Nano Energy, 44, pp. 336-344, 2018, 2018 Линк

1445. Skundin, A.M., Kulova, T.L., Yaroslavtsev, A.B. "Sodium-Ion Batteries (a Review)". Russian Journal of Electrochemistry, 54 (2), pp. 113-152, 2018, 2018 Линк

1446. Singh, V.K; Singh, S.K.; Gupta, H.; Shalu; Balo, L.; Tripathi, A.K.; Verma, Y.L.; Singh, R.K. "Electrochemical investigations of Na0.7CoO2 cathode with PEO-NaTFSI-BMIMTFSI electrolyte as promising material for Na-rechargeable battery" J. Solid State Electrochem. 22 (2018) 1909–1919, 2018 Линк

1447. Doubaji, S., Ma, L., Asfaw, H.D., Izanzar, I., Xu, R., Alami, J., Lu, J., Wu, T., Amine, K., Edström, K., Saadoune, I. "On the P2-NaxCo1-y(Mn2/3Ni1/3)yO2Cathode Materials for Sodium-Ion Batteries: Synthesis, Electrochemical Performance, and Redox Processes Occurring during the Electrochemical Cycling". ACS Applied Materials and Interfaces, 10 (1), pp. 488-501, 2018, 2018 Линк

1448. Zhou, D., Huang, W., Kang, X., Zhao, F., Zhao, L., Deng, Z., Yan, X., Yu, Y., Xiang, M. "Titanium-doped P2-type Na0.67Co0.67Mn0.33-xTixO2(0 ≤ x ≤ 0.2) as Novel Cathodes for sodium ion batteries with superior-rate". International Journal of Electrochemical Science, 13 (2), pp. 2010-2021, 2018, 2018 Линк

1449. Ni’mah, Y.L.; Cheng, J.H.; Cheng, M.Y.; Su, W.N.; Hwang, B.J. "Improvement of Cycling Performance of Na2/3Co2/3Mn1/3O2 Cathode by PEDOT/PSS Surface Coating for Na Ion Batteries" Indonesian J. Chem. 18 (2018) 127-136, 2018 Линк

1450. Xu, S., Wu, J., Hu, E., Li, Q., Zhang, J., Wang, Y., Stavitski, E., Jiang, L., Rong, X., Yu, X., Yang, W., Yang, X.-Q., Chen, L., Hu, Y.-S. "Suppressing the voltage decay of low-cost P2-type iron-based cathode materials for sodium-ion batteries". Journal of Materials Chemistry A, 6 (42), pp. 20795-20803, 2018, 2018 Линк

1451. Qu, J., Sheng, T., Wu, Z.-G., Chen, T.-R., Chen, H., Yang, Z.-G., Guo, X.-D., Li, J.-T., Zhong, B.-H., Dou, X.-S. "Unexpected effects of zirconium-doping in the high performance sodium manganese-based layer-tunnel cathode". Journal of Materials Chemistry A, 6 (28), pp. 13934-13942, 2018, 2018 Линк

1452. Park, J., Park, G.; Kwak, H.H.; Hong, S.-T.; Lee, J. "Enhanced Rate Capability and Cycle Performance of Titanium-Substituted P2-Type Na0.67Fe0.5Mn0.5O2 as a Cathode for Sodium-Ion Batteries" ACS Omega, 2018, 3 (1), pp 361–368, 2018 Линк

1453. Hemalatha, K., Jayakumar, M., Prakash, A.S. "nfluence of the manganese and cobalt content on the electrochemical performance of P2-Na0.67Mn:XCo1- xO2 cathodes for sodium-ion batteries". Dalton Transactions, 47 (4), pp. 1223-1232, 2018, 2018 Линк

1454. Zhao, W.; Tsuchiya, Y.; Yabuuchi, N. "Influence of Synthesis Conditions on Electrochemical Properties of P2‐Type Na2/3Fe2/3Mn1/3O2 for Rechargeable Na Batteries" Small Methods (2018) 1800032, 2018 Линк

406. Shalaby A., Dimitriev Y., Iordanova R., Bachvarova-Nedelcheva A., Iliev Tz.. Modified sol-gel synthesis of submicron powders in the

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system ZnO-TiO2. J. Univ. Chem. Tech. and Metall., 46, 2, 2011, ISSN:1314-7471 (print), 137-142. SJR:0.331

Цитира се в:

1455. Siwińska-Stefańska K., Kubiak A., Piasecki A., Goscianska J., Nowaczyk G., Jurga S. and Jesionowski S., TiO2-ZnO Binary Oxide Systems: Comprehensive Characterization and Tests of Photocatalytic Activity, Materials, 11(5) (2018) pp. 841-850, 2018 Линк

407. Dimitriev, Y.,, Gancheva, M., Iordanova, R.. SYNTHESIS OF ZnO BY MECHANOCHEMICAL DECOMPOSITION OF ZINC CARBONATE HYDROXIDE. Journal of the University of Chemistry Technology and Metallurgy, 46, 3, 2011, ISSN:ISSN 1314-7471, 243-248

Цитира се в:

1456. Magesh, G., et al. "Study of structural, morphological, optical and biomedical properties of pH based ZnO nanostructures." Superlattices and Microstructures 124 (2018): 41-51, 2018

408. Kantcheva, M., Cayirtepe, I., Naydenov, A., Ivanov, G.. FT-IR spectroscopic investigation of the effect of SO2 on the SCR of NOx with propene over ZrO2-Nb2O 5 catalyst. Catalysis Today, 176, 1, Elsevier, 2011, DOI:10.1016/j.cattod.2010.10.072, 437-440. ISI IF:3.89

Цитира се в:

1457. Fang, N., Guo, J., Shu, S., Luo, H., Li, J., Chu, Y., Effect of calcination temperature on low-temperature NH3-SCR activity and the resistance of SO2 with or without H2O over Fe–Mn–Zr catalyst (2018) Journal of the Taiwan Institute of Chemical Engineers, 93, pp. 277-288., 2018 Линк

409. Iordanova R. S., Bachvarova-Nedelcheva A. D., Aleksandrov L. I., Dimitriev Y. B.. Synthesis of BiBO3 by crystallization of glasses in the Bi2O3-MoO3-B2O3 system. Bulgarian Chemical Communications, 43, 2011, 254-258. SJR:0.156, ISI IF:0.144

Цитира се в:

1458. Gupta, G., A. Umar, A. Kaur, S.i Sood, A.Dhir, S.K.Kansal. “Solar light driven photocatalytic degradation of Ofloxacin based on ultra-thin bismuth molybdenum oxide nanosheets”. Materials Research Bulletin 99 (2018) 359-366., 2018 Линк

410. Bachvarova-Nedelcheva, A., Yordanova, R., Aleksandrov, L., Dimitriev, Y., AtaaLLa, M.. Optical properties and crystallization of glasses in the system Bi2O3–MoO3–B2O3. Journal of Materials Science, 46, 22, Springer, 2011, 7177-7183. SJR:0.935, ISI IF:2.22

Цитира се в:

1459. Abo-Naf, S.M., R.L. Elwan, & H.A. ElBatal. “Photoluminescence, optical properties, thermal behavior and nano-crystallization of molybdenum-doped borobismuthate glasses”. J Mater Sci: Mater Electron 29 (2018) 4915-4925., 2018 Линк

411. Iordanova R., Bachvarova-Nedelcheva A., Dimitriev Y., Iliev Tz.. Mechanochemical synthesis and photocatalytic properties of zinc titanates. Bulgarian Chemical Communications, 43, 3, 2011, 378-382. SJR:0.28, ISI IF:0.349

Цитира се в:

1460. Zenefar Yeasmin, Abdul Alim, Samina Ahmed, Md Maksudur Rahman, Shah Mohammad Masum & Ananda Kumar Ghosh, Synthesis, Characterization and Efficiency of HAp-TiO2-ZnO Composite as a Promising Photocatalytic Material, Trans. Ind. Ceram. Soc., 77 ( 3) (2018) pp. 1-8., 2018 Линк

412. Panchev, I., Delchev, N., Kovacheva, D., Slavov, A.. Physicochemical characteristics of inulins obtained from Jerusalem artichoke (Helianthus tuberosus L.). European Food Research and Technology, 233, 5, 2011, ISSN:1438-2377, DOI:10.1007/s00217-011-1584-8, 889-896. ISI IF:1.559

Цитира се в:

1461. Pourfarzad, A., Ahmadian, Z., Habibi-Najafi, M.B. Interactions between polyols and wheat biopolymers in a bread model system fortified with inulin: A Fourier transform infrared study (2018) Heliyon, 4 (12), art. no. e01017, ., 2018 Линк

1462. Gao, K., Zhu, T., Wang, L., Gao, Y. Effects of root pruning radius and time on yield of tuberous roots and resource allocation in a crop of Helianthus tuberosus L. (2018) Scientific Reports, 8 (1), art. no. 4392, ., 2018 Линк

1463. Ahmed, I., Niazi, M.B.K., Jahan, Z., Naqvi, S.R. Effect of drying parameters on the physical, morphological and thermal properties of spray-dried inulin (2018) Journal of Polymer Engineering, 38 (8), pp. 775-783., 2018 Линк

1464. Dziekońska-Kubczak, U., Berłowska, J., Dziugan, P., Patelski, P., Pielech-Przybylska, K., Balcerek, M. Nitric acid pretreatment of Jerusalem artichoke stalks for enzymatic saccharification and bioethanol production (2018) Energies, 11 (8), art. no. 2153, ., 2018 Линк

1465. Gao, K., Zhu, T.X., Xun, T., Lin, W., Yang, G. The influence of root-cutting radius on tuber yield and fuel characteristics of Helianthus tuberosus L. in a semi-arid area (2018) Industrial Crops and Products, 115, pp. 202-207., 2018 Линк

1466. Luo, R., Song, X., Li, Z., Zhang, A., Yan, X., Pang, Q. Effect of soil salinity on fructan content and polymerization degree in the sprouting tubers of Jerusalem artichoke (Helianthus tuberosus L.) (2018) Plant Physiology and Biochemistry, 125, pp. 27-34., 2018 Линк

Page 94: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

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1467. Kriukova, Y., Jakubiak-Augustyn, A., Ilyinska, N., Krotkiewski, H., Gontova, T., Evtifeyeva, O., Özcelik, T., Matkowski, A. Chain length distribution of inulin from dahlia tubers as influenced by the extraction method (2018) International Journal of Food Properties, 20, pp. S3112-S3122., 2018 Линк

1468. Yang, Linxi, et al. "Biotechnology Reports." (2018)., 2018 Линк

1469. Petkova, Nadezhda, et al. "Microwave-Assisted Isolation and Acetylation of Inulin from Helianthus Tuberosus L Tubers." Journal of Renewable Materials 6.7 (2018): 671-679., 2018 Линк

1470. Rashid, Summer, et al. "Physicochemical and techno-functional characterization of inulin extracted from chicory roots and Jerusalem artichoke tubers and exploring their ability to replace the fat in cakes." Progress in Nutrition 20.2-S (2018): 191-202., 2018 Линк

413. Radić, N., Grbić, B., Rožić, L., Novaković T., Petrović, S., Stoychev, D., Stefanov, P.. Effects of organic additives on alumina coatings on stainless steel obtained by spray pyrolysis. Journal of Non-Crystalline Solids, 357, 21, Elsevier, 2011, ISSN:0022-3093, 3592-3597. SJR:0.692, ISI IF:2.124

Цитира се в:

1471. Saini, A., Dhayal, V., Agarwal, D.C. Evaluation of corrosion protective behaviour of alumina film deposited by oxime-modified aluminium(III) alkoxide precursor Surface and Coatings Technology, 335, pp. 241-247, (2018), 2018 Линк

1472. Nofz, M. Alumina thin films Handbook of Sol-Gel Science and Technology: Processing, Characterization and Applications, pp. 765-808. , (2018), 2018 Линк

414. L. Dimitrov, Mihaylov, M., Hadjiivanov , K., V. Mavrodinova. Catalytic Properties and Acidity of ZSM-12 Zeolite with Different Textures. Microporous and Mesoporous Materials, 143, 2-3, Elsevier, 2011, DOI:doi:10.1016/j.micromeso.2011.03.009, 291-301. ISI IF:3.453

Цитира се в:

1473. Д. Цаплин, Д. Макеева, Л. Куликов и А. Максимов, Ж. прикл. хим., 91 (2018) 1729 [ISI]., 2018

1474. G. Feng, J. Yang, C. Wang, K. Lu, J. Zhou, J. Liu, X. Wang, R. Zhang and N. Zhang, A first-principles study on Pd modified ZSM-12 zeolites, Microporous Mesoporous Mater., 260 (2018) 227 [ISI]., 2018 Линк

1475. O. Veselý, H. Pang, S. Vornholt, M. Mazur, J. Yu, M. Opanasenko and P. Eliášová, Hierarchical MTW zeolites in tetrahydropyranylation of alcohols: Comparison of bottom-up and top-down methods, Catal. Taday, (2018) doi: 10.1016/j.cattod.2018.06.010 [ISI]., 2018 Линк

1476. G. Mehmandoust and A. Pourahmad, Preparation of ZSM-12 Zeolite from RHS and Its Application for Synthesis of n-type ZnO Semiconductor Nanoparticles: A Green Chemistry Approach, J. Inorg. Organomet. Polym., 28 (2018) 2213 [ISI]., 2018 Линк

1477. P. Dugkhuntod, A. Thivasasith, T. Yutthalekha and C. Wattanakit, Proc., 8th Tokyo Conf. Adv. Catal. Sci. Technol. (TOCAT8), August 5-10, 2018, Yokohama, Japan, P3007 [GS]., 2018 Линк

415. Tsoncheva, T., Dal Santo, V., Gallo, A., Scotti, N., Dimitrov, M., Kovacheva, D.. Structure and catalytic activity of hosted in mesoporous silicas copper species: Effect of preparation procedure and support pore topology. Applied Catalysis A: General, 406, 1-2, 2011, ISSN:0926-860X, DOI:10.1016/j.apcata.2011.07.034, 13-21. ISI IF:3.942

Цитира се в:

1478. Wang, Z., Qin, Y., Pan, F., Li, Z., Zhang, W., Wu, F., Chen, D., Wen, W., Li, J. Mesoporous Silica-Supported Manganese Oxides for Complete Oxidation of Volatile Organic Compounds: Influence of Mesostructure, Redox Properties, and Hydrocarbon Dimension (2018) Industrial and Engineering Chemistry Research, 57 (22), pp. 7374-7382., 2018 Линк

1479. Yu, J., Cao, J., Du, L., Wei, Y., Wang, T., Tian, H. Enhancement of diethyl malonate hydrogenation to 1, 3-propanediol using mesoporous Cu/SBA-15 as catalyst (2018) Applied Catalysis A: General, 555, pp. 161-170., 2018 Линк

1480. Li, Xue, Mei Xiang, and Dongfang Wu. "Hydrogenolysis of glycerol over bimetallic CuNi catalysts supported on hierarchically porous SAPO-11 zeolite." Catalysis Communications (2018)., 2018 Линк

1481. Mahoney, Luther, Dat T. Tran, and Ivan C. Lee. Recent Advances in Catalytic Materials for Water Sustainability. No. ARL-TR-8486. US Army Research Laboratory Adelphi United States, 2018., 2018 Линк

1482. Atakan, Aylin. Mesoporous material systems for catalysis and drug delivery. Diss. Linköping University Electronic Press, 2018 ., 2018 Линк

416. Tzvetkova, Chr., Bozhkov, O., Borisova, L.. Rhenium Phytomining by Alfalfa (Medicago) from Soils of Ore Dressing Regions at Laboratory Conditions. Proceedings of 7 th International Symposium on Technetium and Rhenium- Science and Utilization, July 4-8, 2011, Moscow, Russia, 2011, ISBN:978-5-94691-469-7, 262-264

Цитира се в:

1483. Honghua, He, Zhigang, Dong, Jiayin, Pang, Gao-Lin, Wu, Jiyong, Zheng, Xingchang, Zhang, “Phytoextraction of rhenium by Lucerne (Medicago Sativa) and erect milkvetch (Astragalus adsurgens) from alkaline soils amended with coal fly ash”. Science of the Total Environment 630, 570–577, 2018, 2018

Page 95: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 95/154

417. G. Vayssilov, Mihaylov, M., P. Petkov, Hadjiivanov , K., K.M. Neyman. Reassignment of the Vibrational Spectra of Carbonates, Formates and Related Surface Species on Ceria: A Combined Density Functional and Infrared Spectroscopy Investigation. J. Phys. Chem., C, 115, 47, American Chemical Society, 2011, DOI:10.1021/jp208050a, 23435-23454. ISI IF:4.772

Цитира се в:

1484. L. Filipovic and A. Lahlalia, J. Electrochem. Soc., 165 (2018) B862 [ISI]., 2018

1485. T.H. Vuong, S. Bartling, U. Bentrup, H. Lund, J. Rabeah, H. Atia, U. Armbruster and A. Brückner, Catal. Sci. Technol., 8 (2018) 6360 [ISI]., 2018

1486. J.A. Lupescu, J.W. Schwank, G.B. Fisher, J. Hangas, S.L. Peczonczyk, W.A. Paxton, Pd model catalysts: Effect of air pulse length during redox aging on Pd redispersion, Appl. Catal. B, 223 (2018) 76-90, 2018 Линк

1487. Y. Wang and M. Makkee, The influence of CO2 on NO reduction into N2 over reduced ceria-based catalyst, Appl. Catal. B, 221 (2018) 196-205, 2018 Линк

1488. A.H. Tamboli, A.A. Chaugule, S.W. Gosavi and H. Kim, "CexZr1−xO2 solid solutions for catalytic synthesis of dimethyl carbonate from CO2: Reaction mechanism and the effect of catalyst morphology on catalytic activity" Fuel, 216 (2018) 245, 2018 Линк

1489. W. Zhou, Z. Ma, S. Guo, M. Wang, J. Wang, M. Xia, L. Jia, B. Hou, D. Li and Y. Zhao, Comparative study of CO adsorption on zirconia polymorphs with DRIFT and transmission FT-IR spectroscopy, Appl. Surf. Sci., 427 (2018) 867-873, 2018 Линк

1490. M.V. Konishcheva, D.I. Potemkin, P.V. Snytnikov, O.A. Stonkus, V.D. Belyaev and V.A. Sobyanin, The insights into chlorine doping effect on performance of ceria supported nickel catalysts for selective CO methanation , Appl. Catal. B, 221(2018) 413-421, 2018 Линк

1491. Z. Liu, S. Yao, A. Johnston-Peck, W. Xu, J.A. Rodriguez and S.D. Senanayake, Methanol steam reforming over Ni-CeO2 model and powder catalysts: Pathways to high stability and selectivity for H2/CO2 production , 311, Catal. Today, (2018) 74-80, 2018 Линк

1492. N. Yu, M.M. Rahman, J. Chen, J. Sun, M. Engelhard, X.I.P. Hernandez and Y. Wang, Steam reforming of simulated bio-oil on K-Ni-Cu-Mg-Ce-O/Al2O3: The effect of K, Catal. Today, 323 (2018) 183 doi: 10.1016/j.cattod.2018.04.010 [ISI]., 2018 Линк

1493. Y. Wu, L. Dong and B. Li, Effect of iron on physicochemical properties: Enhanced catalytic performance for novel Fe2O3 modified CuO/Ti0.5Sn0.5O2 in low temperature CO oxidation, Mol. Catal., 456 (2018) 65 [ISI]., 2018 Линк

1494. I. Waluyo, K. Mudiyanselage, F. Xu, W. An, P. Liu, J. Boscoboinik, J. Rodriguez and D. Stacchiola, J. Phys. Chem. C, xx (2018) doi: 10.1021/acs.jpcc.8b07403 [ISI]., 2018 Линк

1495. D. Vovchok, C.J. Guild, J. Lorca, R. Palomino, I. Waluyo, J.A. Rodriguez, S.L. Suib and S.D. Senanayake, Structural and chemical state of doped and impregnated mesoporous Ni/CeO2 catalysts for the water-gas shift, Appl. Catal. A, 567 (2018) 1 [ISI]., 2018 Линк

1496. D. Vovchok, C. Guild, S. Dissanayake, J. Llorca, E. Stavitski, Z. Liu, R.M. Palomino, I. Waluyo, Y. Li, A.I. Frenkel, J.A. Rodriguez, S.L. Suib and S.D. Senanayake, In Situ Characterization of Mesoporous Co/CeO2 Catalysts for the High-Temperature Water-Gas Shift, J. Phys. Chem. C, 122 (2018) 8998 [ISI]., 2018 Линк

1497. C.M. Schilling, Operando Spectroscopy and DFT Modeling of Gold/Ceria Catalysts for CO Oxidation and Water-Gas Shift Reaction, Ph. D. Thesis, Technischen Universität Darmstadt, Germany, 2018 [GS]., 2018 Линк

1498. Y. Ren, K. Tang, J. Wei, H. Yang, H. Wei and Y. Yang, Pretreatment Effect on Ceria-Supported Gold Nanocatalysts for CO Oxidation: Importance of the Gold–Ceria Interaction, Energy Technol., 6 (2018) 379 [ISI]., 2018 Линк

1499. S.H. Overbury, A.I. Kolesnikov, G.M. Brown, Z. Zhang, G.S. Nair, R.L. Sacci, R. Lotfi, A.C.T. van Duin and M. Naguib, Complexity of Intercalation in MXenes: Destabilization of Urea by Two-Dimensional Titanium Carbide, J. Am. Chem. Soc., 140 (2018) 10305 [ISI]., 2018 Линк

1500. G.K.P. Ong, Assembly of and Ion Transport Through Porous Nanocrystal Thin Films, Ph. D. Thesis, University of California, Berkeley, USA, 2018 [GS]., 2018 Линк

1501. L. Lin, S. Yao, Z. Liu, F. Zhang, L. Na, D. Vovchok, A. Martinez-Arias, R. Castaneda, J.Y. Lin, S.D. Senanayake, D. Su, D. Ma and J.A. Rodriguez, In Situ Characterization of Cu/CeO2 Nanocatalysts for CO2 Hydrogenation: Morphological Effects of Nanostructured Ceria on the Catalytic Activity, J. Phys. Chem. C, 122 (2018) 12934 [ISI]., 2018 Линк

1502. Y.F. Li, N. Soheilnia, M. Greiner, U. Ulmer, T. Wood, A.A. Jelle, Y. Dong, A.P.Y. Wong, J. Jia and G.A. Ozin, Pd HyWO3–x Nanowires Efficiently Catalyze the CO2 Heterogeneous Reduction Reaction with a Pronounced Light Effect, ACS Appl. Mater. Interfaces, (2018) doi: 10.1021/acsami.8b04982 [ISI]., 2018 Линк

1503. J. Henych, P. Janoš, M. Kormunda, J. Tolasz and V. Štengl, Reactive adsorption of toxic organophosphates parathion methyl and DMMP on nanostructured Ti/Ce oxides and their composites, Arab. J. Chem., (2018) doi: 10.1016/ j.arabjc.2016.06.002 [ISI]., 2018 Линк

1504. L. Harms and I. Brand, Application of PM IRRAS to study structural changes of the magnesium surface in corrosive environments, Vibr. Spectrosc., 97 (2018) 106 [ISI], 2018 Линк

1505. M.Y.S. Hamid, S. Triwahyono, A.A. Jalil, N.W.C. Jusoh, S.M. Izan and T.A.T. Abdullah, Tailoring the Properties of Metal Oxide Loaded/KCC-1 toward a Different Mechanism of CO2 Methanation by in Situ IR and ESR, Inorg. Chem., 57 (2018) 5859 [ISI]., 2018 Линк

1506. Y. Guo, S. Mei, K. Yuan, D.-J. Wang, H. Liu, C.-H. Yan and Y.-W. Zhang, Low-Temperature CO2 Methanation over CeO2 -Supported Ru Single Atoms, Nanoclusters, and Nanoparticles Competitively Tuned by Strong Metal-Support Interactions and H-Spillover Effect, ACS Catal., 8 (2018) 6203 [ISI]., 2018 Линк

Page 96: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 96/154

1507. L. Gu, Q. Su, W. Jiang, Y. Yao, Y. Pang, W. Ji and C.-T. Au, How do the unique Au/α-Fe2 O3 interfacial structures determine activity in CO oxidation?, Catal. Sci. Technol., 8 (2018) 5782 [ISI]., 2018 Линк

1508. R. Fiorenza, L. Spitaleri, A. Gulino and S. Scirè, Ru–Pd bimetallic catalysts supported on CeO2 -MnOx oxides as efficient systems for H2 purification through CO preferential Oxidation, Catalysts, 8 (2018) 203 [ISI]., 2018 Линк

1509. Y. Cao, L. Zhao, T. Gutmann, Y. Xu, L. Dong, G. Buntkowsky and F. Gao, An in situ DRIFTS mechanistic study of CeO2-catalyzed acetylene semihydrogenation reaction, J. Phys. Chem. C, 122 (2018) 20402 [ISI]., 2018 Линк

1510. T. Cao, R. You, X. Zhang, S. Chen, D. Li, Z. Zhang and W. Huang, An: In situ DRIFTS mechanistic study of CeO2 -catalyzed acetylene semihydrogenation reaction, Phys. Chem. Chem. Phys., 20 (2018) 9659 [ISI]., 2018 Линк

418. Ivanova, S., Zhecheva, E., Stoyanova, R., Nihtianova, D., Wegner, S., Tzvetkova, P., Simova, S.. High-voltage LiNi 1/2Mn 3/2O 4 spinel: Cationic order and particle size distribution. Journal of Physical Chemistry C, 115, 50, 2011, ISSN:1932-7447, 25170-25182. ISI IF:4.772

Цитира се в:

1511. Lee, T.J., Kim, H.-S., Hwang, H.S., Soon, J., Jung, J., Ryu, J.H., Oh, S.M. "Solid permeable interface (SPI) on a high-voltage positive electrode of lithium-ion batteries". Journal of the Electrochemical Society, 165 (3), pp. A575-A583, 2018, 2018 Линк

1512. Lee Tae Jin. PhD Thesis "Ion Transport Properties in Surface Films Generated on LiNi0. 5Mn1. 5O4 Positive Electrode" (2018) Seoul National University Graduate School., 2018 Линк

1513. Hu, J. "Application of probabilistic method into micro-powder particle size parameter determination", Paper Asia 1 (2018) 176-179, 2018 Линк

1514. Kwon, N., Jeong, Y.U., Choi, S.-I., Kim, S.Y., Lee, Y.J. "The Effects of Surface Modifications on the Electrochemical Properties of LiMn2−xNixO4(0 ≤ x ≤ 0.5) as Cathode Materials for Secondary Lithium Batteries". Bulletin of the Korean Chemical Society, 39 (8), pp. 946-950, 2018, 2018 Линк

1515. Martel, L., Hen, A., Tokunaga, Y., Kinnart, F., Magnani, N., Colineau, E., Griveau, J.-C., Caciuffo, R. "Magnetization, specific heat, O 17 NMR, and Np 237 Mössbauer study of U0.15 N p0.85 O2". Physical Review B, 98 (1), art. no. 014410, 2018, 2018 Линк

1516. Li, Q., Qiao, Y., Guo, S., Jiang, K., Li, Q., Wu, J., Zhou, H. "Both Cationic and Anionic Co-(de)intercalation into a Metal-Oxide Material". Joule, 2 (6), pp. 1134-1145, 2018, 2018 Линк

1517. Feng, S., Kong, X., Sun, H., Wang, B., Luo, T., Liu, G. "Effect of Zr doping on LiNi0.5Mn1.5O4 with ordered or disordered structures". Journal of Alloys and Compounds, 749, pp. 1009-1018, 2018, 2018 Линк

1518. Feng, S., Kong, X., Sun, H., Wang, B., Luo, T., Liu, G. "3D Porous LiNi0.5Mn1.5O4 with improved rate capability and cycle stability". International Journal of Electrochemical Science, 13 (5), pp. 4276-4284, 2018, 2018 Линк

419. Mihaylov, M., T. Tsoncheva, Hadjiivanov , K.. Structure Sensitivity of Methanol Decomposition on Ni/SiO2 Catalysts. Journal of Materials Science, 46, 22, Springer US, 2011, ISSN:0022-2461, DOI:10.1007/s10853-011-5437-4, 7144. ISI IF:2.371

Цитира се в:

1519. G. Giannakakis, A. Trimpalis, J. Shan, Z. Qi, S. Cao, J. Liu, J. Ye, J. Biener and M. Flytzani-Stephanopoulos, NiAu Single Atom Alloys for the Non-oxidative Dehydrogenation of Ethanol to Acetaldehyde and Hydrogen, Top. Catal., 61 (2018) 475 [ISI]., 2018 Линк

1520. Z. Li, L. Zhang, K. Zhao and L. Bian, Ni/ZrO2 Catalysts Synthesized via Urea Combustion Method for CO2 Methanation, Trans. Tianjin Univ., 24 (2018)471–479 doi: 10.1007/s12209-018-0126-x, 2018 Линк

420. Uzunova E. Electronic Structure of Trioxide, Oxoperoxide, Oxosuperoxide, and Ozonide Clusters of the 3d Elements: Density Functional Theory Study. J. Phys. Chem. A, 115, ACS, 2011, 1320-1331. ISI IF:2.69

Цитира се в:

1521. Nakazawa, T. Density functional theory study on the geometric and electronic structures of Fe2O2 and the reaction of Fe2+O2 (2018) Computational Materials Science, 146, pp. 334-345., 2018

1522. Marks, J.H., Ward, T.B., Duncan, M.A. Photodissociation of Manganese Oxide Cluster Cations (2018) Journal of Physical Chemistry A, 122 (13), pp. 3383-3390., 2018

1523. Song, S.A., Kim, K., Lim, S.N., Han, J., Yoon, S.P., Kang, M.-G., Jang, S.-C. Electrochemical catalytic behavior of cu2o catalyst for oxygen reduction reaction in molten carbonate fuel cells (2018) Journal of Electrochemical Science and Technology, 9 (3), pp. 195-201., 2018

421. Uzunova E. Density Functional Study of the Stable Oxidation States and the Binding of Oxygen in MO4 Clusters of the 3d Elements. J. Phys. Chem A, 115, ACS, 2011, ISSN:1089-5639, 10665-10674. ISI IF:2.69

Цитира се в:

1524. von Szentpály, L. Multiply charged anions, maximum charge acceptance, and higher electron affinities of molecules, superatoms, and clusters (2018) Acta Physico - Chimica Sinica, 34 (6), pp. 675-682, 2018

1525. Schmidbaur, H. The History and the Current Revival of the Oxo Chemistry of Iron in its Highest Oxidation States: FeVI – FeVIII (2018) Zeitschrift fur Anorganische und Allgemeine Chemie, 644 (12), pp. 536-559., 2018 Линк

Page 97: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 97/154

422. Grigorova E., Mandzhukova Ts., Tsyntsarski B., Budinova T., Khristov M., Tzvetkov P., Petrova B., Petrov N.. Effect of activated carbons derived from different precursors on the hydrogen sorption properties of magnesium. Fuel Processing Technology, 92, Elsevier, 2011, ISSN:0378-7753, 1963-1969. SJR:1.819, ISI IF:3.352

Цитира се в:

1526. Chiu, C., Huang, S.-J., Chou, T.-Y., Rabkin, E. "Improving hydrogen storage performance of AZ31 Mg alloy by equal channel angular pressing and additives".Journal of Alloys and Compounds, Vol. 743, Pages 437-447, 2018, 2018 Линк

1527. Puttimate Thongtan, Palmarin Dansirima, Sophida Thiangviriya, Natthaporn Thaweelap, Apirak Suthummapiwat, Praphatsorn Plerdsranoy, Rapee Utke. "Reversible hydrogen sorption and kinetics of hydrogen storage tank based on MgH2 modified by TiF4 and activated carbon". International Journal of Hydrogen Energy Vol. 43, Pages 12260-12270, 2018, 2018 Линк

423. Creaven, B. S., Devereux, M., Georgieva, I., Karcz, D., McClean, M., Trendafilova, N., Walsh, M.. Molecular structure and spectroscopic studies on novel complexes of coumarin-3-carboxylic acid with Ni(II), Co(II), Zn(II) and Mn(II) ions based on density functional theory. Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy, 84, 1, Elsevier, 2011, 275-285. ISI IF:2.353

Цитира се в:

1528. Furia, E., Beneduci, A., Russo, N., Marino, T., Structural characterization of aluminium(III) and iron(III) complexes of coumarinic acid in aqueous solutions from combined experimental and theoretical investigations (2018) New Journal of Chemistry, 42 (13), pp. 11006-11012., 2018 Линк

1529. Karcz, D. , Starzak, K. , Matwijczuk, A. , Ciszkowicz, E. , Lecka-Szlachta, K. , Matwijczuk, A. , Ciupak, A. , Gładyszewska, B. , Niewiadomy, A., Otrzymywanie, spektroskopia i biologiczna aktywność kompleksów Cu(II) i Zn(II) z pochodnymi 1, 3, 4-tiadiazolu, 2018 | T. 97, nr 7 | 1095--1101., 2018 Линк

1530. Islas, M.S., Martínez Medina, J.J., Piro, O.E., (...), Ferrer, E.G., Williams, P.A.M., Comparisons of the spectroscopic and microbiological activities among coumarin-3-carboxylate, o-phenanthroline and zinc(II) complexes, Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy, 198, pp. 212-221 (2018)., 2018 Линк

1531. Abdel-Latif, S.A., Moustafa, H., Synthesis, spectroscopic properties, density functional theory calculations and nonlinear optical properties of novel complexes of 5-hydroxy-4, 7-dimethyl-6-(phenylazo)coumarin with Mn(II), Co(II), Ni(II), Cu(II) and Zn(II) metal ions, Applied Organometallic Chemistry, 32(4), e4269 (2018)., 2018 Линк

1532. Abdel-Latif, S.A., Mohamed, A.A., Novel Zn(II) complexes of 1, 3-diphenyl-4-(arylazo)pyrazol-5-one derivatives: Synthesis, spectroscopic properties, DFT calculations and first order nonlinear optical properties, 2018, Journal of Molecular Structure, 1156, pp. 712-725., 2018 Линк

424. Spassova I., Velichkova N., Nihtianova D., Khristova M.. Influence Of Ce Addition On The Catalytic Behavior Of Alumina Supported Cu-Co Catalysts In NO Reduction With CO. Journal of Colloid and Interface Science, 354, 2, 2011, 777-784. ISI IF:3.453

Цитира се в:

1533. Lingling Zhang, Xiaojiang Yao, Yiyang Lu, Chuanzhi Sun, Changjin Tang, Fei Gao, Lin Dong, Effect of precursors on the structure and activity of CuO-CoOx/γ-Al2O3 catalysts for NO reduction by CO, Journal of Colloid and Interface Science, Volume 509, 2018, Pages 334-345, ISSN 0021-9797, , 2018 Линк

1534. Liu, K., Yu, Q., Qin, Q., & Wang, C. (2018). Selective catalytic reduction of nitric oxide with carbon monoxide over alumina-pellet-supported catalysts in the presence of excess oxygen. Environmental technology, 39(15), 1878-1885., 2018

1535. Zhang, L., Huang, L., Qin, Y. H., & Chen, B. Z. (2018). Structure and denitration performance of carbon-based catalysts prepared from Cu− BTC precursor. Transactions of Nonferrous Metals Society of China, 28(5), 980-988., 2018

1536. N. Stoeva, Наноразмерни и наноструктурирани композитни материали като катализатори и адсорбенти с екологично предназначениер PhD Thesis, 2018, 2018

2012

425. Mirkashemihaghighi, S, Leoin, B., Perez Vincente, C., Tirado, J. L., Stoyanova, R., Yoncheva, M., Zhecheva, E., Saez Puche, R., Arroyo, E. M., Romero De Paz, J.. Lithium storage mechanisms and effect of partial cobalt substitution in manganese carbonate electrodes. Inorganic Chemistry, 51, 10, 2012, ISSN:0020-1669, 5554-5560. ISI IF:4.762

Цитира се в:

1537. Li, J., Li, M., Guo, C., Zhang, L. "Recent Progress and Challenges of Micro-/Nanostructured Transition Metal Carbonate Anodes for Lithium Ion Batteries". European Journal of Inorganic Chemistry, 2018 (41), pp. 4508-4521., 2018 Линк

1538. Su, D., Wang, J., Yang, Z., Liu, S., Yang, J., Yao, S., Feng, X. "Stability electrochemical performance of self-assembled hierarchical MnCO3/MWCNT nanocomposite as anode material for lithium-ion batteries". Journal of Solid State Electrochemistry, 22 (11), pp. 3485-3491, 2018, 2018 Линк

1539. Dong, C., Tao, Y., Chang, Q., Liu, Q., Guan, H., Chen, G., Wang, Y. "Direct growth of MnCO3 on Ni foil for a highly sensitive nonenzymatic glucose sensor". Journal of Alloys and Compounds, 762, pp. 216-221, 2018, 2018 Линк

Page 98: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 98/154

1540. Li, F., Liu, W., Li, K., Chen, W., Xu, D., Yu, X., Hu, H. "One step synthesis of FeCO3nanorods interwind with carbon nanotubes as anode materials for lithium-ion batteries". Journal of Electroanalytical Chemistry, 824, pp. 67-74, 2018, 2018 Линк

1541. Yang, Z., Wang, J., Yao, S., Su, D., Liu, S., Feng, X. "Composite of Fe3O4/MnCO3as anodes for lithium-ion batteries". Journal of Alloys and Compounds, 757, pp. 112-117, 2018, 2018 Линк

1542. Li, J., Xu, W., Guo, C., Li, M., Zhang, L. "Effect of Ni content in NixMn1-xCO3 (x = 0, 0.20, 0.25, 0.33) submicrospheres on the performances of rechargeable lithium ion batteries". Electrochimica Acta, 276, pp. 333-342, 2018, 2018 Линк

1543. Lu, Z., Wang, H., Zhou, T., Ma, C., Yin, F., Jiang, X., Yang, G. "CoCO3micrometer particles stabilized by carbon nanofibers networks as composite electrode for enhanced rate and cyclic performance of lithium-ion batteries". Electrochimica Acta, 270, pp. 22-29, 2018, 2018 Линк

1544. Ding, Z., Qin, X., You, C., Wu, M., He, Y., Kang, F., Li, B. "Different solid electrolyte interface and anode performance of CoCO3 microspheres due to graphene modification and LiCoO2||CoCO3 rGO full cell study". Electrochimica Acta, 270, pp. 192-204, 2018, 2018 Линк

1545. Li, Q., Liu, Z., Wang, C., Zhao, Y., Che, R. "Doping of Ni and Zn Elements in MnCO3: High-Power Anode Material for Lithium–Ion Batteries". Small, 14 (7), art. no. 1702574, 2018, 2018 Линк

1546. Jia, J., Zhang, P. "Catalytic Decomposition of Airborne Ozone by MnCO3 and its Mechanism". Ozone: Science and Engineering, 40 (1), pp. 21-28, 2018, 2018 Линк

1547. Shan, X., Charles, D. S., Xu, W., Feygenson, M., Su, D., & Teng, X. Biphase Cobalt–Manganese Oxide with High Capacity and Rate Performance for Aqueous Sodium‐Ion Electrochemical Energy Storage. Advanced Functional Materials, Volume 28, Issue 3 January 17, 2018, 1703266., 2018 Линк

1548. Xiong, Q., Lou, J., Zhou, Y., Shi, S., & Ji, Z. (2018). Ultrafast synthesis of Mn0. 8Co0. 2CO3/graphene composite as anode material by microwave solvothermal strategy with enhanced Li storage properties. Materials Letters, 210, 267-270., 2018 Линк

1549. Zhang, C., Cai, X., Xu, D., Chen, W., Fang, Y., & Yu, X. (2018). Mn doped FeCO3/reduced graphene composite as anode material for high performance lithium-ion batteries. Applied Surface Science, 428, 73-81., 2018 Линк

1550. Li, Q.; Liu, Z.; Wang, C.; Zhao, Y.; Che, R. "Doping of Ni and Zn Elements in MnCO3: High‐Power Anode Material for Lithium–Ion Batteries" Small 14, Issue7, 1702574, 2018 Линк

1551. Solchenbach, S.; Hong, G.; Freiberg, A.T.S.; Jung, R.; Gasteiger, H.A. "Electrolyte and SEI Decomposition Reactions of Transition Metal Ions Investigated by On-Line Electrochemical Mass Spectrometry" J. Electrochem. Soc. 2018 volume 165, issue 14, A3304-A3312, 2018 Линк

1552. Zhang, R.; X. X. Huang, D. Wang, T. K. A. Hoang, Y. Yang, X. M. Duan, P. Chen, L.-C. Qin, G. W. Wen, "Single‐Phase Mixed Transition Metal Carbonate Encapsulated by Graphene: Facile Synthesis and Improved Lithium Storage Properties" Adv. Funct. Mater. 28, Issue 10, 1705817., 2018 Линк

426. Antonov, V., Georgieva, I., Trendafilova, N., Kovacheva, D., Krezhov, K.. First principles study of structure and properties of La- and Mn-modified BiFeO3. Solid State Sciences, 14, 7, Elsevier, 2012, 782-788. ISI IF:1.839

Цитира се в:

1553. Rajan, P.I., Mahalakshmi, S., Chandra, S., The structural, electronic, magnetic and optical properties of the new promising spintronic material Bi0.92Tb0.08FeO3: A first-principles approach, 2018, Computational Materials Science, 145, pp. 244-251., 2018 Линк

1554. Zhao, Y., Ma, X., Xu, P. Removal of Elemental Mercury in Flue Gas with H2O2 Solution Catalyzed by Zn-Doped BiFeO3 (2018) Energy and Fuels, 32 (5), pp. 6056-6063., 2018 Линк

427. Bozhkov, O., Tzvetkova, Chr., Borisova, L., Briskin, B.. Phytomining: New Method for Rhenium Production. Advanced Materials & Processes, 170, 5, 2012, 34-37. ISI IF:0.389

Цитира се в:

1555. Honghua He, Zhigang Dong, Jiayin Pang, Gao-Lin Wu, Jiyong Zheng, Xingchang Zhang, “Phytoextraction of rhenium by Lucerne (Medicago Sativa) and erect milkvetch (Astragalus adsurgens) from alkaline soils amended with coal fly ash”. Science of the Total Environment 630, 570–577, 2018, 2018

1556. Novo, L. A. B., Silva, E.F., Pereira, A., Casanova, A., Gonzales, L.. “The effect of rhenium accumulation on Indian mustard”. Environmental Sci. Pollut. Res. , Jun 21, 2018, 2018

428. Sachse, А., Hulea, V., Kostov, K.L., Marcotte, N., Boltoeva, M.Yu., Belamie, E., Alonso, B.. Efficient mesoporous silica-titania catalysts from cooloidal self-assembly. Chemical Communications, 48, 48, The Royal Society of Chemistry, 2012, ISSN:1359-7345, DOI:10.1039/C2CC35127G, 10648-10650. ISI IF:6.834

Цитира се в:

1557. Variani, Y.M., Rojas, A. and Pergher, S.B., Synthesis and characterization of Ti-STF zeolite using 1, 2, 3-triethyl-4-methylimidazolium as structure-directing agent, Microporous and Mesoporous Materials, 262, pp.106-111, 2018., 2018 Линк

1558. Debecker, D.P., Le Bras, S., Boissière, C., Chaumonnot, A. and Sanchez, C., Aerosol processing: a wind of innovation in the field of advanced heterogeneous catalysts, Chemical Society Reviews, 47(11), pp.4112-4155, 2018., 2018 Линк

Page 99: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 99/154

1559. Bo Duan, Yao Huang, Ang Lu, Lina Zhang, Recent Advances in Chitin Based Materials Constructed via Physical Methods, Progress in Polymer Science 82, 1-33, 2018., 2018 Линк

1560. Vivian, A., Fusaro, L., Debecker, D.P. and Aprile, C., Mesoporous methyl-functionalized Sn-silicates generated by the aerosol process for the sustainable production of ethyl lactate. ACS Sustainable Chemistry & Engineering, 6(11), pp.14095-14103, 2018, 2018 Линк

1561. Kim, Jongwook, Synthesis of CuO Nanoparticles Using Silk Fibroin as a Template and Evaluation of Photodegradation Performance (Doctoral dissertation, Graduate School of Seoul National University), 2018, 2018 Линк

429. Yoncheva, M., Stoyanova, R., Zhecheva, E., Kuzmanova, E., Sendova-Vassileva, M., Nihtianova, D., Carlier, D., Guignard, M., Delmas, C.. Structure and reversible lithium intercalation in a new P′3-phase: Na2/3Mn1-yFeyO2 (y = 0, 1/3, 2/3). Journal of Materials Chemistry, 22, 44, RSC Publishing, 2012, ISSN:09599428, DOI:10.1039/c2jm35203f, 23418-2342. ISI IF:6.626

Цитира се в:

1562. Zhang, C., Gao, R., Zheng, L., Hao, Y., Liu, X. "New Insights into the Roles of Mg in Improving the Rate Capability and Cycling Stability of O3-NaMn0.48Ni0.2Fe0.3Mg0.02O2 for Sodium-Ion Batteries". ACS Applied Materials and Interfaces, 10 (13), pp. 10819-10827, 2018, 2018 Линк

1563. Choi, J.U., Park, Y.J., Jo, J.H., Kuo, L.-Y., Kaghazchi, P., Myung, S.-T. "Unraveling the Role of Earth-Abundant Fe in the Suppression of Jahn-Teller Distortion of P′2-Type Na2/3MnO2: Experimental and Theoretical Studies"(2018). ACS Applied Materials and Interfaces., 2018 Линк

1564. Hemalatha, K., Jayakumar, M., Prakash, A.S. "Influence of the manganese and cobalt content on the electrochemical performance of P2-Na0.67Mn:XCo1- xO2 cathodes for sodium-ion batteries"(2018). Dalton Transactions, 47 (4), pp. 1223-1232, 2018 Линк

1565. Konarov, A., Choi, J.U., Bakenov, Z., Myung, S.-T. "Revisit of layered sodium manganese oxides: Achievement of high energy by Ni incorporation". Journal of Materials Chemistry A, 6 (18), pp. 8558-8567, 2018, 2018 Линк

1566. Song, J.; Gim, J.; Park, S.; Kim, J. (2018) "Sodium manganese oxide electrodes accompanying self-ion exchange for lithium/sodium hybrid ion batteries". Journal of Power Sources 261, 42-48., 2018 Линк

430. Vulchev, V., Vassilev, L., Harizanova, S., Khristov, M., Zhecheva. E., Stoyanova, R... Improving of the thermoelectric efficiency of LaCoO 3 by double substitution with nickel and iron. Journal of Physical Chemistry C, 116, 25, 2012, ISSN:1932-7447, 13507-13515. ISI IF:4.772

Цитира се в:

1567. Chen, C., Giovannelli, F., Chartier, T., Delorme, F.Cong, "Synthesis and thermoelectric properties of doubly substituted La0.95 Sr0.05Co1-xCrxO3 (0≤ x≤ 0.5)." Materials Research Bulletin 102, 257 - 261 (2018)., 2018 Линк

1568. Solanki, N., Lodhi, P.D., Choudhary, K.K., Kaurav, N. "Nano sized La2Co2O6double perovskite synthesized by sol gel method". AIP Conference Proceedings, 1953, art. no. 030126, 2018, 2018 Линк

431. Koseva, I., Yordanova, A., Tzvetkov, P., Nikolov, V., Nihtianova, D.. Nanosized pure and Cr doped Al2−xInx(WO4)3 solid solutions. Materials Chemistry and Physics, 132, 2-3, Elsevier, 2012, ISSN:02540584, DOI:10.1016/j.matchemphys.2011.12.016, 808-814. ISI IF:2.259

Цитира се в:

1569. Wang, Ling, et al. "Improvement of Al3+ ion conductivity by F doping of (Al0. 2Zr0. 8) 4/3.8 NbP3O12 solid electrolyte for mixed potential NH3 sensors." Ceramics International 44.8 (2018): 8983-8991., 2018 Линк

432. Uzunov I., Uzunova S., Angelova D., Gigova A.. Effects of the pyrolysis process on the oil sorption capacity of rice husk. J Anal Apll Pyrol, 98, Elsevier, 2012, ISSN:0165-2370, 166-176. SJR:1.593, ISI IF:3.564

Цитира се в:

1570. Uzoejinwa B. et al. "Co-pyrolysis of macroalgae and lignocellulosic biomass: Synergistic effect, optimization studies, modeling, and simulation of effects of co-pyrolysis parameters on yields". Journal of Thermal Analysis and Calorimetry, 2018 DOI: 10.1007/s10973-018-7834-2, 2018

1571. Paulauskiene T. "Ecologically friendly ways to clean up oil spills in harbor water areas: crude oil and diesel sorption behavior of natural sorbents". Environmental Science and Pollution Research, 25, 10, 2018, 9981–9991, 2018

1572. Li M., Jiang H. , Xu D. "Preparation of sponge-reinforced silica aerogels from tetraethoxysilane and methyltrimethoxysilane for oil/water separation". Materials Research Express, 5, 4, 2018, 2018

1573. Peng X. et al. "Optimization of preparation of monolithic carbon foam from rice husk char for benzene leakage emergency". Environmental Science and Pollution Research, 25, 26, 2018, 26046–26058, 2018

1574. Lian J., Li J., Wang L. et al., "Konjac Glucomannan Derived Carbon Aerogels for Multifunctional Applications". Nano brief reports and reviews, 2018 DOI:10.1142/S1793292018501138, 2018

1575. Uzoejinwa B., He X., Wang S. "Co-pyrolysis of macroalgae and lignocellulosic biomass: Synergistic effect, optimization studies, modeling, and simulation of effects of co-pyrolysis parameters on yields". Journal of Thermal Analysis and Calorimetry, 2018, DOI: 10.1007/s10973-018-7834-2, 2018

Page 100: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 100/154

1576. Cruz G. et al. "Physicochemical properties of brazilian biomasses: potential applications as renewable energy source". African Journal of Biotechnology, 14, 4, 2018; DOI:10.5897/AJB2017.16296, 2018

433. Koleva V., Stefov V., Najdoski M., Cahil A.. Vibrational spectra of cobalt dihydrogen phosphate dihydrate, Co(H2PO4)2•2H2O. Vibrational Spectroscopy, 62, Elsevier, 2012, ISSN:0924-2031, 229-237. ISI IF:2.009

Цитира се в:

1577. Sotiriadis, K., Mácová, P., Mazur, A.S., Tolstoy, P.M., Viani, A. A solid state NMR and in-situ infrared spectroscopy study on the setting reaction of magnesium sodium phosphate cement (2018) Journal of Non-Crystalline Solids, 498, pp. 49-59., 2018 Линк

1578. Dekhili, R., Kauffmann, T. H., Aroui, H., & Fontana, M. D. (2018). Raman spectra in LiH2PO4 and KLi(H2PO4) 2: Mode assignment. Journal of Raman Spectroscopy. https://doi.org/10.1002/jrs.5522, 2018 Линк

1579. Muthuselvi, C., Uma Maheswari, P., & Ravikumar, B. (2018) Growth, Vibrational and Antimicrobial Activity Studies on Glycinium Dihydrogen Phosphate Complex Crystal. The Pharmaceutical and Chemical Journal 5(5):23-24, 2018 Линк

434. Stojadinović, S., Radić, N., Vasilić, R., Petković, M., Stefanov, P., Zeković, L., Grbić, B.. Photocatalytic properties of TiO2/WO3 coatings formed by plasma electrolytic oxidation of titanium in 12-tungstosilicic acid. Applied Catalysis B: Environmental, 126, Elsevier, 2012, ISSN:0926-3373, DOI:doi.org/10.1016/j.apcatb.2012.07.031, 334-341. SJR:2.583, ISI IF:9.446

Цитира се в:

1580. Molaei, M., Fattah-Alhosseini, A., Gashti, S.O. Sodium Aluminate Concentration Effects on Microstructure and Corrosion Behavior of the Plasma Electrolytic Oxidation Coatings on Pure Titanium Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science, 49 (1), pp. 368-375.(2018), 2018 Линк

1581. Li, K., Zhang, C., Liu, A., Chu, D., Zhang, C., Yang, P., Du, Y., Huang, J. Mesoporous tungsten oxide modified by nanolayered manganese-calcium oxide as robust photoanode for solar water splitting Journal of Colloid and Interface Science, 516, pp. 145-152.(2018), 2018 Линк

1582. Sakhnenko, N.D., Ved, M.V., Karakurkchi, A.V.\ Effect of Doping Metals on the Structure of PEO Coatings on Titanium International Journal of Chemical Engineering, 2018, art. no. 4608485, (2018), 2018 Линк

1583. Qin, H., Chen, L., Yu, X. et al. "Preparation and photocatalytic performance of ZnO/WO3/TiO2 composite coatings formed by plasma electrolytic oxidation" J Mater Sci: Mater Electron 29(3) 2060-2071, (2018), 2018 Линк

435. Najdoski M., Koleva V., Demiri S., Stojkovikj S.. A Simple Chemical Method for Deposition of Electrochromic Potassium Manganese Oxide Hydrate Thin Films. Materials Research Bulletin, 47, Elsevier, 2012, ISSN:0025-5408, 2239-2244. ISI IF:2.288

Цитира се в:

1584. Song, X., Chen, G., Wang, S., Huang, Y., Jiang, Z., Ding, L.-X., Wang, H. Self-Assembled Close-Packed MnO2 Nanoparticles Anchored on a Polyethylene Separator for Lithium-Sulfur Batteries (2018) ACS Applied Materials and Interfaces, 10 (31), pp. 26274-26282., 2018 Линк

1585. Tong, Z., Liu, S., Li, X., Zhao, J., & Li, Y. (2018). Self-supported one-dimensional materials for enhanced electrochromism. Nanoscale Horizons, 3(3), 261-292., 2018 Линк

1586. Martínez-Ortíz, P., Lugo-Loredo, S., Campos-Álvarez, J., Peña-Méndez, Y., & Aguilar-Martínez, J. A. (2018). Growth and characterization of Cu3SbSe4 thin films through thermally diffusing Sb2Se3–CuSe by chemical bath deposition (CBD). Materials Research Bulletin, 102, 418-423., 2018

436. Najdoski M., Koleva V., Demiri S.. Chemical Bath Deposition and Characterization of Electrochromic Thin Films of Sodium Vanadium Bronzes. Materials Research Bulletin, 47, Elsevier, 2012, ISSN:0025-5408, 737-743. ISI IF:2.288

Цитира се в:

1587. Martínez-Ortíz, P., Lugo-Loredo, S., Campos-Álvarez, J., Peña-Méndez, Y., Aguilar-Martínez, J.A. Growth and characterization of Cu3SbSe4 thin films through thermally diffusing Sb2Se3– CuSe by chemical bath deposition (CBD) (2018) Materials Research Bulletin, 102, pp. 418-423., 2018 Линк

1588. Tong, Z., Liu, S., Li, X., Zhao, J., Li, Y. Self-supported one-dimensional materials for enhanced electrochromism (2018) Nanoscale Horizons, 3 (3), pp. 261-292., 2018 Линк

437. Kaneva, N., Stambolova, I, Blaskov, V., Dimitriev, Y., Bojinova, A., Dushkin, C.. A comparative study on the photocatalytic efficiency of ZnO thin films prepared by spray pyrolysis and sol–gel method. Surface and Coatings Technology, 207, 2012, 5-10. ISI IF:2.374

Цитира се в:

1589. Azizi, Mohamed Salah Samir, Boukhachem, Abdelwaheb , Khaldi , Chokri, Amlouk, Mosbah, Lamloumi, Jilani , Journal of Materials Science: Materials in Electronics 2018, 1-19, 2018 Линк

1590. Kumari, N., Gohel, J.V., Patel, S.R. 2018 Materials Science in Semiconductor Processing 75, pp. 149-156, 2018

1591. Kumari, N., Patel, S.R., Gohel, J.V. 2018 Optical and Quantum Electronics 50(4), 180, 2018

1592. Rahmati, A., Rahmani, B., Farokhipour, A. 2018 Journal of Materials Science: Materials in Electronics, 29(8), pp. 6350-6360, 2018

Page 101: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 101/154

1593. Nasiri, M., Rozati, S.M. 2018 Materials Science in Semiconductor Processing 81, pp. 38-43, 2018

1594. Z Yu, et al., Solution precursor plasma spray process as an alternative rapid one-step route for the development of hierarchical ZnO films for improved photocatalytic degradation Ceramics International, Volume 44, Issue 2, 2018, Pages 2085-2092, 2018

438. Koleva V., Petkova V.. IR spectroscopic study of high energy activated Tunisian phosphorite. Vibrational Spectroscopy, 58, Elsevier, 2012, ISSN:0924-2031, 125-132. ISI IF:2.003

Цитира се в:

1595. Abukhadra, M.R., Dardir, F.M., Shaban, M., Ahmed, E.A., Soliman, M.F. Superior removal of Co2+, Cu2+ and Zn2+ contaminants from water utilizing spongy Ni/Fe carbonate–fluorapatite; preparation, application and mechanism (2018) Ecotoxicology and Environmental Safety, 157, pp. 358-368., 2018 Линк

439. Gentscheva, G., Petrov, A., Ivanova, E., Havezov, I.. Flame AAS Determination of Trace Amounts of Cu, Ni, Co, Cd and Pd in Waters after preconcentration with 2-Nitroso-1-Naphthol. Bulgarian Chemical Communications, 44, 1, 2012, 52-56. ISI IF:0.32

Цитира се в:

1596. Sibal L.N. and M.P.B. Espino (2018) Heavy metals in lake water: a review on occurrence and analytical determination, International Journal of Environmental Analytical Chemistry, 98 (6) 536-554., 2018 Линк

440. Koutzarova, T., Kolev, S., Nedkov, I., Krezhov, K., Kovacheva, D., Blagoev, B., Ghelev, C., Henrist, C., Cloots, R., Zaleski, A.. Magnetic properties of nanosized Ba2Mg2Fe 12O22 powders obtained by auto-combustion. Journal of Superconductivity and Novel Magnetism, 25, 8, 2012, ISSN:15571939, DOI:DOI: 10.1007/s10948-011-1232-3, 2631-2635. ISI IF:0.909

Цитира се в:

1597. Sahu, B.B., Patri, S.K., Behera, B., Maharana, B. Electrical properties of Y-type hexaferrite (2018) Journal of Advanced Dielectrics, 8 (3), art. no. 1850022, ., 2018 Линк

1598. Lehlooh, A.-F., Al Rasheed, E.A., Said, M.R., Hammoudeh, A.Y., Bsoul, I., Mahmood, S.H. Mössbauer spectroscopy BaSrNixCo2−xFe12O22 hexaferrite prepared by sol-gel method (2018) Hyperfine Interactions, 239 (1), art. no. 23, ., 2018 Линк

1599. Malik, Huma, et al. "Structural, spectral, thermal and dielectric properties of Nd-Ni co-doped Sr-Ba-Cu hexagonal ferrites synthesized via sol-gel auto-combustion route." Ceramics International 44.1 (2018): 605-612., 2018 Линк

441. Chakarova, K., Drenchev, N., Hadjiivanov, K.. FTIR evidence of different bonding of methane to OH groups on H–ZSM-5, HY, and SiO2. Journal of Physical Chemistry C, 116, 2012, DOI:10.1021/jp3052592, 17101-17109. ISI IF:4.814

Цитира се в:

1600. A. J. Maia, E. B. Pereira, A. C. Sola, N. Homs, P. Ramírezde la Piscina, B. Louis, M. M. Pereira, "Understanding bifunctional behavior of Ni/HZSM5 catalyst under isobutane atmosphere", Mol. Catal., 458 (2018) 145-151., 2018 Линк

442. Hadjiivanov, K., Chakarova, K., Drenchev, N., Mihaylov, M.. Characterization of porous materials by FTIR spectroscopy of isotopically labelled probe molecules. Current Physical Chemistry - Bentham Science, 2, 2012, DOI:10.2174/1877946811202020151, 151-161

Цитира се в:

1601. G. Paul, C. Bisio, I. Braschi, M. Cossi, G. Gatti, E. Gianotti , L. Marchese, "Combined solid-state NMR, FT-IR and computational studies on layered and porous materials", Chem. Soc. Rev., 47 (2018) 5684-5739., 2018 Линк

443. Todorova, S., Naydenov, A., Kolev, H., Holdago, J. P., Ivanov, G., Kadinaov, G., Caballero, A.. Mechanism of complete n-hexane oxidation on silica supported cobalt and manganese catalysts. Applied Catalysis A: General, 413-414, Elsevier, 2012, DOI:10.1016/j.apcata.2011.10.041, 43-51. ISI IF:3.94

Цитира се в:

1602. Chang, T., Lu, J., Shen, Z., Huang, Y., Lu, D., Wang, X., Cao, J., Morent, R., Simulation and optimization of the post plasma-catalytic system for toluene degradation by a hybrid ANN and NSGA-II method(2019) Applied Catalysis B: Environmental, 244, pp. 107-119., 2018 Линк

1603. Chang, T., Shen, Z., Huang, Y., Lu, J., Ren, D., Sun, J., Cao, J., Liu, H., Post-plasma-catalytic removal of toluene using MnO2-Co3O4 catalysts and their synergistic mechanism, (2018) Chemical Engineering Journal, 348, pp. 15-25., 2018 Линк

1604. Wang, Z., Qin, Y., Pan, F., Li, Z., Zhang, W., Wu, F., Chen, D., Wen, W., Li, J., Mesoporous Silica-Supported Manganese Oxides for Complete Oxidation of Volatile Organic Compounds: Influence of Mesostructure, Redox Properties, and Hydrocarbon Dimension(2018) Industrial and Engineering Chemistry Research, 57 (22), pp. 7374-7382., 2018 Линк

1605. Laura, U., Arruebo, M., Sebastian, V., Towards the continuous production of Pt-based heterogeneous catalysts using microfluidic systems (2018) Dalton Transactions, 47 (5), pp. 1693-1702., 2018 Линк

1606. Yang, S., He, Q., Wang, C., Jiang, H., Wu, C., Zhang, Y., Zhou, T., Zhou, Y., Song, L., Confined bimetallic phosphide within P, N co-doped carbon layers towards boosted bifunctional oxygen catalysis(2018) Journal of Materials Chemistry A, 6 (24), pp. 11281-11287., 2018 Линк

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page 102/154

444. Tsoncheva, T., Gallo, A., Scotti, N., Dimitrov, M., Delaigle, R., Gaigneaux, E.M., Kovacheva, D., Dal Santo, V., Ravasio, N.. Optimization of the preparation procedure of cobalt modified silicas as catalysts in methanol decomposition. Applied Catalysis A: General, 417-418, 2012, ISSN:0926860, DOI:10.1016/j.apcata.2011.12.042, 209-219. ISI IF:3.942

Цитира се в:

1607. Dharanipragada, NVR Aditya, et al. "Bifunctional Co-and Ni-ferrites for catalyst-assisted chemical looping with alcohols." Applied Catalysis B: Environmental 222 (2018): 59-72., 2018 Линк

1608. Jing, J., Li, L., Chu, W., Wei, Y., Jiang, C. Microwave-assisted synthesis of high performance copper-based catalysts for hydrogen production from methanol decomposition (2018) International Journal of Hydrogen Energy, 43 (27), pp. 12059-12068., 2018 Линк

1609. Shilina, M. I., et al. "Polynuclear Co-oxo cations in the catalytic oxidation of CO on Co-modified ZSM-5 zeolites." Materials Chemistry and Physics (2018)., 2018 Линк

445. Kashchieva, E., Petrov, I., Aleksandrov, L., Iordanova, R., Dimitriev, Y.. Microstructure of multicomponent borosilicate glasses containing MoO3. Physics and Chemistry of Glasses, 53, 6, Society of Glass Technology, 2012, ISSN:00319090, 264-270. ISI IF:0.691

Цитира се в:

1610. Patil, D. S., M. Konale, M. Gabel, O. K.Neill, J. V.Crum, A. Goel, M. C.Stennett, N. C.Hyatt, and J. S.McCloy. “Impact of rare earth ion size on the phase evolution of MoO3-containing aluminoborosilicate glass-ceramics”. Journal of Nuclear Materials 510 (2018): 539., 2018 Линк

446. Stambolova I., Shipochka M., Blaskov V., Loukanov A., Vassilev S.. Sprayed nanostructured TiO2 films for efficient photocatalytic degradation of textile azo dye. Journal of Photochemistry and Photobiology B: Biology, 117, Elsevier, 2012, ISSN:1011-1344, 19-26. SJR:0.774, ISI IF:3.11

Цитира се в:

1611. Hodgkinson, J.L., Yates, H.M., Walter, A., (...), Moon, S.-J., Nicolay, S., 4. Roll to roll atmospheric pressure plasma enhanced CVD of titania as a step towards the realisation of large area perovskite solar cell technology, Journal of Materials Chemistry C 6(8), pp. 1988-1995, 2018, 2018

1612. Hao, D.-Z., Han, P.-G., Niu, M.-S., Effects of film thickness on optical performance and photocatalytic ability of Ag-TiO2 thin films, Guangdianzi Jiguang/Journal of Optoelectronics Laser, 29(1), pp. 52-56, 2018, 2018

1613. Atay, F., Akyuz, I., Cergel, M.S., Erdogan, B., "Production and Characterization of (004) Oriented Single Anatase TiO2 Films." Journal of Electronic Materials: 47(2), 1601–1610, 2018, 2018 Линк

447. Angelova, D., Uzunova, S., Uzunov, I., Anchev, B.. Dependence between oil sorption capacity of pyrolyzed rice husks and the composition and amount of fluids dispersed on their surface. J.Chem.Technol. Metall., 47, 2, University of Chemical Ttechnology and Metallurgy, 2012, ISSN:1311-7629, 147. SJR:0.331

Цитира се в:

1614. Kussainova M. et al. "SORPTION REMOVAL OF Pb2+, Cd2+, Cu2+ FROM DILUTED ACID SOLUTION BY CHITOSAN MODIFIED ZEOLITE". Journal of Chemical Technology and Metallurgy, 53, 1, 2018, 94-100, 2018

448. Bachvarova-Nedelcheva A., Iordanova R., Kostov K. L., Yordanov St., Ganev V.. Structure and properties of a non-traditional glass containing TeO2, SeO2 and MoO3. Optical Materials, 34, 11, 2012, ISSN:0925-3467, 1781-1787. SJR:0.82, ISI IF:1.52

Цитира се в:

1615. Chen Q., Su K., Zhao Zh., Ma Q., Optical and electrical properties of SeO2 modified PbO-Bi2O3-B2O3 glasses, J. Non-Cryst. Sol., 498 (15) (2018) pp. 448-454., 2018 Линк

1616. Satya Gopal Rao P., Siripuram R. & Sripada S., Structural study of TeO2–SeO2–Li2O ternary glass system using Raman and IR, Phys. Chem. Glasses: Eur. J. Glass Sci. Technol. B, 59 (2) (2018) pp. 88-92., 2018 Линк

1617. Chen Q., Su K., Li Y., Zhao Zh., Structure, spectra and thermal, mechanical, Faraday rotation properties of novel diamagnetic SeO2-PbO-Bi2O3-B2O3 glasses, Optical Materials, 80 (2018) pp. 216–224., 2018 Линк

449. Dostanić, J., Grbić, B,, Radić, N., Stefanov, P.,, Šaponjić, Z., Buha, J., Mijin, D. Photodegradation of an azo pyridone dye using TiO 2 films prepared by the spray pyrolysis method. Chemical Engineering Journal, 180, Elsevier, 2012, ISSN:13858947, DOI:10.1016/j.cej.2011.10.100, 57-65. SJR:1.743, ISI IF:5.31

Цитира се в:

1618. Aazam, E.S., Mohamed, R.M., Hassan, T.M. Pd-doped in2o3nanocomposites for the photocatalytic degradation of atrazine Desalination and Water Treatment, 101, pp. 216-222, (2018), 2018 Линк

1619. Al-Amshany, Zahra M.; Hussein, M. A. Novel Pd/ZnWO4 nanocomposite materials for photocatalytic degradation of atrazine APPLIED NANOSCIENCE Volume: 8 Issue: 3 Pages: 527-536 , 2018, 2018 Линк

Page 103: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 103/154

1620. Sanchez-Martinez, A., Ceballos-Sanchez, O., Koop-Santa, C., López-Mena, E.R., Orozco-Guareño, E., García-Guaderrama, M. N-doped TiO2 nanoparticles obtained by a facile coprecipitation method at low temperature Ceramics International, 44 (5), pp. 5273-5283. (2018), 2018 Линк

1621. Ranasinghe, C.S.K., Vequizo, J.J.M., Yamakata, A., "Fabrication of robust TiO2 thin films by atomized spray pyrolysis deposition for photoelectrochemical water oxidation , " Journal of Photochemistry and Photobiology A: Chemistry, 358, Pages: 320-326 , 2018, 2018 Линк

450. Georgieva, I., Danchova, N., Gutzov, S., Trendafilova, N.. DFT modeling, UV/Vis and IR spectroscopic study of acetylacetone - modified zirconia sol-gel materials. Journal of Molecular Modeling, 18, Springer-Verlag, 2012, ISSN:1610-2940, DOI:10.1007/s00894-011-1257-3, 2409-2422. ISI IF:1.736

Цитира се в:

1622. Habran, M., Pontón, P.I., Mancic, L., Pandoli, O., Krambrock, K., da Costa, M.E.H.M., Letichevsky, S., Costa, A.M.L.M., Morgado, E., Marinkovic, B.A., Visible light sensitive mesoporous nanohybrids of lepidocrocite-like ferrititanate coupled to a charge transfer complex: Synthesis, characterization and photocatalytic degradation of NO (2018) Journal of Photochemistry and Photobiology A: Chemistry, 365, pp. 133-144., 2018 Линк

1623. Catauro, M., Tranquillo, E., Salzillo, A., Capasso, L., Illiano, M., Sapio, L., Naviglio, S. Silica/Polyethylene glycol hybrid materials prepared by a sol-Gel method and containing chlorogenic acid (2018) Molecules, 23 (10), art. no. 2447, , 2018 Линк

1624. Catauro, M., Naviglio, D., Risoluti, R., Vecchio Ciprioti, S., Sol–gel synthesis and thermal behavior of bioactive ferrous citrate–silica hybrid materials (2018) Journal of Thermal Analysis and Calorimetry, 133 (2), pp. 1085-1092., 2018 Линк

1625. Bollino, F., Tranquillo, E., Barrino, F., Catauro, M., Preparation of sol-gel organic-inorganic hybrid coatings for controlled drug release (2018) AIP Conference Proceedings, 1981, art. no. 020110, , 2018 Линк

1626. Catauro, M., Tranquillo, E., Poggetto, F.D., Bollino, F. 7003928062;57193718431;57201066231;37116495900; Magnetic properties of sol-gel hybrid materials for aerospace field (2018) AIP Conference Proceedings, 1981, art. no. 020126., 2018 Линк

1627. Sun, X., Ma, J., Chen, X., (...), Deng, C., Liu, B., Sol–gel preparation of ZrC–ZrO2composite microspheres using fructose as a carbon source, 2018, Journal of Sol-Gel Science and Technology, 86(2), pp. 431-440., 2018 Линк

451. Spassova I., Tsoncheva T., Velichkova N., Khristova M., Nihtianova D.. Catalytic Reduction of NO with Decomposed Methanol on Alumina- Supported Mn-Ce Catalysts. Journal of Colloid and Interface Science, 374, 1, Elsevier, 2012, 267-277. ISI IF:3.368

Цитира се в:

1628. Hongxia Guo, Xiaochen Kou, Yujun Zhao, Shengping Wang, Xinbin Ma, Role of microstructure, electron transfer, and coordination state in the CO2 capture of calcium-based sorbent by doping (Zr-Mn), Chemical Engineering Journal, 336 (2018) 376-385., 2018 Линк

1629. ZAMAN, Sharif F., et al. Mn/CeO2 CATALYST FOR DIMETHYL ETHER PRODUCTION VIA OXIDATIVE DEHYDRATION OF METHANOL. U.S. Patent Application No 15/468, 624, 2018., 2018

1630. Guo, H., Kou, X., Zhao, Y., Wang, S., Sun, Q., & Ma, X. (2018). Effect of synergistic interaction between Ce and Mn on the CO2 capture of calcium-based sorbent: Textural properties, electron donation, and oxygen vacancy. Chemical Engineering Journal, 334, 237-246., 2018

1631. Pang, C., Zhuo, Y., Weng, Q., & Zhu, Z. (2018). The promotion effect of manganese on Cu/SAPO for selective catalytic reduction of NO x with NH 3. RSC Advances, 8(11), 6110-6119., 2018

1632. Gao, J., Han, Y., Mu, J., Wu, S., Tan, F., Shi, Y., & Li, X. (2018). 2D, 3D mesostructured silicas templated mesoporous manganese dioxide for selective catalytic reduction of NOx with NH3. Journal of colloid and interface science, 516, 254-262., 2018

1633. Lin, X., Li, S., He, H., Wu, Z., Wu, J., Chen, L., ... & Fu, M. (2018). Evolution of oxygen vacancies in MnOx-CeO2 mixed oxides for soot oxidation. Applied Catalysis B: Environmental, 223, 91-102., 2018

452. H. Aleksandrov, Zdravkova, V., Mihaylov, M., P. Petkov, G. Vayssilov, Hadjiivanov , K.. Precise Identification of the Infrared Bands of the Polycarbonyl Complexes on Ni-MOR Zeolite by 12C16O–13C18O Co-adsorption and Computational Modeling. J. Phys. Chem. C, 116, 43, American Chemical Society, 2012, DOI:10.1021/jp304972u, 22823-22831. ISI IF:4.772

Цитира се в:

1634. R. Joshi, G. Zhang , J.T. Miller and R. Gounde, Evidence for the Coordination-Insertion Mechanism of Ethene Dimerization at Nickel Cations Exchanged onto Beta Molecular Sieves, ACS Catal., 2018, 8, pp 11407–11422, 2018 Линк

453. Atanasova, G., Dikovska, A. Og., Stankova, M., Stefanov, P., Atanasov, P. A.. XPS study of ZnO nanostructures prepared by laser ablation. Journal of Physics: Conference Series, 356, 1, 2012, ISSN:17426588, DOI:doi:10.1088/1742-6596/356/1/012036, 012036. SJR:0.217

Цитира се в:

1635. Choi, A., Park, J., Kang, Y., Lee, S., Kang, Y.-C., Compositional ratio effect on the surface characteristics of CuZn thin films, 2018, Physica B: Condensed Matter, 537, pp. 251-257, 2018, 2018

454. A. Gallo, T. Tsoncheva, M. Marelli, Mihaylov, M., M. Dimitrov, V. Dal Santo, Hadjiivanov , K.. Size Controlled Copper Nanoparticles Hosted

Page 104: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 104/154

in Mesoporous Silica Matrix: Preparation and Characterization. Applied Catalysis B: Environmental, 126, Elsevier, 2012, DOI:doi:10.1016/j.apcatb.2012.07.022, 161-171. ISI IF:7.435

Цитира се в:

1636. A.K. Pandey, Synthesis and Characterization of Biopolymer-Inorganic Composites, Ph. D. Thesis, University of Allahabad, Allahabad, India, 2018 [GB]., 2018

1637. A. Khartchenko, V.L. Zholobenko, A. Vicente, C. Fernandez, H. Vezin, V. De Waele and S. Mintova, "Formation of copper nanoparticles in LTL nanosized zeolite: spectroscopic characterization " Phys. Chem. Chem. Phys., 20 (2018) 2880-2889, 2018 Линк

455. Tepavitcharova, S, Rabadjieva, D, Havlicek, D, Nemec, I, Vojtisek, P, Plocek, J, Koleva, Z. Crystallization and characterization of the compounds Gly.MSO4.mH2O (M = Mg 2+, Mn 2+, Fe 2+, Co 2+, Ni 2+, Zn 2+; m = 0, 3, 5, 6). Journal of Molecular Structure, 1018, Elsevier, 2012, ISSN:0022-2860, DOI:10.1016/j.molstruc.2012.02.068, 113-121. SJR:0.405, ISI IF:1.602

Цитира се в:

1638. Avijit Kumar Paul, Synthesis, structure and topological analysis of glycine templated highly stable cadmium sulfate framework: A New Lewis Acid catalyst, Journal of Molecular Structure, 1157, 5, pp. 672-678, 2018, 2018 Линк

456. Kovacheva, D., Ruskov, T., Krystev, P., Asenov, S., Tanev, N., Mönch, I., Koseva, R., Wolff, U., Gemming, T., Markova-Velichkova, M., Nihtianova, D., Arndt, K.-F.. Synthesis and characterization of magnetic nano-sized Fe3O4 and CoFe2O4. Bulgarian Chemical Communications, 44, SPECIAL ISSUE, 2012, ISSN:0861-9808, 90-97. ISI IF:0.234

Цитира се в:

1639. Neto, Weslany Silvério, et al. "Superparamagnetic nanoparticles stabilized with free-radical polymerizable oleic acid-based coating." Journal of Alloys and Compounds, vol. 739 (2018) 1025-1036., 2018 Линк

457. Uzunova E, Mikosch H. Electronic Structure and Reactivity of Cobalt Oxide Dimers and Their Hexacarbonyl Complexes: A Density Functional Study. J. Phys. Chem. A, 116, ACS, 2012, 3295-3301. ISI IF:2.69

Цитира се в:

1640. Nakazawa, T. Density functional theory study on the geometric and electronic structures of Fe2O2 and the reaction of Fe2+O2 (2018) Computational Materials Science, 146, pp. 334-345., 2018

2013

458. Stoyanova A., Hitkova H., Bachvarova-Nedelcheva A., Iordanova R., Ivanova N., Sredkova M.. Synthesis and antibacterial activity of TiO2/ZnO nanocomposites prepared via nonhydrolytic route. J. Chem. Techn. Metall., 48, 2, 2013, ISSN:1314-7471 (print), 154-161. SJR:0.168

Цитира се в:

1641. Hamdy F. M Mohamed, E. E. Abdel-Hady, MFM Hmamm, M. Ibrahim, H. Ahmed, M. Mondy and H. Yehia, A promising fuel cell catalyst using non-precious metal oxide, The 4th International Conference on Advanced Applied Sciences The 4th International Conference on Advanced Applied Sciences, IOP Conf. Series: Materials Science and Engineering IOP Conf. Series: Materials Science and Engineering, 464 (2018) 012002 – 13, doi:10.1088/1757-899X/464/1/012002, 2018 Линк

1642. Rajendran K., Gajendiran M., Kim K., Kib K., Balasubramanian S., Synthesis and characterization of biocompatible zinc oxide nanorod 2 doped-titanium dioxide nanosheet, Journal of Industrial and Engineering Chemistry, 57 (2018) pp. 387-395., 2018 Линк

1643. Shakir Sh., Abd-ur-Rehman Hafiz M., Yunus K., Iwamoto M., Periasamy V., Fabrication of un-doped and magnesium doped TiO2 films by aerosol ssisted chemical vapor deposition for dye sensitized solar cells, Journal of Alloys and Compounds, 737 (2018) pp. 740-747, 2018 Линк

1644. Siwinska-Stefanska K., Fluder M., Tylus W., Jesionowski T., Investigation of amino-grafted TiO2/reduced graphene oxide hybrids as a novel photocatalyst used for decomposition of selected organic dyes, Journal of Environmental Management, 212 (2018) pp. 395-404., 2018 Линк

1645. Siwinska-Stefanska K., Kubiak A., Piasecki A., Goscianska J., Nowaczyk G., Jurga S. and Jesionowski T., TiO2-ZnO Binary Oxide Systems: Comprehensive Characterization and Tests of Photocatalytic Activity, Materials, 11 (5) (2018) pp. 841-850; doi:10.3390/ma11050841., 2018 Линк

1646. Manoharan Ch., Rajendran Venckatesh and Sivaraj Rajeshwari, Synthesis, Characterization and Applications of ZnO/TiO2/SiO2 Nanocomposite, Oriental journal of chemistry, 34 (3) (2018) 1333-1340., 2018 Линк

1647. Rajasulochana K., Ramasamy Raja V., Suganth A., Rajarajan M., Fabrication of Hetero junction p-LaNiO3 modified n-TiO2 as visible light active catalyst for photocalatytic degradation of 4-Chloro phenol, IJRAR- International Journal of Research and Analytical Reviews, 5 (3) (2018) pp. 374-386., 2018

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1648. Siwinska-Stefanska K., Kubiak A., Kurc B., Moszynski D., Goscianska J., and Jesionowsk T., An Active Anode Material Based on Titania and Zinc Oxide Hybrids Fabricated via a Hydrothermal Route: Comprehensive Physicochemical and Electrochemical Evaluations, Journal of The Electrochemical Society, 165 (13) (2018) pp. A3056-A3066., 2018 Линк

1649. Kubiak A., Siwińska-Ciesielczyk K. and Jesionowski T., Titania-Based Hybrid Materials with ZnO, ZrO2 and MoS2: A Review, Materials, 11 (11) (2018) pp. 2295-2351., 2018 Линк

459. Dikovska, A.Og., Alexandrov, M.T., Atanasova, G. B., Tsankov, N.T., Stefanov, P.K.. Silver nanoparticles produced by PLD in vacuum: role of the laser wavelength used,. Applied Physics A: Materials Science and Processing, 113, 1, Springer, 2013, ISSN:09478396, DOI:10.1007/s00339-013-7834-9, 83-88. SJR:0.54, ISI IF:1.444

Цитира се в:

1650. Boutinguiza, M., Fernández-Arias, M., del Val, J., (...), Gil, F.J., Pou, J., Synthesis and deposition of silver nanoparticles on cp Ti by laser ablation in open air for antibacterial effect in dental implants, Materials Letters 231, pp. 126-129, 2018, 2018

1651. Mansoureh, G., Parisa, V., Synthesis of metal nanoparticles using laser ablation technique (Book Chapter), Emerging Applications of Nanoparticles and Architectural Nanostructures: Current Prospects and Future Trends, pp. 575-596, 2018, 2018

460. Koleva V., Stefov V.. Phosphate ion vibrations in dihydrogen phosphate salts of the type M(H2PO4)2•2H2O (M = Mg, Mn, Co, Ni, Zn, Cd): spectra-structure correlations. Vibrational Spectroscopy, 64, Elsevier, 2013, ISSN:0924-2031, 89-100. ISI IF:2.003

Цитира се в:

1652. Sotiriadis, K., Mácová, P., Mazur, A.S., Tolstoy, P.M., Viani, A. A solid state NMR and in-situ infrared spectroscopy study on the setting reaction of magnesium sodium phosphate cement (2018) Journal of Non-Crystalline Solids, 498, pp. 49-59., 2018 Линк

1653. Liascukiene, I., Ben Salah, M., Sabot, R., Refait, P., Dhouibi, L., Méthivier, C., Landoulsi, J., Jeannin, M. Deciphering the role and nature of phosphate species at the surface of stainless steel immersed in phosphoric acid solutions (2018) Applied Surface Science, 434, pp. 561-572., 2018 Линк

461. M. G. Shipochka, I. D. Stambolova, V. N. Blaskov, P. K. Stefanov. XPS investigation on the surface of ZnO photocatalytic films obtained by polymer modified spray pyrolysis. Bulgarian Chemical Communications, 45, Special Issue B, 2013, ISSN:0861-9808, 105-109. SJR:0.14, ISI IF:0.32

Цитира се в:

1654. Marinov, G., Strijkova, V., Vasileva, M., (...), Malinowski, N., Babeva, T., 1. Effect of Substrate Temperature on the Microstructural, Morphological, and Optical Properties of Electrosprayed ZnO Thin Films, Advances in Condensed Matter Physics 2018, 8957507, 2018, 2018

462. Iordanova R., Bachvarova-Nedelcheva A., Gegova R., Dimitriev Y.. Synthesis and characterization of TeO2/TiO2 powders obtained through Te (VI) precursor. Bulg. Chem. Commun., 45, 4, 2013, ISSN:0324-1130, 485-490. SJR:0.175, ISI IF:0.31

Цитира се в:

1655. Valdivia-González M. A., Díaz-Vásquez W. A., Ruiz-León D., Becerra A. A., Aguayo D. R., Pérez-Donoso J. M., Vásquez C. C., A comparative analysis of tellurite detoxification by members of the genus Shewanella, Archives of Microbiology, 200 (2) (2018) pp. 267-273 (on line - https://link.springer.com/article/10.1007/s00203-017-1438-2)., 2018 Линк

463. Chakarova, K., Hadjiivanov, K.. FTIR study of N2 and CO adsorption on H-D-FER. Microporous and Mesoporous Materials, 177, 2013, 59-65. ISI IF:3.209

Цитира се в:

1656. M.-L. Tarot, M. Barreau, D. Duprez, V. Lauga, E. E. Iojoiu, X. Courtois, F. Can, "Influence of the Sodium Impregnation Solvent on the Deactivation of Cu/FER-Exchanged Zeolites Dedicated to the SCR of NOx with NH3" Catalysts, 8 (2018) 3., 2018 Линк

1657. F. Akti, M. Okur, "The Removal of Acid Violet 90 from Aqueous Solutions Using PANI and PANI/Clinoptilolite Composites: Isotherm and Kinetics", J. Polym. Environ., 26 (2018) 4233-4242., 2018 Линк

1658. M. Rubeš, M. Trachta, E. Koudelková, R. Bulánek, J. Klimeš, P. Nachtigall, O. Bludský, "Temperature Dependence of Carbon Monoxide Adsorption on a High-Silica H-FER Zeolite", J. Phys. Chem. C, 122 (2018) 26088-26095., 2018 Линк

464. Akika, F.-Z., Kihal, N., Habila, T., Avramova, I., Suzer, S., Pirotte, B., Khelili, S.. Synthesis and characterization of Zn(1-x)NixAl 2O4 spinels as a new heterogeneous catalyst of biginelli's reaction. Bulletin of the Korean Chemical Society, 5, 2013, ISSN:0253-2964, 1445-1453. ISI IF:0.797

Цитира се в:

1659. T Habila, M Belghobsi, MZ Stiti. et al. Synthesis and vasodilator activity of 3, 4-dihydropyrimidin-2(1H)-ones bearing urea, thiourea, and sulfonylurea moieties. (2018) Canadian Journal of Chemistry, 2018 Линк

465. Tsoncheva, T., Issa, G., Blasco, T., Concepcion, P., Dimitrov, M., Hernández, S., Kovacheva, D., Atanasova, G., López Nieto, J.M.. Silica

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supported copper and cerium oxide catalysts for ethyl acetate oxidation. Journal of Colloid and Interface Science, 404, 2013, ISSN:00219797, DOI:10.1016/j.jcis.2013.05.005, 155-160. ISI IF:3.368

Цитира се в:

1660. Yiming Liu, Yanhao Sun, Zhuobin Yu, Wanggang Zhang, Peide Han, Synthesis of Cu, N-Doped TiO2 Nanotube and Study on Photoelectric Properties, Preprints 2018, 2018080203 (doi: 10.20944/preprints201808.0203.v1)., 2018 Линк

1661. Chen, Shuang, et al. "Study of catalytic hydrodeoxygenation performance of Ni catalysts: Effects of prepared method." Renewable Energy 115 (2018): 1109-1117., 2018 Линк

1662. Kaminski, Piotr. "The application of FTIR in situ spectroscopy combined with methanol adsorption to the study of mesoporous sieve SBA-15 with cerium-zirconium oxides modified with gold and copper species." Arabian Journal of Chemistry (2017)., 2018 Линк

466. Maczka, M., Hermanowicz, K., Kepinski, L., Hanuza, J., Yordanova, A., Koseva, I.. Raman spectroscopy and optical properties of nanocrystalline NaAl(WO4)2:Cr3+ powders prepared by co-precipitation/calcination method. Optical Materials, 35, 2013, DOI:10.1016/j.optmat.2012.09.003, 338-346. SJR:0.693, ISI IF:1.981

Цитира се в:

1663. Denisenko, Yuriy G., et al. "Structure, Thermal Stability, and Spectroscopic Properties of Triclinic Double Sulfate AgEu (SO4) 2 with Isolated SO4 Groups." Inorganic chemistry (2018)., 2018 Линк

467. Velikova, N., Vueva, Y., Ivanova, Y., Salvado, I., Fernandes, M., Vassileva, P., Georgieva, R., Detcheva, A.. Silica-based organic-inorganic hybrid materials as potential adsorbents for Hg(II) ions. Journal of Chemical Technology and Metallurgy, 48, 6, 2013, ISSN:ISSN: 13117629, 577-584. SJR:0.16

Цитира се в:

1664. Kozhukharov, S., Dimitrov, T., Barrachina Albert, E., Roures, I.C., Chiva, D.F., Castelló, J.B.C. The utilization of waste materials in the glass and ceramics industries: Available approaches and technological aspects (2018) Recycling and Reuse of Materials, pp. 1-113. Book Chapter, 2018

468. Avramova, I., Suzer, S., Guergova, D., Stoychev, D., Stefanov, P.. CeOx/Al2O3 thin films on stainless steel substrate - Dynamical X-ray photoelectron spectroscopy investigations. Thin Solid Films, 536, 1, 2013, ISSN:0040-6090, 63-67. SJR:0.693, ISI IF:1.799

Цитира се в:

1665. Liu, Yuanyuan; Huang, Jiamu; Qin, Lilu; et al.Effect of Thickness on the Structure and Corrosion Performance of Sputtered Ce-Al-O Coatings on Al 2024-T3 Alloy Substrates. (2018) JOURNAL OF THE ELECTROCHEMICAL SOCIETY Volume: 165 Issue: 7 Pages: C395-C402., 2018

1666. Kozhukharov, S., Girginov, Ch. Enhancement of the cerium oxide primer layers deposited on AA2024-T3 aircraft alloy by preliminary anodization. (2018) JOURNAL OF ELECTROCHEMICAL SCIENCE AND ENGINEERING Volume: 8 Issue: 2 Special Issue: SI Pages: 113-127., 2018

1667. K Stawicka, P Decyk, A Wojtaszek-Gurdak, M Ziolek . Comparative study of acid-basic properties of MCF impregnated with niobium and cerium species.(2018) Catalysis Today, , 2018 Линк

469. Drenchev, N., Spassova, I., Ivanova, E., Khristova, M., Hadjiivanov, K.. Cooperative Effect of Ce and Mn in MnCe/Al2O3 Environmental Catalysts. Appl. Catal., B, 138-139, 2013, DOI:10.1016/j.apcatb.2013.03.012, 362-372. ISI IF:7.435

Цитира се в:

1668. M. Amereh, M. Haghighi and P. Estifaee, The potential use of HNO3-treated clinoptilolite in the preparation of Pt/CeO2-Clinoptilolite nanostructured catalyst used in toluene abatement from waste gas stream at low temperature, Arabian Journal of Chemistry 11 (1) 81-90, 03/2015, DOI: 10.1016/j.arabjc.2015.02.003 [ISI], 2018 Линк

1669. Arena, F., di Chio, R., Espro, C., Palella, A., & Spadaro, L. (2018). A definitive assessment of the CO oxidation pattern of a nanocomposite MnCeO x catalyst. Reaction Chemistry & Engineering, 3, 293-300 [ISI], 2018 Линк

1670. Zhao, H., Han, W., Dong, F., & Tang, Z. " Highly-efficient catalytic combustion performance of 1, 2-dichlorobenzene over mesoporous TiO2–SiO2 supported CeMn oxides: The effect of acid sites and redox sites". Journal of Industrial and Engineering Chemistry, 64, (2018) 194-205., 2018 Линк

1671. Li, W., Liu, H., Ma, X., Mo, S., Li, S., & Chen, Y. (2018). Fabrication of silica supported Mn–Ce benzene oxidation catalyst by a simple and environment-friendly oxalate approach. Journal of Porous Materials, 25(1), 107-117. [ISI], 2018 Линк

1672. Bilal, Y., Nasir, M. A., Nasreen, S., Akhter, N. A., Pasha, R. A., & Noor, M. F. (2018). Synthesis and Activity Evaluation of Ce-Mn-Cu Mixed Oxide Catalyst for Selective Oxidation of CO in Automobile Engine Exhaust: Effect of Ce/Mn Loading Content on Catalytic Activity. Advances in Science and Technology. Research Journal, 12(1), pp. 260–266. [ISI], 2018 Линк

1673. J. Chen, X. Chen, X. Chen, W. Xu, Z. Xu., H. Jia and J. Chen, Homogeneous Introduction of CeOy into MnOx-based Catalyst for Oxidation of Aromatic VOCs, Appl. Catal., 224, (2018), pp. 825-835 [ISI]., 2018 Линк

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470. Milenova, K., Stambolova I., Blaskov, V., Eliyas A., Vassilev S., Shipochka M.. The effect of introducing copper dopant on the photocatalytic activity of zno nanoparticles (3) 259-. Journal of the University of Chemical Technology and Metallurgy, 48, 3, 2013, 259

Цитира се в:

1674. Khan, Shakeel Ahmad, et al. "Green synthesis of ZnO and Cu-doped ZnO nanoparticles from leaf extracts of Abutilon indicum, Clerodendrum infortunatum, Clerodendrum inerme and investigation of their biological and photocatalytic activities." Materials Science and Engineering: C 82 (2018): 46-59., 2018

1675. Structural and optical characterizations of (Cu, Ce) iso-co-doped ZnO aerogel structures grown in supercritical ethanol Djouadi, D., Slimi, O., Hammiche, L., Chelouche, A., Touam, T. 2018 Journal of Porous Materials, 2018

1676. Structural and optical properties of Cu doped ZnO aerogels synthesized in supercritical ethanol Slimi, O., Djouadi, D., Hammiche, L., Chelouche, A., Touam, T. 2018 Journal of Porous Materials 25(2), pp. 595-601, 2018

1677. Effects of (Ce, Cu) Co-doping on the Structural and Optical Properties of ZnO Aerogels Synthesized in Supercritical EthanolDjouadi, D., Slimi, O., Hammiche, L., Chelouche, A., Touam, T. 2018 Journal of Physics: Conference Series 987(1), 012008, 2018

1678. Synthesis and optical properties of Co2+-doped ZnO Network prepared by new precursors Akhtari, F., Zorriasatein, S., Farahmandjou, M., Elahi, S.M. 2018 Materials Research Express 5(6), 065015, 2018

1679. Synthesis, characterization and application of Cu doped ZnO nanocatalyst for photocatalytic ozonation of textile dye and study of its reusability Pandian, L., Rajasekaran, R., Govindan, P. 2018 Materials Research Express 5(11), 115505, 2018

471. Uzunova E, Mikosch H. Cation site preference in zeolite clinoptilolite: A density functional study. Microporous Mesoporous Materials, 177, Elsevier, 2013, ISSN:1387-1811, DOI:http://www.sciencedirect.com/science/article/pii/S1387181113002394, 113-121. ISI IF:3.45

Цитира се в:

1680. Murthy, V., Khosravi, M., Mackinnon, I.D.R. Molecular Modeling of Univalent Cation Exchange in Zeolite N (2018) Journal of Physical Chemistry C, 122 (20), pp. 10801-10810., 2018

1681. Kennedy, D.A., Tezel, F.H. Cation exchange modification of clinoptilolite – Screening analysis for potential equilibrium and kinetic adsorption separations involving methane, nitrogen, and carbon dioxide (2018) Microporous and Mesoporous Materials, 262, pp. 235-250, 2018

472. Markova-Velichkova, M., Lazarova, T., Tumbalev, V., Ivanov, G., Kovacheva, D., Stefanov, P., Naydenov, A.. Complete oxidation of hydrocarbons on YFeO3 and LaFeO3 catalysts. Chemical Engineering Journal, 231, Elsevier, 2013, DOI:10.1016/j.cej.2013.07.029, 236-244. SJR:1.585, ISI IF:4.321

Цитира се в:

1682. Galal, A., Hassan, H.K., Jacob, T., Atta, N.F. Enhancing the specific capacitance of SrRuO3 and reduced graphene oxide in NaNO3, H3PO4 and KOH electrolytes (2018) Electrochimica Acta, 260, pp. 738-747., 2018 Линк

1683. Keav, Sylvain, et al. "A Review on Automotive Three-Way Catalysts (TWC) with the Application of Structured Perovskite-type Oxides." Catalyst 4 (2018): 227., 2018 Линк

1684. Yamaguchi, Syuhei, Daniel Sánchez-Rodríguez, and Hidenori Yahiro. "CATALYTIC ACTIVITY OF LIQUID-PHASE REACTION OVER PEROVSKITE-TYPE OXIDE CATALYST SYNTHESIZED FROM HETERONUCLEAR METAL CYANO COMPLEX PRECURSOR." Proceedings of the 12th Pacific Rim Conference on Ceramic and Glass Technology: Ceramic Transactions. Vol. 264. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2018., 2018 Линк

473. Kaneva, N., Stambolova I., Blaskov, V., Eliyas, A., Vassilev., S.. Microwave-assisted and conventional sol-gel preparation of photocatalytically active ZnO/TiO2/glass multilayers. Central European Journal of Chemistry, 7, 2013, 105, SJR:0.346, ISI IF:1.329

Цитира се в:

1685. Muhd Julkapli, N., Bagheri, S. 2018 Green Energy and Technology (9783319695563), pp. 51-67, 2018

1686. Shahi, S.K., Kaur, N., Shahi, J.S., Singh, V. Investigation of morphologies, photoluminescence and photocatalytic properties of ZnO nanostructures fabricated using different basic ionic liquids, 2018 Journal of Environmental Chemical Engineering, 6(3), pp. 3718-3725, 2018

474. Tsoncheva, T., Issa, G., López Nieto, J.M., Blasco, T., Concepcion, P., Dimitrov, M., Atanasova, G., Kovacheva, D.. Pore topology control of supported on mesoporous silicas copper and cerium oxide catalysts for ethyl acetate oxidation. Microporous and Mesoporous Materials, 180, 2013, ISSN:13871811, DOI:10.1016/j.micromeso.2013.06.017, 156-161. ISI IF:3.453

Цитира се в:

1687. Wang, Z., Qin, Y., Pan, F., (...), Wen, W., Li, J., Mesoporous Silica-Supported Manganese Oxides for Complete Oxidation of Volatile Organic Compounds: Influence of Mesostructure, Redox Properties, and Hydrocarbon Dimension, Industrial and Engineering Chemistry Research, 57(22), pp. 7374-7382, 2018, 2018 Линк

1688. Nicolas Bion Fabien Can XavierCourtois Daniel Duprez, 6 - Transition metal oxides for combustion and depollution processes, Metal Oxides in Heterogeneous Catalysis, Metal Oxides, 2018, Pages 287-353, 2018 Линк

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475. Velikova, N., Vueva, Y., Ivanova, Y., Salvado, I., Fernandes, M., Vassileva, P., Georgieva, R., Detcheva, A.. Synthesis and characterization of sol–gel mesoporous organosilicas functionalized with amine groups. Journal of Non-Crystalline Solids, 378, Elsevier, 2013, ISSN:ISSN: 0022-3093, DOI:DOI:10.1016/j.jnoncrysol.2013.06.024, 89-95. ISI IF:1.716

Цитира се в:

1689. Kheshtzar, I., Ghorbani, M., Gatabi, M.P., Lashkenari, M.S., "Facile synthesis of smartaminosilane modified- SnO2/porous silica nanocomposite for high efficiency removal of lead ions and bacterial inactivation" Journal of Hazardous Materials, 359, 19-30, 2018, 2018

1690. Villis, P.C.M., Gomes, W.C., Silva, F.B. dos Santos, D.R. Silveira, G.b, de Morais, A. Blasques, R.V. Nunes, G.S. Pissetti, F.L. Gushikem, Y. Lucho, A.M.S., Copper(II) trace determination in aqueous/ethanolic medium using an ionic imprinted hybrid, International Journal of Electrochemical Science 13(11), 10564-10586, 2018, 2018

1691. Heidari, B.S. Cheraghchi, V.-S., Motahari, S., Motlagh, G.H. Davachi, S.M., Optimized mercapto-modified resorcinol formaldehyde xerogel for adsorption of lead and copper ions from aqueous solutions, Journal of Sol-Gel Science and Technology, 88(1) 236-248, 2018, 2018

476. Uzunova E, Mikosch H. Adsorption and Activation of Ethene in Transition Metal Exchanged Zeolite Clinoptilolite: a Density Functional Study. ACS Catal, 3, ACS, 2013, ISSN:2155-5435, DOI:http://dx.doi.org/10.1021/cs4005997, 2759-2766. ISI IF:9.3

Цитира се в:

1692. Selvaraj, T., Rajalingam, R., Balasubramanian, V. Impact of zeolite-Y framework on the geometry and reactivity of Ru (III) benzimidazole complexes – A DFT study (2018) Applied Surface Science, 434, pp. 781-786, 2018

1693. Selvaraj, T., Renganathan, R. Influence of Different Zeolite Frameworks on the Geometry of Platinum(II)tetraammine Complex (2018) ACS Omega, 3 (3), pp. 2558-2563., 2018

1694. Selvaraj, T., Rajalingam, R. Theoretical Studies of the Zeolite-Y Encapsulated Chlorine-Substituted Copper(II)phthalocyanine Complex on the Formation Glycidol from Allyl Alcohol (2018) ACS Omega, 3 (8), pp. 9613-9619., 2018 Линк

477. Georgieva, R., Detcheva, A., Karadjov, M., Jordanov, J., Ivanova, E.. Total reflection X-ray fluorescence analysis of trace elements in Bulgarian bottled mineral waters of low and high mineral content. International Journal of Environmental Analytical Chemistry, 93, 10, Taylor and Francis, 2013, ISSN:ISSN: 0306-7319, DOI:DOI: 10.1080/03067319.2013.775277, 1043-1051. ISI IF:1.24

Цитира се в:

1695. Borgese, L., Dalipi, R., Riboldi, A., Bilo, F., Zacco, A., Federici, S., Bettinelli, M., Bontempi, E., Depero, L.E., "Comprehensive approach to the validation of the standard method for total reflection X-ray fluorescence analysis of water", Talanta, 181(1) , 165-171, 2018, 2018

1696. Takahara, H. Ohbuchi, A. Murai, K., "Method development for the analysis of poorly soluble solids by total reflection X-ray fluorescence spectrometry, Spectrochimica Acta - Part B Atomic Spectroscopy, 149, 276-280, 2018, 2018

478. Amalraj, S.F., Sharon, D., Talianker, M., Julien, C.M., Burlaka, L., Lavi, R., Zhecheva, E., Markovsky, B., Zinigrad, E., Kovacheva, D., Stoyanova, R., Aurbach, D.. Study of the nanosized Li2MnO3: Electrochemical behavior, structure, magnetic properties, and vibrational modes. Electrochimica Acta, 97, 2013, ISSN:0013-4686, DOI:10.1016/j.electacta.2013.03.029, 259-270. ISI IF:4.504

Цитира се в:

1697. Tan, X., Liu, R., Xie, C., & Shen, Q. (2018). Modified structural characteristics and enhanced electrochemical properties of oxygen-deficient Li 2 MnO 3-δ obtained from pristine Li 2 MnO 3. Journal of Power Sources, 374, 134-141., 2018 Линк

1698. Nayak, P.K., Erickson, E.M., Schipper, F., Penki, T.R., Munichandraiah, N., Adelhelm, P., Sclar, H., Amalraj, F., Markovsky, B., Aurbach, D. "Review on Challenges and Recent Advances in the Electrochemical Performance of High Capacity Li- and Mn-Rich Cathode Materials for Li-Ion Batteries". Advanced Energy Materials, 8 (8), art. no. 1702397, 2018, 2018 Линк

1699. Sun, R., Jakes, P., Taranenko, S., Kungl, H., Eichel, R.-A. Monitoring the reaction between lithium manganese spinel and Li2MnO3 during heat treatment using Electron Paramagnetic Resonance (EPR) spectroscopy (2018) Solid State Ionics, 325, pp. 201-208., 2018 Линк

1700. Xiong, L., Sun, M., Xu, Y., Du, X., Xiao, X. Synthesis of carbon coated Li2MnO3 cathode material with enhanced rate capability for lithium-ion batteries (2018) Solid State Ionics, 325, pp. 170-175., 2018 Линк

1701. Wang, Q., Yang, W., Kang, F., Li, B. Na2Mn3+ 0.3Mn4+ 2.7O6.85: A cathode with simultaneous cationic and anionic redox in Na-ion battery (2018) Energy Storage Materials, 14, pp. 361-366., 2018 Линк

1702. Saroha, R., Panwar, A.K., Bhardwaj, A. Synthesis and electrochemical properties of low-temperature synthesized Li2MnO3/MWCNT/super P as a high capacity cathode material for lithium ion batteries (2018) AIP Conference Proceedings, 2009, art. no. 020038, ., 2018 Линк

1703. Sun, R., Jakes, P., Eurich, S., van Holt, D., Yang, S., Homberger, M., Simon, U., Kungl, H., Eichel, R.-A. Secondary-Phase Formation in Spinel-Type LiMn2O4-Cathode Materials for Lithium-Ion Batteries: Quantifying Trace Amounts of Li2MnO3 by Electron Paramagnetic Resonance Spectroscopy (2018) Applied Magnetic Resonance, 49 (4), pp. 415-427., 2018 Линк

1704. Qiao, Y., Guo, S., Zhu, K., Liu, P., Li, X., Jiang, K., Sun, C.-J., Chen, M., Zhou, H. Reversible anionic redox activity in Na3RuO4 cathodes:

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A prototype Na-rich layered oxide (2018) Energy and Environmental Science, 11 (2), pp. 299-305., 2018 Линк

1705. Vu, N.H., Im, J.C., Unithrattil, S., Im, W.B. Synergic coating and doping effects of Ti-modified integrated layered-spinel Li1.2Mn0.75Ni0.25O2+:δ as a high capacity and long lifetime cathode material for Li-ion batteries (2018) Journal of Materials Chemistry A, 6 (5), pp. 2200-2211., 2018 Линк

1706. Serrano-Sevillano, J., Reynaud, M., Saracibar, A., Altantzis, T., Bals, S., Van Tendeloo, G., Casas-Cabanas, M. Enhanced electrochemical performance of Li-rich cathode materials through microstructural control (2018) Physical Chemistry Chemical Physics, 20 (35), pp. 23112-23122., 2018 Линк

1707. Nayak, P. K., Yang, L., Brehm, W., & Adelhelm, P. From lithium‐ion to sodium‐ion batteries: A materials perspective. Volume 57, Issue 1, January 2, 2018, Pages 102–120., 2018 Линк

479. Nikolova, Kr., Gentscheva, G., Panchev, I., Ivanova, E.. Survey of the mineral content and some physico-chemical parameters of Bulgarian bee honeys. Bulgarian Chemical Communications, 45, 2, 2013, 244-249. ISI IF:0.32

Цитира се в:

1708. Meli, M. A., I. Fagiolino, D. Desideri, C. Roselli, (2018). Essential and toxic elements in honeys consumed in Italy. Journal of Toxicology and Environmental Health, Part A, 81 (21) 1123-1134, 2018 Линк

480. Copcia V. E., Hristodor C. M., Dunca S., Iordanova R., Bachvarova-Nedelcheva A., Forna N., Sandu I.. Synthesis and Antibacterial Properties of ZnO/Clinoptilolite and TiO2/ZnTiO3/Clinoptilolite Powders. Revista de Chimie - Bucharest, 64, 9, 2013, ISSN:0034-7752, 978-981. SJR:0.276, ISI IF:0.81

Цитира се в:

1709. Anistoroaie Daniela, Nicoleta Matei Madalina, Pacurar Mariana, Buzatu Roxana, Porumb Anca, Romanec Cristian, Interrelations Between Odonto-Parodontal Affects of the First Permanent Molar and their Odontogenetic and Morfostructural Peculiarities, Rev.Chim., 69 (11) (2018) pp. 4210-14, 2018 Линк

1710. Raftu Gheorghe, Nechita Aurel, Constantin Budacu Cristian, Porumb Anca, Andreea Macovei Luana, The Field Limit Between Neurophysiology and Psychopathology Oro-Facial Apraxia, Rev.Chim., 69 (11) (2018) pp. 4175-4179., 2018 Линк

1711. Glod M., Damir D., Nichitus S., Calin G., Doina Duceac L., Lucian Gorgan D., Tascu S., Ciuhodaru M. , ZnO and TiO2 Nanoparticles Genotoxicity According to their Structural and Morphological Characteristics Used for Medical Purposes, Rev. Chim. (Bucharest), 69 (3) (2018) pp. 609-611., 2018 Линк

1712. Salceanu M., Andrei Iliescu A., Iliescu A., Caraiane A., Monica Scutariu M., A Melian, Chemical Processes in Endodontic Failure Due to Incidents and Accidents, Rev. Chim.(Bucharest), 69 (7) (2018) pp. 1770-1773., 2018 Линк

1713. Budacu C. C., Mihai C., Caraiane A., Ciurcanu O. Elena, Balan M., The role of chemical factors in oro-maxi-facial surgery the effiency of surgical act in lower lip cancer, Rev. Chim. (Bucharest), 69 (7) (2018) pp. 1808-1812., 2018 Линк

1714. Lupascu, T., Ciobanu, M., Botan, V., Sandu, I.G., Dragalin, I., Mitina, T., Sandu, I. Lupascu, T., Ciobanu, M., Botan, V., Sandu, I.G., Dragalin, I., Mitina, T., Sandu, I., Removal of ammonium ions and ammonia from groundwater by oxidation processes (2018) Revista de Chimie, 69 (11), pp. 3082-3086., 2018 Линк

1715. Gradinaru I., Ignat L., Doroftei F., Ignat M.E., Antohe M.E., Researches regarding the improvment of different dental contemporary composite materials structure, Rev. Chim., 69(7) (2018) pp. 1774-1778., 2018 Линк

1716. Constantin Mihai, Budacu Cristian, Pavel Liliana, Rosu Sorana, Caraian Aureliana, Chemical Study of Antibiotics in Treatment of Non-secfic Perimaxial Suppurations in Pregnancy, Rev. Chim.(Bucharest), 69 (8) (2018) pp. 2287-2290., 2018 Линк

1717. Vesa D., Martu C., Leata R., Lozneanu L., Radulescu L., Stoica G., Ganea M., et al., Paranasal Sinus Mucocele Clinical, imagistic and biochemical aspects, Rev. Chim.(Bucharest), 69 (8) (2018) pp. 2268-2272., 2018 Линк

1718. Morariu Stelian Ioan, Duceac Letitia Doina, Luca Alina Costina, Popescu Florina, et al., Soil Chemical Pollution and Aggressive Pathologies, Rev. Chim. (Bucharest), 69 (8) (2018) pp. 2278-2282., 2018 Линк

1719. Caraiane Aureliana, Leata Razvan, Toba Veronica, Vesa Doina, Macovei Luana Andreea, et al., The Chemical Effect in Medicine Interaction Determining the Form and Speed of Psychical Involution in the Prosthetic Restauration in the Edentulous, Rev. Chim. (Bucharest), 69 (8) (2018) pp. 2306-2910, 2018 Линк

1720. Budacu Cristian Constantin, Ioanid Nicoleta, Romanec Cristian, Balan Mihail, Lacramioara Pavel Liliana, et al., Dental Inclusion of Canine and Wisdom Tooth in Orthodontics Chemical Necroses, Rev. Chim. (Bucharest), 69 (8) (2018) pp. 2191-2196., 2018 Линк

1721. Dorcioman Gabriela, Fufa Oana, Craciun Valentin, Miroiu Marimona, Garoi Petronela, et al., Investigations Of Thin Titanium Oxide Films Grown By Reactive Pulsed Laser Deposition, Rom. J. Oral Rehabil., 10 (3) (2018) pp. 41-49., 2018 Линк

1722. Kamel E., Budacu C., Haba D., Covrig V., Mihai C., The role of the ct examination in the surgical management of a patient with facial complex traumatism, Rom. J. Oral Rehabil., 10 (3) (2018) pp. 116-124., 2018 Линк

1723. Budacu C., Forna D.A., Ciurcanu O.E., Nemtoi A., Kamel E., Mihai C., The implications of the main favourable factors in the appearance of various forms of cancer at the level of oral cavity mucosa, Rom. J. Oral Rehabil., 10 (3) (2018) pp. 133-141., 2018 Линк

1724. Diana B., Forna D.A., Cristina I., The role of clinical stages in making efficient the therapeutic management in partial edentation, Rom. J. Oral Rehabil., 10 (3) (2018) pp. 125-132., 2018 Линк

Page 110: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 110/154

1725. Beldiman M. - A., Luca Elena, Vitalariu Anca-Mihaela, et al., Aspects in treating reduced edentulous status by minimally invasive bridge for a young patient - case report, Rom. J. Oral Rehabil., 10 (3) (2018) pp. 171-175., 2018 Линк

1726. Sodor A., Zegan G., Golovcencu L., et al., The cytotoxicity of orthodontic polymeric biomaterials, Rom. J. Oral Rehabil., 10 (3) (2018) pp. 176-182, 2018 Линк

1727. Lellouch S., Pirnay Ph., Actions for the oral hygiene education for mentally disabled children, Rom. J. Oral Rehabil., 10 (1) (2018) pp. 6-13, 2018 Линк

1728. Barlean M. C., Balcos C., Bobu L., et al., Dentists' compliance to hands hygiene as method of health care associated infections prevention, Rom. J. Oral Rehabil., 10 (1) (2018) pp. 57-63., 2018 Линк

1729. Ifteni G., Apostu A., Aungurencei O., et al., Statistical study on the prevalence of dental lesions of the anterior segment of the dental arches and the call for treatment for these lesions - part II, Rom. J. Oral Rehabil., 10 (1) (2018) pp. 68-79., 2018 Линк

481. Stefov, V., Abdija, Z., Najdoski, M., Koleva, V., Petruševski, V.M., Runčevski, T., Dinnebier, R.E., Šoptrajanov, B.. Infrared and Raman spectra of magnesium ammonium phosphate hexahydrate (struvite) and its isomorphous analogues. IX. Spectra of protiated and partially deuterated cubic magnesium caesium phosphate hexahydrate. Vibrational Spectroscopy, 68, Elsevier, 2013, ISSN:0924-2031, 122-128. ISI IF:1.74

Цитира се в:

1730. Sollier, B. M., Gómez, L. E., Boix, A. V., & Miró, E. E. (2018). Oxidative coupling of methane on cordierite monoliths coated with Sr/La 2 O 3 catalysts. Influence of honeycomb structure and catalyst-cordierite chemical interactions on the catalytic behavior. Applied Catalysis A: General., 550, 113-121, 2018 Линк

1731. Wei, L., Hong, T., Hu, Z., Luo, L., Zhang, Q., Chen, T. Modeling surface acid-base properties of struvite crystals synthesized in aqueous solution (2018) Colloids and Surfaces A: Physicochemical and Engineering Aspects, 553, pp. 237-243., 2018 Линк

1732. Tag El-Din, A.F., El-Khouly, M.E., Elshehy, E.A., Atia, A.A., El-Said, W.A. Cellulose acetate assisted synthesis of worm-shaped mesopores of MgP ion-exchanger for cesium ions removal from seawater (2018) Microporous and Mesoporous Materials, 265, pp. 211-218., 2018 Линк

1733. Daneshgar, S., Buttafava, A., Capsoni, D., Callegari, A., & Capodaglio, A. (2018). Impact of pH and Ionic Molar Ratios on Phosphorous Forms Precipitation and Recovery from Different Wastewater Sludges. Resources, 7(4), 71., 2018 Линк

482. Ivanov, B., Khristova, M., Spassova, I.. Rare earth metal modified alumina-supported copper cobaltite catalysts in reduction of NO with CO. Bulgarian Chemical Communication, 45, Special Issue B, 2013, 198-202. SJR:0.156, ISI IF:0.349

Цитира се в:

1734. Intana, T., Föttinger, K., Rupprechter, G., & Kongkachuichay, P. (2018). Role of Copper and Cerium on Core–Shell Al-MCM-41 in NO Reduction via a SCR-CH4. Journal of nanoscience and nanotechnology, 18(1), 132-142., 2018

1735. Liu, K., Yu, Q., Qin, Q., & Wang, C. (2018). Selective catalytic reduction of nitric oxide with carbon monoxide over alumina-pellet-supported catalysts in the presence of excess oxygen. Environmental technology, 39(15), 1878-1885., 2018 Линк

483. Tsoncheva, T., Issa, G., Blasco, T., Dimitrov, M., Popova, M., Hernández, S., Kovacheva, D., Atanasova, G., Nieto, J.M.L.. Catalytic VOCs elimination over copper and cerium oxide modified mesoporous SBA-15 silica. Applied Catalysis A: General, 453, 2013, ISSN:0926860X, DOI:10.1016/j.apcata.2012.12.007, 1-12. ISI IF:3.942

Цитира се в:

1736. Bacariza, M. C., et al. "Micro-and mesoporous supports for CO2 methanation catalysts: A comparison between SBA-15, MCM-41 and USY zeolite." Chemical Engineering Science 175 (2018): 72-83., 2018 Линк

1737. Zhou, Y., Zhang, H., Yan, Y. Catalytic oxidation of ethyl acetate over CuO/ZSM-5 catalysts: Effect of preparation method (2018) Journal of the Taiwan Institute of Chemical Engineers, 84, pp. 162-172., 2018 Линк

1738. Zhu, A., Zhou, Y., Wang, Y., Zhu, Q., Liu, H., Zhang, Z., Lu, H. Catalytic combustion of VOCs on Pt/CuMnCe and Pt/CeY honeycomb monolithic catalysts (2018) Journal of Rare Earths, 36 (12), pp. 1272-1277., 2018 Линк

1739. Bion, Nicolas, et al. "Transition metal oxides for combustion and depollution processes." Metal Oxides in Heterogeneous Catalysis. 2018. 287-353., 2018 Линк

1740. Kosmulski, Marek, Edward Mączka, and Leszek Ruchomski. "Synthesis and Properties of SBA-15 Modified with Non-Noble Metals." Colloids and Interfaces 2.4 (2018): 59., 2018 Линк

1741. Schwanke, Anderson Joel, Rosana Balzer, and Sibele Pergher. "Degradation of Volatile Organic Compounds with Catalysts-Containing Zeolite and Ordered Mesoporous Silica." Handbook of Ecomaterials. Springer, Cham, 2018. 1-12., 2018 Линк

484. Stanislava Andonova, Valentina Marchionni, Marta Borelli, Radka Nedyalkova, Luca Lietti, Louise Olsson. Mechanistic investigations of the promoting role of Rh on the NSR performance of NOx storage BaO-based catalysts. Applied Catalysis B: Environmental, 132-133, 2013, DOI:10.1016/j.apcatb.2012.11.015, 266-281. ISI IF:9.446

Цитира се в:

1742. F. Can, X. Courtois, D. Duprez. "NSR catalytic materials". Chapter 3: NOx trap Catalysts and technologies: Fundamentals and

Page 111: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 111/154

Industrial applications; Ed. L. Lietti and L. Castodi. Catalysis series No 33, Royal Soc. Chem., 2018, 2018 Линк

485. Chakarova, K., Nikolov, P., Hadjiivanov, K.. Different Brønsted acidity of H-ZSM-5 and D-ZSM-5 zeolites revealed by the FTIR spectra of adsorbed CD3CN. Catalysis Communications, 41, 2013, DOI:10.1016/j.catcom.2013.06.033, 38-40. ISI IF:3.32

Цитира се в:

1743. J. Xu, G., Deng, Y. Zhou, H. Ashraf, Z.-W. Yu, "Hydroxyl group as IR probe to detect the structure of ionic liquid-acetonitrile mixtures", J. Mol. Struct., 1161 (2018) 424-432., 2018 Линк

486. Tsoncheva T., Gallo A., Spassova I., Dimitrov M., Genova I., Marelli M., Khristova M., Atanasova G., Kovacheva D., Dal Santo V.. Tailored copper nanoparticles in ordered mesoporous KIT-6 silica: Preparation and application as catalysts in integrated system for NO removal with products of methanol decomposition. Applied Catalysis A: General, 464–465, Elsevier, 2013, 243-252. ISI IF:3.942

Цитира се в:

1744. Huang, C. Y., Chang, H. W., & Chang, C. C. (2018). Multi-component quantitation of meso/nanostructural surfaces and its application to local chemical compositions of copper meso/nanostructures self-organized on silica. Applied Surface Science, 434, 982-994., 2018 Линк

1745. Jianhua Sun, Lixia Sun, Ning Han, Junli Pan, Weiqiao Liu, Shouli Bai, Yongjun Feng, Ruixian Luo, Dianqing Li, Aifan Chen, Ordered mesoporous WO3/ZnO nanocomposites with isotype heterojunctions for sensitive detection of NO2, Sensors and Actuators B: Chemical, 2018, https://doi.org/10.1016/j.snb.2018.12.089., 2018

1746. Jing, J., Li, L., Chu, W., Wei, Y., & Jiang, C. (2018). Microwave-assisted synthesis of high performance copper-based catalysts for hydrogen production from methanol decomposition. International Journal of Hydrogen Energy, 43(27), 12059-12068., 2018

1747. Liu, J., Liu, D., Zhang, Y., Wang, J., Li, H., Zhou, L., & Wu, S. (2018). Multiple Cores‐Shell Structured Cu SiO2 Ultrathin Leaf‐Shaped Nanocomposite: Facile Fabrication and Excellent Selective Catalytic Hydrogenation Performance. ChemistrySelect, 3(17), 4643-4652., 2018

487. Vassileva P., Detcheva A., Uzunov I., Uzunova S.. Removal of Some Metal Ions from Aqueous Solutions Using Pyrolysed Rice Husks: Adsorption Kinetics and Equilibria. Chemical Engineering Communications, 200, 12, 2013, ISSN:0098-6445, 1578-1599. SJR:0.37, ISI IF:1.282

Цитира се в:

1748. Zhou, L., Wang, R., Feng, W., Li, Y., Zhou, Y., Luo, X., Wang, L., Yu, Q., Chen, Z., Preparation of thiohydroxy modified magnetic mesoporous silica from rice husk and its removal properties for Cd (II) (2018) Journal of Food Science and Biotechnology, 37 (10), pp. 1035-1041., 2018

1749. Ghannad S., Lotfollahi M. "Preparation of granular activated carbons from composite of powder activated carbon and modified β-zeolite and application to heavy metals removal". Water Science &Technology, , 77 (6) (2018) 1591-1601, 2018

1750. Naseem K. et al. "Removal of Cadmium (II) from Aqueous Medium Using Vigna radiata Leave Biomass: Equilibrium Isotherms, Kinetics and Thermodynamics". Zeitschrift für Physikalische Chemie, 2018 DOI:10.1515/zpch-2018-1223, 2018

488. Nickolov R., Spassova I., Velichkova N., Khristova M., Dimitrova V., Tzvetkova P.. Hybrid materials as catalyst support in NO reduction with CO. Microporous and Mesoporous Materials, 165, Elsevier, 2013, 193-199. ISI IF:3.453

Цитира се в:

1751. N. Stoeva, Наноразмерни и наноструктурирани композитни материали като катализатори и адсорбенти с екологично предназначениер PhD Thesis, 2018, 2018

489. Eliyas, A., Ljutzkanov, L., Stambolova, I., Blaskov, V., Vassilev, S., Razkazova-Velkova, E., Mehandjiev, D.. Visible light photocatalytic activity of TiO2 deposited on activated carbon. Central Europian Journal of Chemistry, 11, 3, 2013, 464-470. ISI IF:1.329

Цитира се в:

1752. Bagheri, S., Muhd Julkapli, N. 2018 Green Energy and Technology (9783319695563), pp. 1-23, 2018

1753. Zawawi, A., Ramli, R.M., Harun, N.Y. "SYNERGISTIC EFFECT OF ADSORPTION-PHOTODEGRADATION OF COMPOSITE TiO2/AC FOR DEGRADATION OF 1-BUTYL-3-METHYLIMIDAZOLIUM CHLORIDE" 2018 Malaysian Journal of Analytical Sciences 22(4), pp. 648-658, 2018

1754. Lisowski, P., J uan Carlos Colmenares, Ondřej Mašek, Dariusz Łomot, Olga Chernyayeva Dmytro Lisovytskiy"Novel biomass-derived hybrid TiO2/carbon material using tar-derived secondary char to improve TiO2 bonding to carbon matrix" 2018 Journal of Analytical and Applied Pyrolysis Vol 131, pp. 35-41, 2018

1755. Ghosh, G., Basu, S., Saha, S., "Photocatalytic degradation of textile dye using TiO2-activated carbon nanocomposite" 2018 AIP Conference Proceedings 1966, 020027, 2018

490. Bachvarova-Nedelcheva A., Iordanova R., Stoyanova A., Gegova R., Dimitriev Y., Loukanov A.. Photocatalytic properties of ZnO/TiO2 powders obtained via combustion gel method. Centr. Eur. J. Chem., 11, 3, 2013, ISSN:2391-5420, 364-370. SJR:0.4, ISI IF:1.21

Page 112: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 112/154

Цитира се в:

1756. Mazabuel-Collazos A., & Rodríguez-Páez J.E., Chemical Synthesis and Characterization of ZnO–TiO2 Semiconductor Nanocomposites: Tentative Mechanism of Particle Formation, (2018), J Inorg Organomet Polym., 28 (5) (2018) 1739–1752., 2018 Линк

491. Ivanova, Sv., Zhecheva, E., Nihtianova, D, Mladenov, M., Stoyanova, R.. Electrochemical Intercalation of Li+ intо nanodomain Li4Mn5O12. Journal of Alloys and Compounds, 561, Elsevier BV, 2013, ISSN:0925-8388, DOI:10.1016/j.jallcom.2013.02.022, 252-261. SJR:1.091, ISI IF:3.031

Цитира се в:

1757. Sun, R., Jakes, P., Taranenko, S., Kungl, H., Eichel, R.-A. "Monitoring the reaction between lithium manganese spinel and Li2MnO3 during heat treatment using Electron Paramagnetic Resonance (EPR) spectroscopy". olid State Ionics, 325, pp. 201-208, 2018, 2018 Линк

1758. Alié, C., Calberg, C., Páez, C., Liquet, D., Eskenazi, D., Heinrichs, B., Job, N. "Electrochemical performances of Li4Mn5O12films prepared by spray-coated sol-gel reaction". Journal of Power Sources, 403, pp. 173-183, 2018, 2018 Линк

1759. Sun, R., Jakes, P., Eurich, S., van Holt, D., Yang, S., Homberger, M., Simon, U., Kungl, H., Eichel, R.-A. "Secondary-Phase Formation in Spinel-Type LiMn2O4-Cathode Materials for Lithium-Ion Batteries: Quantifying Trace Amounts of Li2MnO3by Electron Paramagnetic Resonance Spectroscopy".Applied Magnetic Resonance, 49 (4), pp. 415-427, 2018, 2018 Линк

492. Gegova R., Dimitriev Y., Bachvarova-Nedelcheva A., Iordanova R., Loukanov A., Iliev Tz.. Combustion gel method for synthesis of nanosized ZnO/TiO2 powders. Journal of Chemical Technology and Metallurgy, 48, 2, 2013, ISSN:1314-7471 (print), 147-153

Цитира се в:

1760. Birajdar Shankar D., Alangeb R.C., Morec S.D., Murumkard V.D., Jadhav K.M., Sol-gel Auto Combustion Synthesis, Structural and Magnetic Properties of Mn doped ZnO Nanoparticles, Procedia Manufacturing, 20 (2018) pp 174–180, 2018 Линк

1761. Venkatesha Babu K.R., Renuka C.G., Nagabhushana H., Mixed fuel approach for the fabrication of TiO2:Ce3+ (1–9 mol%) nanophosphors: Applications towards wLED and latent finger print detection, Ceramics International, 44 (7) (2018) pp. 7618-7628., 2018 Линк

1762. Srinet G., Sharma S., Prajapati B., et al., Investigations on the physical properties of Mn-modified ZnO samples prepared by sol–gel route, Mater Sci: Mater Electron, 29 (12) (2018) 9930-9941, https://doi.org/10.1007/s10854-018-9035-y, 2018 Линк

1763. Kubiak Adam, Siwińska-Stefańska Katarzyna, Jesionowski Teofil, Synthesis of active in visible light TiO2-ZnO photocatalysts for degradation of selected organic impurities, Book of Abstracts, 3rd International Symposium on Energy and Environmental Photocatalytic Material KRAKÓW 15th-19th May 2018, poster 68., 2018

1764. Babu K. R.Venkatesha, and Renuka C. G., Synthesis of TiO2 by solution combustion technique by mixed fuel approach for wLED applications, AIP Conference Proceedings, 1953 (2018) 030053; doi: 10.1063/1.5032388, 2018 Линк

1765. Kumari T., Gopal R., Goyal A., Joshi J., Formation and optical properties of pure nano-sized anatase titania by low-temperature aqueous sol-gel route, J. Austr. Ceram. Soc. (2018) https://doi.org/10.1007/s41779-018-0278-0., 2018

493. Rožić, L., Petrović, S., Radić, N., Stojadinović, S., Vasilić, R., Stefanov, P., Grbić, B.. Fractal approach to surface roughness of TiO2/WO3 coatings formed by plasma electrolytic oxidation process. Thin Solid Films, 539, Elsevier, 2013, ISSN:00406090, DOI:10.1016/j.tsf.2013.05.051, 112-116. SJR:0.693, ISI IF:1.759

Цитира се в:

1766. Qin, H., Chen, L., Yu, X. et al. "Preparation and photocatalytic performance of ZnO/WO3/TiO2 composite coatings formed by plasma electrolytic oxidation": J Mater Sci: Mater Electron 29 (3) 2060-2071, (2018), 2018 Линк

494. Pergal, M., Džunuzović, J., Poreba, R., Micić, D., Stefanov, P., Pezo, L., Špírková, M.. Surface and thermomechanical characterization of polyurethane networks based on poly(dimethylsiloxane) and hyperbranched polyester. Express Polymer Letters, 7, 10, Budapest University of Technology and Economics, 2013, ISSN:1788618X, DOI:10.3144/expresspolymlett.2013.78, 806-820. ISI IF:2.761

Цитира се в:

1767. Meng, X., Zheng, H., Wang, X., Wang, K., Wang, Q., Li, S., Zheng, S., Liu, Y., Zhou, Y., Yao, K. Prediction of the storage lifetime for PA66 with dynamic mechanical thermal analysis High Temperatures - High Pressures, 47 (6), pp. 499-509, (2018), 2018 Линк

1768. Yongabi, D., Khorshid, M., Losada-Pérez, P., Eersels, K., Deschaume, O., D'Haen, J., Bartic, C., Hooyberghs, J., Thoelen, R., Wübbenhorst, M., Wagner, P. Cell detection by surface imprinted polymers SIPs: A study to unravel the recognition mechanisms Sensors and Actuators, B: Chemical, 255, pp. 907-917., (2018), 2018 Линк

1769. Zheng, G., Lu, M., Rui, X., Shao, B. Surface and bulk properties of waterborne polyurethane modified with fluorinated siloxane (2018) Journal of Applied Polymer Science, 135 (28), art. no. 46473, 2018 Линк

495. Panayotov, D. A., DeSario, Paul A., Pietron, Jeremy J., Brintlinger, Todd H., Szymczak, Lindsey C., Morris, John R.. Ultraviolet and Visible Photochemistry of Methanol at 3D Mesoporous Networks: TiO2 and Au−TiO2. The Journal of Physical Chemistry C, 117, American Chemical Society, 2013, ISSN:1932-7447, DOI:10.1021/jp312583w, 15035-1504. ISI IF:4.772

Page 113: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 113/154

Цитира се в:

1770. Liu, X.; Feng, J.; Wu, B.; Li, Y.; Xie, W.; Lin, J.; Zheng, X.; Luo, X.; Al Kheraif, A. A., "Monodisperse spherical sandwiched core-shell structured SiO2AuTa2O5 and SiO2AuTa3N5 composites as visible-light plasmonic photocatalysts". International Journal of Hydrogen Energy 2018, 43 (45), 20546-20562; DOI: 10.1016/j.ijhydene.2018.09.052, 2018 Линк

1771. Reza, K.; Abadi, F. M. H. D.; Saeid, M.-P.; Say, L. O.; Hu, J., "Polypyrrole- and polyaniline-supported TiO2 for removal of pollutants from water". Journal of Environmental Engineering and Science 0 (0), 1-23; DOI: 10.1680/jenes.18.00003, 2018 Линк

1772. Atta, S.; Pennington, A. M.; Celik, F. E.; Fabris, L., "TiO2 on Gold Nanostars Enhances Photocatalytic Water Reduction in the Near-Infrared Regime". Chem 2018, 4 (9), 2140-2153; DOI: 10.1016/j.chempr.2018.06.004, 2018 Линк

1773. Wang, Y.; Zhao, J.; Li, Y.; Wang, C., "Selective photocatalytic CO2 reduction to CH4 over Pt/In2O3: Significant role of hydrogen adatom". Applied Catalysis B: Environmental 2018, 226, 544-553; DOI: 10.1016/j.apcatb.2018.01.005, 2018 Линк

1774. Feng, Q.; Cai, H.; Lin, H.; Qin, S.; Liu, Z.; Ma, D.; Ye, Y., "Synthesis and structural characteristics of high surface area TiO 2 aerogels by ultrasonic-assisted sol–gel method". Nanotechnology 2018, 29 (7), 075702; DOI: 10.1088/1361-6528/aaa1d1, 2018 Линк

1775. Yang, Y.; Xie, Q.; Mukherjee, S.; Zheng, Y.; Yan, X.; Yan, J.; Liu, J.; Fang, Y., "Preparation of crystal TiO2 foam with micron channels and mesopores by a freeze-casting method without additives and unidirectional freezing". CrystEngComm 2018, 20 (38), 5782-5789; DOI: 10.1039/C8CE01120F, 2018 Линк

1776. Kowalska, E.; Wei, Z.; Janczarek, M., "Band-gap Engineering of Photocatalysts: Surface Modification versus Doping". In Visible Light-Active Photocatalysis, Ghosh, S., Ed. Wiley-VCH Verlag GmbH & Co. KGaA.: 2018 pp 447-484. DOI: 10.1002/9783527808175.ch16, 2018 Линк

496. Stoyanova A., Hitkova H., Ivanova N., Bachvarova-Nedelcheva A., Iordanova R., Sredkova M.. Photocatalytic and antibacterial activity of Fe-doped TiO2 nanoparticles prepared by nonhydrolytic sol-gel method. Bulgarian Chemical Communications, 45, 4, 2013, 497-504. SJR:0.175, ISI IF:0.31

Цитира се в:

1777. Tan X., Huang X., Zou Y., Yu T., Zhao Y., Huang X., Synthesis and Characterization of Co-Doped Brookite Titania Photocatalysts with High Photocatalytic Activity, Transactions of Tianjin University, 24 (2) (2018) pp. 111-122., 2018 Линк

1778. Bansal P., Verma A., In-situ dual effect studies using novel Fe-TiO2 composite for the pilot-plant degradation of pentoxifylline, Chemical Engineering Journal, 332 (2018) pp. 682-694., 2018 Линк

1779. Shakir S., Abd-ur-Rehman Hafiz M., Yunus K., Iwamoto M., Periasamy V., Fabrication of un-doped and magnesium doped TiO2 films by aerosol assisted chemical vapor deposition for dye sensitized solar cells, Journal of Alloys and Compounds 737 (2018) 740e-747., 2018 Линк

1780. Othman NW, Radde H., Puah PY, Ling YS, Moh PY, Enhancing photocatalytic activity of titanium dioxide through incorporation of MIL-53(Fe) toward degradation of organic dye, J Chin Chem Soc., 2018, pp. 1–8, https://doi.org/10.1002/ jccs.201800216., 2018 Линк

497. Stojkovikj, S., Najdoski, M., Koleva, V., Demiri, S.. Preparation of electrochromic thin films by transformation of manganese(II) carbonate. Journal of Physics and Chemistry of Solids, (10), 74, Elsevier, 2013, ISSN:ISSN: 0022-3697, 1433-1438. ISI IF:2.048

Цитира се в:

1781. Najafi-Ashtiani, H., Gholipour, S., Rahdar, A. Surface plasmon resonance effect for a new structure of Ag/WO3 nanorod-shell nanocomposits and application in smart window (2018) Journal of Molecular Structure, 1169, pp. 25-30., 2018 Линк

1782. Vardhan, P.V., Idris, M.B., Ramanathan, V., Devaraj, S. Electrodeposited MnCO3 as a High Performance Electrode Material for Supercapacitor (2018) ChemistrySelect, 3 (24), pp. 6775-6778., 2018 Линк

498. Lopez, M.C., Ortiz, G., Lavela, P., Tirado, J.L., Stoyanova, R., Zhecheva, E.. Tunable Ti4+/Ti3+ redox potential in to the presence of iron and calcium in NASICON-type related phosphates as electrodes for lithium batteries. Chemistry of Materials, 25, 20, ACS Publishing, 2013, DOI:10.1021/cm4020282, 4025-4035. ISI IF:8.354

Цитира се в:

1783. Wang, H., Zhang, H., Cheng, Y., Feng, K., Li, X., Zhang, H. "All-NASICON LVP-LTP aqueous lithium ion battery with excellent stability and low-temperature performance". Electrochimica Acta, 278, pp. 279-289, 2018, 2018 Линк

499. Markova-Velichkova, M., Veleva, S., Tumbalev, V., Stoyanov, L., Nihtianova, D., Mladenov, M., Raicheff, R., Kovacheva, D.. XRD and TEM characterization of the morphology of ZnO powders prepared by different methods. Bulgarian Chemical Communications, 45, 4, 2013, ISSN:0861-9808, 427-433. ISI IF:0.234

Цитира се в:

1784. Shrinivasa Mayya, D., et al. "NANOCRYSTALLINE ZINC OXIDE THIN FILM GAS SENSOR FOR DETECTION OF HYDROCHLORIC ACID, ETHANOLAMINE, AND CHLOROFORM.", 2018 Линк

500. Gancheva M, Iordanova R, Dimitriev Y, Avdeev G, Iliev Tzv. Effects of the mechanical activation on the structure and photocatalytic properties of ZnO powders. CENTRAL EUROPEAN JOURNAL OF CHEMISTRY, 2013, SJR:0.4, ISI IF:1.192

Page 114: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 114/154

Цитира се в:

1785. Abduev, A. Kh, et al. "Transformation of the Structure of ZnO–C Powders during Mechanical Activation and Spark Plasma Sintering." Crystallography Reports 63.4 (2018): 667-672., 2018

501. Koleva, V., Boyadzhieva, T., Zhecheva, E., Nihtianova, D., Simova, S., Tyuliev, G., Stoyanova, R.. Precursor-based methods for low-temperature synthesis of defectless NaMnPO4 with an olivine- and maricite-type structure. CrystEngComm, 15, RSC Publishing, 2013, ISSN:1466-8033, DOI:10.1039/C3CE41545G, 9080-9089. ISI IF:4.034

Цитира се в:

1786. Yaru Liang, Wei-Hong Lai, Zongcheng Miao, and Shu-Lei Chou (2018) "Nanocomposite Materials for the Sodium–Ion Battery: A Review", Advanced Science New, Small, 14 (5), art. no. 1702514, , 2018 Линк

1787. Bianchini, F., Fjellvåg, H., Vajeeston, P. A first-principle study of NaMPO4 (M = Mn, Fe, Co, Ni) possible novel structures as cathode materials for sodium-ion batteries: Structural and electrochemical characterization (2018) Materials Chemistry and Physics, 219, pp. 212-221., 2018 Линк

502. Shalaby A., Bachvarova-Nedelcheva A., Iordanova R., Dimitriev Y.. A study on the effect of citric acid on the crystallinity of ZnO/TiO2 nanopowders. Journal of Chemical Technology and Metallurgy, 48, 2, 2013, ISSN:1314-7471 (print), 585-590. SJR:0.168

Цитира се в:

1788. Hamdy F. M Mohamed, E. E. Abdel-Hady, MFM Hmamm, M. Ibrahim, H. Ahmed, M. Mondy and H. Yehia, A promising fuel cell catalyst using non-precious metal oxide, The 4th International Conference on Advanced Applied Sciences The 4th International Conference on Advanced Applied Sciences, IOP Conf. Series: Materials Science and Engineering IOP Conf. Series: Materials Science and Engineering, 464 (2018) 012002 – 13, doi:10.1088/1757-899X/464/1/012002, 2018 Линк

1789. Khatun N., Tiwari S., Lal Jayanti, Tseng Chuan-Ming, Wei Liu S., Biring S., Sen S., Stabilization of anatase phase by uncompensated Ga-V co-doping in TiO2: A structural phase transition, grain growth and optical property study, Cer. Intern., 44(18) (2018) pp. 22445-22455., 2018 Линк

503. Mladenov, M., Alexandrova, K., Petrov, N.V., Tsyntsarski, B., Kovacheva, D., Saliyski, N., Raicheff, R.. Synthesis and electrochemical properties of activated carbons and Li 4Ti5O12 as electrode materials for supercapacitors. Journal of Solid State Electrochemistry, 17, 8, 2013, ISSN:1432-8488, DOI:10.1007/s10008-011-1424-6, 2101-2108. ISI IF:2.009

Цитира се в:

1790. Karamanova, B. A., et al. "Sustainable porous carbons on the basis of biomaterials for supercapacitors.", 2018 Линк

504. Georgieva, I., Trendafilova, N., Dodoff, N.. Effect of the metal…metal interactions on the absorption properties of Pt(II) and Pd(II) complexes of glyoxilic acid oxime in solution and solid state: theoretical and experimental study. Journal of Photochemistry and Photobiology A: Chemistry, 267, Elsevier, 2013, 35-48. ISI IF:2.495

Цитира се в:

1791. Zou, C., Lin, J., Suo, S., (...), Chang, X., Lu, W., Palladium(ii) N-heterocyclic allenylidene complexes with extended intercationic Pd⋯Pd interactions and MMLCT phosphorescence, 2018, Chemical Communications, 54(42), pp. 5319-5322., 2018 Линк

1792. Wan, Q., To, W.-P., Yang, C., Che, C.-M , The Metal–Metal-to-Ligand Charge Transfer Excited State and Supramolecular Polymerization of Luminescent Pincer PdII–Isocyanide Complexes, 2018, Angewandte Chemie - International Edition, 57(12), pp. 3089-3093., 2018 Линк

505. Uzunova E, Mikosch H, Nikolov G. Density functional study of copper-exchanged zeolites and related microporous materials: Adsorption of nitrosyls. Int J. Quantum Chem.,, 113, Wiley, 2013, ISSN:1097-461X, 723-732. ISI IF:1.43

Цитира се в:

1793. Zalazar, M.F., Cabral, N.D., Romero Ojeda, G.D., Alegre, C.I.A., Peruchena, N.M. Confinement Effects in Protonation Reactions Catalyzed by Zeolites with Large Void Structures Journal of Physical Chemistry C, 122 (48), (2018) pp. 27350-27359, 2018 Линк

1794. Papayannis, D.K., Kosmas, A.M., Tsolakis, N. Computational study of ethanethiol conversion reactions catalyzed by acidic zeolites (2018) Microporous and Mesoporous Materials, 262, pp. 59-67., 2018

2014

506. Perra, D., Drenchev, N., Chakarova, K., Cutrufello, M. G., Hadjiivanov, K.. Remarkable acid strength of ammonium ions in zeolites: FTIR study of low-temperature CO adsorption on NH4FER. RSC Advances, 4, 2014, 56183-56187. ISI IF:3.84

Цитира се в:

1795. D. Delgado, A. Chieregato, M. D. Soriano, E. Rodríguez-Aguado, L. Ruiz-Rodríguez, E. Rodríguez-Castellón, J. M. López Nieto, "Influence of phase composition of bulk tungsten-vanadium oxides on the one-pot synthesis of acrylic acid from glycerol" Eur. J.

Page 115: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 115/154

Inorg. Chem., 2018 (2018) 1204-1211., 2018 Линк

1796. A. R. Bertão, N. Pires, A. M. Fonseca, O. S. G. P. Soares, M. F. R. Pereira, T. Dong, I. C. Neves, "Modification of Microfluidic Paper-Based Devices with Dye Nanomaterials Obtained by Encapsulation of Compounds in Y and ZSM5 Zeolites" Sensors Actuators B, 261 (2018) 66-74., 2018 Линк

507. Bachvarova-Nedelcheva A., Gegova R., Stoyanova A., Iordanova R., Copcia V. E., Ivanova N., Sandu I.. Synthesis, characterization and properties of ZnO/TiO2 powders obtained by combustion gel method. Bulg. Chem. Commun., 46, 3, 2014, ISSN:0324-1130, 585-593. SJR:0.168, ISI IF:0.24

Цитира се в:

1797. Glod M., Damir D., Nichitus S., Calin G., Doina Duceac L., Lucian Gorgan D., Tascu S., Irina Ciuhodaru M., ZnO and TiO2 Nanoparticles Genotoxicity According to their Structural and Morphological Characteristics Used for Medical Purposes, REV. CHIM. (Bucharest), 69 (3) (2018) pp. 609-611., 2018 Линк

508. Tortorelli, M., Chakarova, K., Lisi, L., Hadjiivanov, K.. Disproportionation of associated Cu2+ sites in Cu-ZSM-5 to Cu+ and Cu3+ and FTIR detection of Cu3+(NO)x (x = 1, 2) species. Journal of Catalysis, 309, 2014, DOI:10.1016/j.jcat.2013.10.018, 376-385. ISI IF:6.921

Цитира се в:

1798. A. Kharchenko, V. Zholobenko, A. Vicente, C. Fernandez, H. Vezin, V. De Waele, S. Mintova, "Formation of copper nanoparticles in LTL nanosized zeolite: spectroscopic characterization ", Phys. Chem. Chem. Phys., 20 (2018) 2880-2889., 2018 Линк

1799. I. Castellanos, O. Marie, "Fe-HFER and Cu-HFER as catalysts for the NOX SCR using acetylene as a reducing agent: Reaction mechanism revealed by FT-IR operando study coupled with 15NO isotopic labelling", Applied Catalysis B: Environmental, 223 (2018) 143-153., 2018 Линк

1800. Z. Wang, K. Wang, H. Wang, X. Chen, W. Dai, X. Fu, "The correlation between surface defects and the behavior of hydrogen adsorption over ZnO under UV light irradiation", Catal. Sci. Technol., 8 (2018) 3260-3277., 2018 Линк

1801. V. L. Sushkevich, J. A. van Bokhoven, "Effect of Brønsted acid sites on the direct conversion of methane into methanol over copper-exchanged mordenite", Catal. Sci. Technol., 8 (2018) 4141-4150., 2018 Линк

1802. V. L. Sushkevich, D. Palagin, J. A. van Bokhoven, "The Effect of the Active-Site Structure on the Activity of Copper Mordenite in the Aerobic and Anaerobic Conversion of Methane into Methanol", Angew Chem. Int. Ed., 57 (2018) 8906-8910., 2018 Линк

509. Yordanova, A., Koseva, I., Nikolov, V.. Sintering Conditions for Al2(WO4)3 High-Dense Ceramic. Acta Physica Polonica A, 125, Polish Academy of Sciences Publishing House, 2014, ISSN:05874246, DOI:10.12693/APhysPolA.125.567, 567-570. SJR:0.273, ISI IF:0.53

Цитира се в:

1803. Mahnicka-Goremikina, Ludmila, Ruta Svinka, and Visvaldis Svinka. "Influence of ZrO 2 and WO 3 doping additives on the thermal properties of porous mullite ceramics." Ceramics International (2018)., 2018 Линк

510. Grigorova E., Spassova M., Spassov T., Khristov M.. Hydrogen sorption properties of 90 wt% MgH2–10 wt% MeSi2 (Me= Ti, Cr). Journal of Materials Science, 49, Springer Netherlands, 2014, ISSN:0022-2461, DOI:10.1007/s10853-013-7969-2, 2647-2652. SJR:0.93, ISI IF:2.371

Цитира се в:

1804. Zhang, W., Xu, G., Cheng, Y., (...), Huo, Q., Liu, S."Improved hydrogen storage properties of MgH2by the addition of FeS2micro-spheres". Dalton Transactions 47, Pages 5217-5225, 2018, 2018 Линк

511. Abdija, Z., Najdoski, M., Koleva, V., Runčevski, T., Dinnebier, R.E., Šoptrajanov, B., Stefov, V.. Preparation, Structural, Thermogravimetric and Spectroscopic Study of Magnesium Potassium Arsenate Hexahydrate. Zeitschrift für anorganische und allgemeine chemie, 640, Wiley, 2014, ISSN:1521-3749, 3177-3183. ISI IF:1.11

Цитира се в:

1805. Kiriukhina, G.V., Yakubovich, O.V., Kochetkova, E.M., Dimitrova, O.V., Volkov, A.S. A first mn member in the struvite morphotropic series, CsMn(H2O)6(PO4): Hydrothermal synthesis, crystal structure and interconnections within the family of related phosphates (2018) Acta Crystallographica Section C: Structural Chemistry, 74 (8), pp. 936-943., 2018 Линк

1806. Weil, Matthias. "An unprecedented structural phase transition in struvite-type compounds: dimorphism of KMgAsO4 (H2O) 6." Zeitschrift für Naturforschung B. DOI: https://doi.org/10.1515/znb-2018-0119, 2018

512. Stambolova, I., Blaskov, V., Shipochka, M., Eliyas, A., Vassilev, S.. Journal of Physics: Conference Series. 558, 1, 2014, ISSN:17426588, SJR:0.24, ISI IF:0.45

Цитира се в:

1807. Photocatalytic activity and photoluminescence properties of TiO2 , In2 O3 , TiO2 /In2 O3 thin films multilayer Garcia, L.M.P., Tavares, M.T.S., Andrade Neto, N.F., (...), Bomio, M.R.D., Motta, F.V. 2018 Journal of Materials Science: Materials in Electronics 29(8), pp. 6530-6542, 2018

Page 116: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 116/154

513. Stanislava Andonova, Evgeny Vovk, Jonas Sjöblom, Emrah Ozensoy, Louise Olsson. Chemical deactivation by phosphorous under lean hydrothermal conditions over Cu/BEA NH3-SCR catalysts. Applied Catalysis B: Environmental, 147, 2014, DOI:10.1016/j.apcatb.2013.08.041, 251-263. ISI IF:9.446

Цитира се в:

1808. Jonas Granestrand, Sandra Dahlin, Oliver Immele, Leonhard Schmalhorst, Cornelia Lantto, Marita Nilsson, Rodrigo Suárez París, Francesco Regali and Lars J. Pettersson. "Catalytic aftertreatment systems for trucks fueled by biofuels – aspects on the impact of fuel quality on catalyst deactivation" Catalysis: Volume 30, 2018, Royal Society of Chemistry., 2018 Линк

1809. Z. Chen, C. Fan, L. Pang, S. Ming, P. Liu, T. Li. "The influence of phosphorus on the catalytic properties, durability, sulfur resistance and kinetics of Cu-SSZ-13 for NOx reduction by NH3-SCR" Applied Catalysis B: Environmental 237 (2018) 116-127, 2018 Линк

1810. S. Ali, L. Chen, Z. Li, T. Zhang, R. Li, S. ul H. Bakhtiar, X. Leng, F. Yuan, X. Niu, Y. Zhu. "Cux-Nb1.1-x (x = 0.45, 0.35, 0.25, 0.15) bimetal oxides catalysts for the low temperature selective catalytic reduction of NO with NH3". Applied Catalysis B: Environmental 236 (2018) 25-35., 2018 Линк

1811. Q. Lin, J. Liu, S. Liu, S. Xu, Ch. Lin, X. Feng, Y. Wang, H. Xu, Y. Chen. "Barium-promoted hydrothermal stability of monolithic Cu/BEA catalyst for NH3-SCR" Dalton Trans. 47 (2018) 15038-15048., 2018 Линк

1812. M. Xu, et al., "New insight into Cu/SAPO-34 preparation procedure: Impact of NH4-SAPO-34 on the structure and Cu distribution in Cu-SAPO-34 NH3-SCR catalysts" Applied Catalysis B: Environmental, 220 (2018) 161-170., 2018 Линк

514. Oana Mihai, Catur R. Widyastuti, Stanislava Andonova, Krishna Kamasamudram, Junhui Li, Saurabh Y. .Joshi, Neal W. Currier, Aleksey Yezerets, Louise Olsson. The effect of Cu-loading on different reactions involved in NH3-SCR over Cu-BEA catalysts. Journal of Catalysis, 311, 2014, DOI:10.1016/j.jcat.2013.11.016, 170-181. ISI IF:6.844

Цитира се в:

1813. J. Liu, et al., "Facile synthesis of tube-shaped Mn-Ni-Ti solid solution and preferable Langmuir-Hinshelwood mechanism for selective catalytic reduction of NOx by NH3" Applied Catalysis A: General, 549 (2018) 289-301., 2018 Линк

1814. Marie-Laure Tarot, et al., "Influence of the Sodium Impregnation Solvent on the Deactivation of Cu/FER-Exchanged Zeolites Dedicated to the SCR of NOx with NH3" Catalysts, 8(1) (2018) 3, 2018 Линк

1815. Y. Ma, X. Wu, J. Zhang, R. Ran, D. Weng. "Urea-related reactions and their active sites over Cu-SAPO-34: Formation of NH3 and conversion of HNCO" Applied Catalysis B: Environmental 227 (2018) 198-208., 2018 Линк

1816. X. Xiang, et al., "Improving the low-temperature hydrothermal stability of Cu-SAPO-34 by the addition of Ag for ammonia selective catalytic reduction of NOx" Applied Catalysis A: General, 551 (2018) 79-87., 2018 Линк

1817. X. Wang, Y. Liu, Q. Ying, W. Yao, Z. Wu. "The superior performance of Nb-modified Cu-Ce-Ti mixed oxides for the selective catalytic reduction of NO with NH3 at low temperature". Applied Catalysis A: General 562 (2018) 19-27., 2018 Линк

1818. S. Hinokuma, S. Kiritoshi, Y. Kawabata, K. Araki, S. Matsuki, T. Sato, M. Machida. "Catalytic ammonia combustion properties and operando characterization of copper oxides supported on aluminum silicates and silicon oxides". Journal of Catalysis 361 (2018) 267-277., 2018 Линк

1819. Y.O. Nakasaka, T. Kanda, Ken-ichi Shimizu, K. Kon, G. Shibata, T. Masuda. "Micropore diffusivities of NO and NH3 in Cu-ZSM-5 and their effect on NH3-SCR". Catalysis Today, 2018, in press., 2018 Линк

1820. T. Yi, Y. Zhang, X. Yang. "Combination of Pt CeO2/MCM-56 and CeO2-CuO/MCM-56 to purify the exhaust emissions from diesel vehicles". Applied Catalysis A: General, 2018, in press., 2018 Линк

1821. Unai De-La-TorreBeñat Pereda-AyoJon A. OnrubiaJuan R. González-Velasco. "Effect of the Presence of Ceria in the NSR Catalyst on the Hydrothermal Resistance and Global DeNOx Performance of Coupled LNT–SCR Systems" Topics in Catalysis 61 (2018) 1993–2006., 2018 Линк

515. Hadjiivanov, K. Identification and Characterization of Surface Hydroxyl Groups by Infrared Spectroscopy. Adv. Catal., 52, Elsevier, 2014, 99-318. ISI IF:10

Цитира се в:

1822. А. Остапенко, Підвищення екологічної безпеки виробництва паперу та картону із вторинної сировини, Дисертація кандидата технічних наук, Національний технічний університет України, Киев, Украйна, 2018 [Google]., 2018 Линк

1823. A. Al-Ani, R. Gertisser and V. Zholobenko, Structural features and stability of Spanish sepiolite as a potential catalyst, Appl. Clay Sci., 162 (2018) 297 [ISI]., 2018 Линк

1824. C.O. Arean, Probing Brønsted acidity of protonic zeolites with variable-temperature infrared spectroscopy, Ukr. J. Phys., 63 (2018) 538 [Scopus]., 2018 Линк

1825. A. Azadeh, E. Farahnaz and M. Hagar, Iran. Rubber Ind., 22 (2018) 5 [Google]., 2018

1826. E. Finocchio, J. Gonzalez-Prior, J.I. Gutierrez-Ortiz, R. Lopez-Fonseca, G. Busca and B. de Rivas, Surface characterization of mesoporous CoOx /SBA-15 catalyst upon 1, 2-dichloropropane oxidation, Materials, 11 (2018) 912 [ISI]., 2018 Линк

1827. C. Freitas, N.S. Barrow and V. Zholobenko, Accessibility and Location of Acid Sites in Zeolites as Probed by Fourier Transform Infrared Spectroscopy and Magic Angle Spinning Nuclear Magnetic Resonance, Johnson Matthey Technol. Rev., 62 (2018) 279

Page 117: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 117/154

[Scopus]., 2018 Линк

1828. A. Gabrienko, I. Danilova, S. Arzumanov, L. Pirutko, D. Freude and A. Stepanov, Direct Measurement of Zeolite Brønsted Acidity by FTIR Spectroscopy: Solid-State 1H MAS NMR Approach for Reliable Determination of the Integrated Molar Absorption Coefficients, J. Phys. Chem. C, 122 (2018) 25386 [ISI]., 2018 Линк

1829. G. Garbarino, R.P.P. Vijayakumar, P. Riani, E. Finocchio and G. Busca, Ethanol and diethyl ether catalytic conversion over commercial alumina and lanthanum-doped alumina: Reaction paths, catalyst structure and coking, Appl. Catal. B, 236 (2018) 490 [ISI]., 2018 Линк

1830. M.M. Garnica, A.E. Torres, G.E. Ramírez-Caballero and P.B. Balbuena, Micropous Mesoporous Mater., 265 (2018) 241 [ISI]., 2018 Линк

1831. A. Sierraalta, R. Añez, D.S. Coll and P. Alejos, New theoretical insight on the acid sites distribution, their local structures and acid strength of the SAPO‐11 molecular sieve, Int. J. Quantum Chem., 118 (2018) e25541 https://doi.org/10.1002/qua.25541, 2018 Линк

1832. J. Luo, Understanding shear-induced hydrolysis reactions on soda lime silica glass surface, Ph. D. Thesis, Pennsylvania State University, USA, 2018 [GS]., 2018 Линк

1833. I. Miletto, E. Catizzone, G. Bonura, C. Ivaldi, M. Migliori, E. Gianotti, L. Marchese, F. Frusteri and G. Giordano, In situ FT-IR characterization of CuZnZr/ferrierite hybrid catalysts for one-pot CO2 -to-DME conversion, Materials, 11 (2018) 2275 [ISI]., 2018 Линк

1834. G. Paul, C. Bisio, I. Braschi, M. Cossi, G. Gatti, E. Gianotti and L. Marchese, Combined solid-state NMR, FT-IR and computational studies on layered and porous materials, Chem. Soc. Rev., 47 (2018) 5684 [ISI]., 2018 Линк

1835. A. Shakib, Mechanistic Studies of Reducible Metal Oxides as Hydrodeoxygenation Catalysts, Ph. D. Thesis, University of Maine, USA, 2018 [GS]., 2018 Линк

1836. M. Velthoen, S. Nab and B. Weckhuysen, Probing acid sites in solid catalysts with pyridine UV-Vis spectroscopy, Phys. Chem. Chem. Phys., 20 (2018) 21647 [ISI]., 2018 Линк

1837. R. Osuga and J.N. Kondo, "IR study of dynamic behavior of Brønsted acid sites on zeolites at high temperatures", Zeolite, 35 (2018) 101-108, 2018, 2018 Линк

1838. M. Velthoen, S. Nab and B. Weckhuysen, Proc. 12th Int. Symp. Heterogeneous Catal., 26–29 August 2018, Sofia, Bulgaria, O18 [оригиналът]., 2018

1839. J.G.P. Vicente, Estudo de embriões de zeólitas como catalisadores básicos na condensação de Knoevenagel, Ph. D. Thesis, Universidade Federal de São Carlos, Brazil, 2018 [GS]., 2018 Линк

1840. L. Vosmerikova, I. Danilova, A. Vosmerikov, Y. Barbashin and A. Vosmerikov, Influence of Steaming of Gallium-Containing Zeolite on Its Acid and Catalytic Properties in the Propane Aromatization Process, Petrol. Chem., 58 (2018) 237 [ISI]., 2018 Линк

1841. X. Wang, N. Martin, J. Nilsson, S. Carlson, J. Gustafson, M. Skoglundh and P. Carlsson, Copper-Modified Zeolites and Silica for Conversion of Methane to Methanol, Catalysts, 8 (2018) 545 [ISI]., 2018 Линк

516. Genova, I., Tsoncheva, T., Dimitrov, M., Paneva, D., Tsyntsarski, B., Ivanova, R., Cherkezova-Zheleva, Z., Budinova, T., Kovacheva, D., Mitov, I., Petrov, N.. Cobalt ferrite nanoparticles hosted in activated carbon from renewable sources as catalyst for methanol decomposition. Catalysis Communications, 55, 2014, ISSN:15667367, DOI:10.1016/j.catcom.2014.06.013, 43-48. ISI IF:3.699

Цитира се в:

1842. Wang, Lidong, et al. "Cobalt impregnated porous catalyst promoting ammonium sulfate recovery in an ammonia-based desulfurization process." Chemical Engineering Journal 331 (2018): 416-424., 2018 Линк

1843. Province, Zhejiang. "Cobalt impregnated porous catalyst promoting ammonium sulfate recovery in an ammonia-based desulfurization process." Chemical Engineering Journal 331 (2018) 416–424., 2018

517. StefanieTamm, Stanislava Andonova, Louise Olsson. Silver as Storage Compound for NOx at Low Temperatures. Catalysis Letters, 144, 2014, DOI:10.1007/s10562-014-1211-y, 674-684. ISI IF:2.799

Цитира се в:

1844. L. Castoldi, et al., "New insights on the adsorption, thermal decomposition and reduction of NOx over Pt- and Ba-based catalysts" Applied Catalysis B: Environmental, 224 (2018) 249-263., 2018 Линк

518. StefanieTamm, Stanislava Andonova, Louise Olsson. The Effect of Hydrogen on the Storage of NOx Over Silver, Platinum and Barium Containing NSR Catalysts. Catalysis Letters, 144, 2014, DOI:10.1007/s10562-014-1249-x, 1101-1112. ISI IF:2.799

Цитира се в:

1845. L. Castoldi, R. Matarrese, Ch. Liu, S. Morandi, L. Lietti. "Dynamics and Selectivity of N2O Formation/Reduction During Regeneration Phase of Pt-Based Catalysts". Top Catal 61 (2018) 1672., 2018 Линк

1846. F. Can, X. Courtois, D. Duprez. "NSR catalytic materials". Chapter 3: NOx trap Catalysts and technologies: Fundamentals and Industrial applications; Ed. L. Lietti and L. Castodi. Catalysis series No 33, Royal Soc. Chem., 2018, 2018 Линк

Page 118: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

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519. Kersten, M., Tunega, D., Georgieva, I., Vlasova, N., Branscheid, R.. Adsorption of the Herbicide 4-Chloro-2-methylphenoxyacetic acid (MCPA) by Goethite. Environmental Science and Technology, 48, American Chemical Society, 2014, DOI:10.1021/es502444c, 11803-11810. ISI IF:5.481

Цитира се в:

1847. Lippold, H., Karimzadeh, L., Kulenkampff, J., Wissmeier, L., Stuhlfauth, C., Stoll, M., Lippmann-Pipke, J., Effect of pH on the mobility of the herbicide MCPA in a sand-goethite column: 1D and 2D reactive transport modeling (2018) Applied Geochemistry, 98, pp. 345-350., 2018 Линк

1848. Vasudevan, S., Kamaraj, R., Pandiarajan, A., Vasudevan, S., Facile one-pot electrosynthesis of zinc hydroxide for the adsorption of hazardous 2-(2-methyl-4-chlorophenoxy) propionic acid (MCPP) from water and its modelling studies (2018) Journal of Environmental Chemical Engineering, 6 (2), pp. 2017-2026., 2018 Линк

1849. Ocampo-Gaspar, M., Cano-Guzmán, C.F., Payan-Martínez, L.F., Gonzalez-Reyes, L., Hernandez-Perez, I., Garibay-Febles, V., Perez-Orozco, J.P., Cabrera-Lara, L. I., Ramon-Garcia, M. L., Galicia-Luis, L., Suárez-Parra, R. , Sizing the Fenton's catalyst, Journal of Photochemistry and Photobiology A: Chemistry, 353, 527-535, 2018., 2018 Линк

520. Perrone, A., D’Elia, M., Gontad, F., Giulio, M Di, Maruccio, G., Cola, A., Stankova, NE, Kovacheva, D.G., Broitman, E.. Non-conventional photocathodes based on Cu thin films deposited on Y substrate by sputtering. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 752, 2014, ISSN:0168-9002, 27-32. ISI IF:1.336

Цитира се в:

1850. Mistry, Sonal. Preparation and evaluation of metal surfaces for use as photocathodes. Diss. © Sonal Mistry, 2018., 2018 Линк

521. Kalapsazova, M., Stoyanova, R., Zhecheva, E.. Structural Characterization and Electrochemical Intercalation of Li+ in Layered Na0.65Ni0.5Mn0.5O2 obtained by Freeze-Drying Method. Journal of Solid State Electrochemistry, 18, 8, Springer Verlag, 2014, ISSN:1432-8488, DOI:10.1007/s10008-014-2399-x, 2343-2350. SJR:0.767, ISI IF:2.446

Цитира се в:

1851. Song, J., Gim, J., Park, S., & Kim, J. Sodium manganese oxide electrodes accompanying self-ion exchange for lithium/sodium hybrid ion batteries. Electrochimica Acta, Volume 261, 20 January 2018, Pages 42-48., 2018 Линк

522. Ellie L. Uzunova, H. Mikosch. Electronic Structure and Reactivity in Water Splitting of the Iron Oxide Dimers and their Hexacarbonyls: a Density Functional Study. J. Chem.Phys, 140, AIP, 2014, DOI:http://dx.doi.org/10.1063/1.4858462, 024303-024313. ISI IF:2.7

Цитира се в:

1852. Nakazawa, T. Density functional theory study on the geometric and electronic structures of Fe2O2 and the reaction of Fe2+O2 (2018) Computational Materials Science, 146, pp. 334-345., 2018

523. Milenova, K., Nikolov, P., Kasabova, N., Avramova, I.. Ozone decomposition on ZnO catalysts obtained from different precursors. Polish Journal of Chemical Technology, 16, 4, 2014, ISSN:15098117, 55-59. SJR:0.2

Цитира се в:

1853. Pradyasti, A., Azhariyah, A.S., Karamah, E.F., Bismo, S.Preparation of zinc oxide catalyst with activated carbon support for ozone decomposition (2018) IOP Conference Series: Earth and Environmental Science, 105 (1), art. no. 012013, ., 2018 Линк

1854. Jodzis S., Barczyński T.Ozone Synthesis and Decomposition in Oxygen-Fed Pulsed DBD System: Effect of Ozone Concentration, Power Density, and Residence Time. (2018) Ozone: Science & Engineering, 1-11, 2018 Линк

1855. Azhariyah, A.S., Pradyasti, A., Dianty, A.G., Bismo, S.Comparative study of activated carbon, natural zeolite, and green sand supports for CuOx and ZnO sites as ozone decomposition catalyst (2018) IOP Conference Series: Materials Science and Engineering, 334 (1), art. no. 012075, ., 2018 Линк

524. Najdoski M., Koleva V., Samet A.. Effect of Deposition Conditions on the Electrochromic Properties of Nanostructured Thin Films of Ammonium Pentoxide Xerogel. The Journal of Physical Chemistry C, 118, 18, ACS Publications, 2014, ISSN:1932-7447 (print), 1932-7455 (Web), 9636-9646. ISI IF:4.772

Цитира се в:

1856. Margoni, M.M., Mathuri, S., Ramamurthi, K., Babu, R.R., Ganesh, V., Sethuraman, K. Hydrothermally grown nano and microstructured V2O5thin films for electrochromic application (2018) Applied Surface Science, 449, pp. 193-202., 2018 Линк

1857. Tong, Z., Liu, S., Li, X., Zhao, J., Li, Y. Self-supported one-dimensional materials for enhanced electrochromism (2018) Nanoscale Horizons, 3 (3), pp. 261-292., 2018 Линк

1858. Wu, J., Qiu, D., Zhang, H., Cao, H., Wang, W., Liu, Z., Tian, T., Liang, L., Gao, J., Zhuge, F. Flexible electrochromic V2O5 thin films with ultrahigh coloration efficiency on graphene electrodes (2018) Journal of the Electrochemical Society, 165 (5), pp. D183-D189., 2018 Линк

1859. Mauger, A., Julien, C.M. V2O5thin films for energy storage and conversion (2018) AIMS Materials Science, 5 (3), pp. 349-401.,

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2018 Линк

525. Grbić, B., Radić, N., Stojadinović, S., Vasilić, R., Dohčević-Mitrović, Z., Šaponjić, Z., Stefanov, P.. TiO2/WO3 photocatalytic composite coatings prepared by spray pyrolysis. Surface and Coatings Technology, 258, Elsevier, 2014, ISSN:02578972, DOI:10.1016/j.surfcoat.2014.07.082, 763-771. SJR:0.96, ISI IF:2.374

Цитира се в:

1860. Muneer, S.M., Nadeera, M. Wear characterization and microstructure evaluation of silicon carbide based nano composite coating using plasma spraying Materials Today: Proceedings, 5 (11), pp. 23834-23843. (2018), 2018 Линк

1861. Figueira, R.B. Hybrid sol-gel coatings: Erosion-corrosion protection (2018) Production, Properties, and Applications of High Temperature Coatings, pp. 334-380., 2018 Линк

1862. Hunge, Y.M., Yadav, A.A., Mahadik, M.A., Bulakhe, R.N., Shim, J.J., Mathe, V.L., Bhosale, C.H. Degradation of organic dyes using spray deposited nanocrystalline stratified WO3/TiO2photoelectrodes under sunlight illumination (2018) Optical Materials, 76, pp. 260-270, 2018 Линк

526. Milenova, K., Avramova, I., Eliyas, A., Blaskov, V., Stambolova, I., Kassabova, N.. Application of activated M/ZnO (M = Mn, Co, Ni, Cu, Ag) in photocatalytic degradation of diazo textile coloring dye. Environmental Science and Pollution Research, 2014, ISI IF:2.828

Цитира се в:

1863. Poorarjmand, Sara. Razi, Maryam Kargar. Mahjoob, Ali Reza, et al. Photocatalytic degradation of Congo Red dye by using nano ZnO and Ni-Co-ZnO nanocomposites. (2018) JOURNAL OF NANOANALYSIS Volume: 5 Issue: 2 Pages: 98-106., 2018 Линк

1864. Microwave-enhanced advanced oxidation processes for the degradation of dyes in water Verma, P., Samanta, S.K. 2018 Environmental Chemistry Letters 16(3), pp. 969-1007, 2018

527. Kalapsazova, M., Stoyanova, R., Zhecheva, E., Tyuliev, G., Nihtianova, D. Sodium deficient nickel-manganese oxides as intercalation electrodes in lithium ion batteries. Journal of Materials Chemistry A, 2, RSC, 2014, ISSN:2050-7488, DOI:10.1039/C4TA04094E, 19383-19395. ISI IF:7.443

Цитира се в:

1865. Song, J., Gim, J., Park, S., & Kim, J. Sodium manganese oxide electrodes accompanying self-ion exchange for lithium/sodium hybrid ion batteries. Electrochimica Acta, Volume 261, 20 January 2018, Pages 42-48., 2018 Линк

1866. Sun, F.-H., Dong, J., Dey, S., Asfandiyar, Wu, C.-F., Pan, Y., Tang, H., Li, J.-F. "Enhanced thermoelectric performance of Cu12Sb4S13−δ tetrahedrite via nickel doping ". Science China Materials, 61 (9), pp. 1209-1217, 2018, 2018 Линк

1867. Li, Q., Qiao, Y., Guo, S., Jiang, K., Li, Q., Wu, J., Zhou, H. "Both Cationic and Anionic Co-(de)intercalation into a Metal-Oxide Material". Joule, 2 (6), pp. 1134-1145, 2018, 2018 Линк

1868. Vu, D.-L., Lee, J.-W. "Na-doped layered LiNi0.8Co0.1Mn0.1O2with improved rate capability and cycling stability". Journal of Solid State Electrochemistry, 22 (4), pp. 1165-1173, 2018, 2018 Линк

1869. Vu, N.H., Im, J.C., Unithrattil, S., Im, W.B. "Synergic coating and doping effects of Ti-modified integrated layered-spinel Li1.2Mn0.75Ni0.25O2+:δas a high capacity and long lifetime cathode material for Li-ion batteries". Journal of Materials Chemistry A, 6 (5), pp. 2200-2211, 2018, 2018 Линк

1870. Sada, K.; Senthilkumar, B.; Barpanda, P. "Potassium-Ion Intercalation Mechanism in Layered Na2Mn3O7" ACS Appl. Energy Mater., 2018, 1 (10), pp 5410–5416, 2018 Линк

528. Koleva, V., Stoyanova, R., Zhecheva, E., Nihtianova, D. Dittmarite Precursors for Structure and Morphology Directed Synthesis of Lithium Manganese Phospho-Olivine Nanostructures. CrystEngComm, 16, RSC, 2014, ISSN:1466-8033, DOI:10.1039/C3CE42501K, 7515-7525. ISI IF:4.034

Цитира се в:

1871. El Khalfaouy, R., Elabed, A., Addaou, A., Laajeb, A., & Lahsini, A. Synthesis and Characterization of LiMnPO4 Cathode Material via Dittmarite-Type NH4MnPO4.H2O as an Intermediate Compound. Arabian Journal for Science and Engineering, 1-7., 2018 Линк

1872. Roger Borges, “Developmnet of Potential Sustainable Fertilizers, Natural and Synthetic Mono- and Hydrogen Phosphates”, PhD Thesis, 2018, Federal University of Paraná, Curitiba, Brazil., 2018 Линк

1873. Borges, R., Baika, L. M., Grassi, M. T., & Wypych, F. (2018). Mechanochemical conversion of chrysotile/K 2 HPO 4 mixtures into potential sustainable and environmentally friendly slow-release fertilizers. Journal of environmental management, 206, 962-970., 2018 Линк

1874. Wu, K., Du, K., & Hu, G. (2018). Red-blood-cell-like (NH 4)[Fe 2 (OH)(PO 4) 2]· 2H 2 O particles: fabrication and application in high-performance LiFePO 4 cathode materials. Journal of Materials Chemistry A. 2018, 6, 1057-1066., 2018 Линк

1875. Holdsworth, A.F., Eccles, H., Halman, A.M., Mao, R., Bond, G. Low-Temperature Continuous Flow Synthesis of Metal Ammonium Phosphates (2018) Scientific Reports, 8 (1), art. no. 13547, , 2018 Линк

529. Stoyanova, R., Ivanova, Sv., Zhecheva, E., Samoson, A., Simova, Sv., Tzvetkova, P., Barra, A.-L.. Correlations between Lithium Local

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Structure and Electrochemistry in Layered LiCo1-2xNixMnxO2 Oxides: 7Li MAS NMR and EPR studies. Physical Chemistry Chemical Physics, 16, 6, RSC Publisihing, 2014, ISSN:1463-9076, DOI:10.1039/C3CP54438A, 2499-2507. ISI IF:4.493

Цитира се в:

1876. Leifer, N., Matlahov, I., Erickson, E.M., Sclar, H., Schipper, F., Shin, J.-Y., Erk, C., Chesneau, F.-F., Lampert, J., Markovsky, B., Aurbach, D., Goobes, G. "Ammonia treatment of 0.35Li2MnO3·0.65LiNi0.35Mn0.45Co0.20O2Material: Insights from solid-state NMR analysis". Journal of Physical Chemistry C, 122 (7), pp. 3773-3779, 2018, 2018 Линк

1877. Singh, L., Lee, J., Kim, G. W., Ji, M., Moon, C., Lee, H., ... & Lee, Y. (2018). A simple, rapid and efficient flame synthesis of ultrafine LiNi 0.95− x Co x Ti 0.05 O 2 (x = 0.25 and 0.30): a versatile route to synthesize Ni-rich cathode materials for Li-ion batteries. New Journal of Chemistry, 42(1), 372-379., 2018 Линк

530. Bachvarova-Nedelcheva A., Iordanova R., Kostov K. L., Ganev V., Yordanov St.. Synthesis, Characterization and Optical Properties of Non-Traditional Tellurite-Selenite Glasses. Opt. Mater., 36, Elsevier, 2014, ISSN:0925-3467, 1319-1328. SJR:0.721, ISI IF:1.981

Цитира се в:

1878. Gopal Rao P. Satya, Siripuram Rajesh & Sripada Suresh, Structural study of TeO2–SeO2–Li2O ternary glass system using Raman and IR, Phys. Chem. Glasses: Eur. J. Glass Sci. Technol. B, 59 (2) (2018) pp. 88-92., 2018 Линк

1879. Ouyang Huan, Sun Yuanyuan, Yu Jianqiang, A high-efficient monoclinic BiVO4 adsorbent for selective capturetoxic selenite, The American Computational Science Society. Nano Reports Communication, 4 (2018) pp. 1-4., 2018 Линк

1880. Ouyang H., Chen N., Chang G., Zhao X., Sun Y., Chen S., Zhang H., and Yang D., Selective Capture of Toxic SeO32− by Bismuth-based MetalOrganic Frameworks, Angew. Chem. Int. Ed. 10.1002/anie.201807891, http://dx.doi.org/10.1002/anie.201807891., 2018 Линк

531. T. Tsoncheva, I. Genova, M. Stoyanova, M.-M. Pohl, R. Nickolov, M. Dimitrov, E. Sarcadi-Priboczki, Mihaylov, M., Kovacheva, D., Hadjiivanov , K.. Effect of Mesoporous Silica Topology on the Formation of Active Sites in Copper Supported Catalysts for Methanol Decomposition. Applied Catalysis B: Environmental, 147, Elsevier, 2014, DOI:doi:10.1016/j.apcatb.2013.10.002, 684-697. ISI IF:7.435

Цитира се в:

1881. Wu, L., Li, B., Zhao, C. Direct Synthesis of Hydrogen and Dimethoxylmethane from Methanol on Copper/Silica Catalysts with Optimal Cu+/Cu0 Sites (2018) ChemCatChem, 10 (5), pp. 1140-1147., 2018 Линк

1882. Wang, Z., Qin, Y., Pan, F., Li, Z., Zhang, W., Wu, F., Chen, D., Wen, W., Li, J. Mesoporous Silica-Supported Manganese Oxides for Complete Oxidation of Volatile Organic Compounds: Influence of Mesostructure, Redox Properties, and Hydrocarbon Dimension (2018) Industrial and Engineering Chemistry Research, 57 (22), pp. 7374-7382., 2018 Линк

1883. Jing, J., Li, L., Chu, W., Wei, Y., Jiang, C. Microwave-assisted synthesis of high performance copper-based catalysts for hydrogen production from methanol decomposition (2018) International Journal of Hydrogen Energy, 43 (27), pp. 12059-12068., 2018 Линк

1884. Qi, T., Wang, L., Wu, S., Li, Q., Liu, J., Meng, L., Xiao, H. Insight into structural role of 2D/3D mesoporous silicon in catalysis of magnesium sulfite oxidation (2018) Applied Catalysis A: General, 566, pp. 33-43., 2018 Линк

532. Rangelova, N., Aleksandrov, L., Angelova, T., Georgieva, N., Muller, R.. Preparation and characterization of SiO2/CMC/Ag hybrids with antibacterial properties. Carbohydrate Polymers, 101, 1, 2014, 1166-1175. ISI IF:4.219

Цитира се в:

1885. Yu, M., Y. Han, J. Li, and L. Wang. “Three-dimensional porous carbon aerogels from sodium carboxymethyl cellulose/poly(vinyl alcohol) composite for high-performance supercapacitors”. Journal of Porous Materials 25. 6 (2018): 1679., 2018 Линк

1886. Mohsenabadi, N., A. Rajaei, M. Tabatabaei, and A. Mohsenifar. “Physical and antimicrobial properties of starch-carboxy methyl cellulose film containing rosemary essential oils encapsulated in chitosan nanogel”. International Journal of Biological Macromolecules 112 (2018): 148., 2018 Линк

1887. Klapiszewski, L., J. Zietek, F. Ciesielczyk, K. Siwinska-Stefanska, and T. Jesionowski. “Magnesium silicate conjugated with calcium lignosulfonate: In situ synthesis and comprehensive physicochemical evaluations”. Physicochemical Problems of Mineral Processing 54. 3 (2018): 793., 2018 Линк

1888. Painuli, R., Raghav, S., Kumar, D. (2018) Synthesis and Application of Silica Nanoparticles-Based Biohybrid Sorbents. In: Bhardwaj Mishra S., Mishra A. (eds) Bio- and Nanosorbents from Natural Resources. Springer Series on Polymer and Composite Materials. Springer, Cham, Pages 161-182 https://doi.org/10.1007/978-3-319-68708-7_8, 2018 Линк

533. Amalraj, S.F., Burlaka, L., Julien, C.M., Mauger, A., Kovacheva, D., Talianker, M., Markovsky, B., Aurbach, D.. Phase transitions in Li2MnO3 electrodes at various states-of-charge. Electrochimica Acta, 123, 2014, ISSN:00134686, DOI:10.1016/j.electacta.2014.01.051, 395-404. ISI IF:4.504

Цитира се в:

1889. Pan, H., Zhang, S., Chen, J., Gao, M., Liu, Y., Zhu, T., Jiang, Y. Li- and Mn-rich layered oxide cathode materials for lithium-ion batteries: A review from fundamentals to research progress and applications (2018) Molecular Systems Design and Engineering,

Page 121: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

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3 (5), pp. 748-803., 2018 Линк

1890. Zhang, S., Tang, T., Ma, Z., Gu, H., Du, W., Gao, M., Liu, Y., Jian, D., Pan, H. Tuning Li2MO3 phase abundance and suppressing migration of transition metal ions to improve the overall performance of Li- and Mn-rich layered oxide cathode (2018) Journal of Power Sources, 380, pp. 1-11., 2018 Линк

1891. Ding, W., Cui, X., Lei, J., Lin, X., Zhao, S., Wu, Q.-H., Zheng, M., Dong, Q. Hollow spherical lithium-rich layered oxide cathode material with suppressed voltage fading (2018) Electrochimica Acta, 264, pp. 260-268., 2018 Линк

534. Georgieva, I., Mihaylov, Tz., Trendafilova, N.. Lanthanide and transition metal complexes of bioactive coumarins: Molecular modeling and spectroscopic studies. Journal of Inorganic Biochemistry, 135, Elsevier, 2014, 100-112. ISI IF:3.205

Цитира се в:

1892. Vidyasagar Babu, S., Eswaramma, S., Krishna Rao, K.S.V., Synthesis, characterization, luminescence and biological activities of lanthanide complexes with a hydrazone ligand, 2018, Main Group Chemistry, 17(1), pp. 99-110., 2018 Линк

1893. Ibrar, A., Shehzadi, S.A., Saeed, F., Khan, I., Developing hybrid molecule therapeutics for diverse enzyme inhibitory action: Active role of coumarin-based structural leads in drug discovery, 2018, Bioorganic and Medicinal Chemistry, 26(13), pp. 3731-3762., 2018 Линк

1894. Munteanu, A.-C., Badea, M., Olar, R., (...), Andries, A., Uivarosi, V., Cytotoxicity studies, DNA interaction and protein binding of new Al (III), Ga (III) and In (III) complexes with 5-hydroxyflavone, 2018, Applied Organometallic Chemistry, 32(12), e4579., 2018 Линк

1895. Islas, M.S., Martínez Medina, J.J., Piro, O.E., (...), Ferrer, E.G., Williams, P.A.M., Comparisons of the spectroscopic and microbiological activities among coumarin-3-carboxylate, o-phenanthroline and zinc(II) complexes, 2018, Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy, 198, pp. 212-221., 2018 Линк

1896. Barmpa, A., Frousiou, O., Kalogiannis, S., (...), Turel, I., Psomas, G., Manganese(II) complexes of the quinolone family member flumequine: Structure, antimicrobial activity and affinity for albumins and calf-thymus DNA, 2018, Polyhedron, 145, pp. 166-175., 2018 Линк

535. Karadjova, V., Kovacheva, D., Stoilova, D.. Study on the cesium Tutton compounds, Cs2M(XO4)2·6H2O (M = Mg, Co, Zn; X = S, Se): Preparation, X-ray powder diffraction and infrared spectra. Vibrational Spectroscopy, 75, Elsevier, 2014, ISSN:0924-2031, DOI:10.1016/j.vibspec.2014.09.006, 51-58. ISI IF:1.794

Цитира се в:

1897. Lacroix, M.R., Bukovsky, E.V., Lozinšek, M., Folsom, T.C., Newell, B.S., Liu, Y., Peryshkov, D.V., Strauss, S.H. Manifestations of Weak O-H⋯F Hydrogen Bonding in M(H2O)n(B12F12) Salt Hydrates: Unusually Sharp Fourier Transform Infrared ν(OH) Bands and Latent Porosity (M = Mg-Ba, Co, Ni, Zn) (2018) Inorganic Chemistry, 57 (23) 14983-15000., 2018 Линк

536. Gyurov, S., Rabadjieva, D., Kovacheva, D., Kostova, Y.. Kinetics of copper slag oxidation under nonisothermal conditions. Journal of Thermal Analysis and Calorimetry, 116, 2, 2014, ISSN:13886150, DOI:10.1007/s10973-013-3569-2, 945-953. ISI IF:2.042

Цитира се в:

1898. Acacio Rincón, Daniele Desideri, Enrico Bernardo, Functional Glass-ceramic Foams from ‘Inorganic Gel Casting’ and Sintering of Glass/Slag Mixtures, Journal of Cleaner Production, 187, pp. 250-256, 2018, 2018 Линк

1899. Qianmin Ma, Haiyun Du, Xintao Zhou, Kecheng He, Zhiwei Lin, Feng Yan, Liping Huang, Rongxin Guo, "Performance of copper slag contained mortars after exposure to elevated temperatures", Construction and Building Materials, 172, pp. 378-386, 2018, 2018 Линк

1900. Zongliang Zuo, Qingbo Yu, Huaqing Xie, Fan Yang, Qin Qin. "Thermodynamic analysis of reduction in copper slag by biomass molding compound based on phase equilibrium calculating model." Journal of Thermal Analysis and Calorimetry 132(2), 1277-1289, 2018, 2018 Линк

1901. Anna Potysz, Eric D Van Hullebusch, Jakub Kierczak, Perspectives regarding the use of metallurgical slags as secondary metal resources – A review of bioleaching approaches, May 2018, Journal of Environmental Management 219:138–152, DOI 10.1016/j.jenvman.2018.04.083, Projects Bioweathering of metallurgical slags originating from copper processing IHE Delft Institute for Water Education (ex UNESCO-IHE) / Pollution Prevention and Resource Recovery Chair group, 2018 Линк

1902. Zhi Li, Guojun Ma, Jingjing Zou, Calculation Model for Activity of FeO in Quaternary Slag System SiO2-CaO-Al2O3-FeO, Metals , 8(9), 714, doi:10.3390/met8090714, 2018, 2018 Линк

1903. Zongliang Zuo, Qingbo Yu, Sihong Liu, Huaqing Xie, Wenjun Duan, Junxiang Liu, Qin Qin, Shuguang Yang, Thermodynamic analysis of thermal energy recovery and direct reduction (TER-DR) system for molten copper sla, J Therm Anal Calorim, 131(2), 1691–1698, 2018, 2018 Линк

1904. S T Aly, K H Hamad, Noura Fathy, SMS Abdel-Hamid, "Oxidation Kinetics of Tungsten Carbide-20cobalt Composite using Non-Isothermal Thermal Analysis", International Journal of Engineering Research & Technology (IJERT), 7 (11) , 140-144, 2018, 2018 Линк

1905. W.J. Mi, H.Y. Chen, B. Li, K.C. Chou, X.M. Hou, J.H. Chen, IRON OXIDE RECOVERY FROM FAYALITE IN WATER VAPOR AT HIGH TEMPERATURE, J. Min. Metall. Sect. B-Metall. 54 (1) B 1 – 8, 2018, 2018 Линк

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1906. Zongliang Zuo, Qingbo Yu, Huaqing Xie, Mengqi Wei, Direct Reduction of Copper Slag Composite Pellets Within Lignite Using Biomass as Binder, In book: Energy Technology DOI 10.1007/978-3-319-72362-4_6, 2018, 2018 Линк

1907. Zuo, Zongliang, et al. "Direct reduction of copper slag-carbon composite pellets by coal and biochar." Environmental Technology just-accepted (2018): 1-40., 2018 Линк

537. Uzunova E., Mikosch H.. Electronic, magnetic structure and water splitting reactivity of the iron-sulfur dimers and their hexacarbonyl complexes: A density functional study. J. Chem. Phys., 141, AIP, 2014, ISSN:0021-9606, DOI:http://dx.doi.org/10.1063/1.4890650, 044307-044317. ISI IF:3.14

Цитира се в:

1908. Nakazawa, T. Density functional theory study on the geometric and electronic structures of Fe2O2 and the reaction of Fe2+O2 (2018) Computational Materials Science, 146, pp. 334-345., 2018

2015

538. Gancheva, M., Uzunov, I., Iordanova, R., Papazova, K.. Influence of the preparation method on the structure, optical and photocatalytic properties of nanosized ZnO. Materials Chemistry and Physics, 164, Elsevier, 2015, ISSN:0254-0584, 36-45. ISI IF:2.101

Цитира се в:

1909. Shanmugam V., Jeyaperumal K. "Investigations of visible light driven Sn and Cu doped ZnO hybrid nanoparticles for photocatalytic performance and antibacterial activity". Applied Surface Science, 449, 2018, 617-630, 2018

539. Najdoski, M., Koleva, V., Stojkovikj, S., Todorovski, T.. Electrochromic Thin Films of Sodium Intercalated Vanadium(V) Oxide Xerogels: Chemical Bath Deposition and Characterization. Surface and Coatings Technology, 277, Elsevier, 2015, ISSN:0257-8972, 308-317. ISI IF:1.998

Цитира се в:

1910. Patel, S.B., Panda, A.P., Swain, S.K., Patnaik, T., Muller, F., Delpeux-Ouldriane, S., Duclaux, L., Dey, R.K. Development of aluminum and zirconium based xerogel for defluoridation of drinking water: Study of material properties, solution kinetics and thermodynamics (2018) Journal of Environmental Chemical Engineering, 6 (5), pp. 6231-6242., 2018 Линк

1911. Sonmez, M. S., Yilmaz, E., Kalkan, D., & Ozkan Zayim, E. (2018). Comparison of vanadium oxide thin films deposited from commercial and solution combustion synthesised powders. Surface Engineering, 1-8., 2018 Линк

540. Radev, D. D., Ampaw, E.. Classical and Contemporary Synthesis Methods of Boron Carbide Powders. Comptes rendus de L’Academie bulgare des Sciences, 68, 8, 2015, ISSN:1310-1331, 945-966. ISI IF:0.284

Цитира се в:

1912. Vijay, S.K. "Synthesis of nanocrystalline boron carbide by sucrose precursor method-optimization of process conditions". Ceramics International, Volume 44, Issue 5, 1 April 2018, Pages 4676-4684, 2018

541. Koleva, V., Stefov, V., Najdoski, M., Cahil, A.. Thermal, Spectral and Microscopic Studies of Water-Rich Hydrate of the Type Mg2KH(PO4)2•15H2O. Thermal Transformations. Thermochimica Acta, 619, Elsevier, 2015, ISSN:0040-6031, 20-25. ISI IF:2.184

Цитира се в:

1913. Mirković, M., Dosen, A., Erić, S., Stojmenović, M., Matović, B., Rosić, A. Structural, morphological and electrical properties of multi-doped calcium phosphate materials as solid electrolytes for intermediate temperature solid oxide fuel cells (2018) Science of Sintering, 50 (1), pp. 95-109., 2018 Линк

542. Dimitrov, M. D., Ivanova, R. N., Štengl, V., Henych, J., Kovacheva, D., Tsoncheva, T.. Optimization of CeO2-ZrO2 mixed oxide catalysts for ethyl acetate combustion. Bulgarian Chemical Communications, 47, 1, Chemicals Institutes of the Bulgarian Academy of Sciences and of the Union of Chemists in Bulgaria, 2015, ISSN:0324-1130, 323-329. ISI IF:0.201

Цитира се в:

1914. Rana, Paresh H., and Parimal A. Parikh. "Role of oxygen storage/supply capacity of mixed oxides of Ce and Zr in ethanol oxidation." Chemical Engineering Research and Design 137 (2018): 478-487., 2018 Линк

543. Guergova, D., Stoyanova, E., Stoychev, D., Avramova, I., Stefanov, P.. Self-healing effect of ceria electrodeposited thin films on stainless steel in aggressive 0.5 mol/L NaCl aqueous solution. Journal of Rare Earths, 33, 11, 2015, ISSN:1002-0721, 1212-1227. SJR:0.538, ISI IF:1.261

Цитира се в:

1915. Marín-Sánchez, M., Gracia-Escosa, E., Conde, A., Palacio, C., García, I.Deposition of zinc-cerium coatings from deep eutectic ionic liquids (2018) Materials, 11 (10), art. no. 2035, ., 2018 Линк

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1916. Esmaeilzare, A., Rezaei, S.M., Ramezanzadeh, B.Corrosion and magnetic properties of encapsulated carbonyl iron particles in aqueous suspension by inorganic thin films for magnetorheological finishing application (2018) Applied Surface Science, 436, pp. 1200-1212., 2018 Линк

1917. Nadjette Bourenane, Youcef Hamlaoui , Celine Remazeilles , Fernando Pedraza. Effect of the pH of the electrolyte on the formation and on the corrosion properties of ceria based coating on carbon steel. (2018) Materials and corrosion. 1810302, 2018 Линк

544. Tsoncheva, T., Ivanova, R., Henych, J., Dimitrov, M., Kormunda, M., Kovacheva, D., Scotti, N., Santo, V.D., Štengl, V.. Effect of preparation procedure on the formation of nanostructured ceria-zirconia mixed oxide catalysts for ethyl acetate oxidation: Homogeneous precipitation with urea vs template-assisted hydrothermal synthesis. Applied Catalysis A: General, 502, Elsevier, 2015, ISSN:0926-860X, DOI:10.1016/j.apcata.2015.05.034, 418-432. SJR:1.213, ISI IF:3.942

Цитира се в:

1918. Ajumobi, O.O., Muraza, O., Kondoh, H., Hasegawa, N., Nakasaka, Y., Yoshikawa, T., Al Amer, A.M., Masuda, T. Upgrading oil sand bitumen under superheated steam over ceria-based nanocomposite catalysts (2018) Applied Energy, 218, pp. 1-9., 2018 Линк

1919. Yang, R., Liu, Y., Yu, L., Zhao, X., Yang, X., Sun, M., Luo, J., Fan, Q., Xiao, J., Zhao, Y. A composite material with CeO2-ZrO2 nanocrystallines embedded in SiO2 matrices and its enhanced thermal stability and oxygen storage capacity (2018) Journal of Nanoparticle Research, 20 (6), art. no. 151, ., 2018 Линк

1920. Sapna, Budhiraja, N., Kumar, V., Singh, S.K. Synergistic effect in structural and supercapacitor performance of well dispersed CoFe2O4/Co3O4 nano-hetrostructures (2018) Ceramics International, 44 (12), pp. 13806-13814., 2018 Линк

1921. Rana, P.H., Parikh, P.A. Role of oxygen storage/supply capacity of mixed oxides of Ce and Zr in ethanol oxidation (2018) Chemical Engineering Research and Design, 137, pp. 478-487., 2018 Линк

1922. Kuśtrowski, Piotr, Anna Rokicińska, and Tomasz Kondratowicz. "Abatement of Volatile Organic Compounds Emission as a Target for Various Human Activities Including Energy Production." Advances in Inorganic Chemistry (2018)., 2018 Линк

1923. Budhiraja, Narender, Vinod Kumar, and S. K. Singh. "Synergistic effect in structural and supercapacitor performance of well dispersed CoFe2O4/Co3O4 nano-hetrostructures." Ceramics International (2018)., 2018 Линк

1924. Hou, Zhongyan, et al. "The performance of manganese-based catalysts with Ce0. 65Zr0. 35O2 as support for catalytic oxidation of toluene." Applied Surface Science 434 (2018): 82-90., 2018 Линк

545. Milenov, T., Avramova, I., Valcheva, E., Tinchev, S., Avdeev, G.. Low energy Ar + -plasma thinning and thermal annealing of carbon films to few-layered graphene. Optical and Quantium Electronics, 47, 4, 2015, ISSN:0306-8919, 923-935. ISI IF:0.987

Цитира се в:

1925. Zhang, L., Feng, S., Xiao, S., Shen, G., Zhang, X., Nan, H., Gu, X., Ostrikov, K.K.Layer-controllable graphene by plasma thinning and post-annealing (2018) Applied Surface Science, 441, pp. 639-646., 2018 Линк

546. Tsoncheva, T., Genova, I., Dimitrov, M., Sarcadi-Priboczki, E., Venezia, A.M., Kovacheva, D., Scotti, N., dal Santo, V.. Nanostructured copper-zirconia composites as catalysts for methanol decomposition. Applied Catalysis B: Environmental, 165, Elsevier, 2015, ISSN:0926-3373, DOI:10.1016/j.apcatb.2014.10.058, 599-610. SJR:2.088, ISI IF:7.435

Цитира се в:

1926. Li, Y., Liu, T., Liang, C., Du, Z., Chen, C. The oxidation of methanol on hydroxylated m-ZrO2(− 1 1 1): a first-principles study (2018) Theoretical Chemistry Accounts, 137 (3), art. no. 44, ., 2018 Линк

1927. Li, G., Gu, C., Zhu, W., Wang, X., Yuan, X., Cui, Z., Wang, H., Gao, Z. Hydrogen production from methanol decomposition using Cu-Al spinel catalysts (2018) Journal of Cleaner Production, 183, pp. 415-423., 2018 Линк

1928. Jing, J., Li, L., Chu, W., Wei, Y., Jiang, C. Microwave-assisted synthesis of high performance copper-based catalysts for hydrogen production from methanol decomposition (2018) International Journal of Hydrogen Energy, 43 (27), pp. 12059-12068., 2018 Линк

1929. Qiu Shiming, et al. "Evaluation of several hydrogen catalysts for methanol cracking with vehicles." New chemical materials 46.3 (2018): 123-126., 2018 Линк

1930. Hassan, N. S., et al. "Exploiting copper–silica–zirconia cooperative interactions for the stabilization of tetragonal zirconia catalysts and enhancement of the visible-light photodegradation of bisphenol A." Journal of the Taiwan Institute of Chemical Engineers, Volume 82 (2018): 322-330., 2018 Линк

547. Naydenov, A.. Catalytic decomposition of ozone: from laboratory fixed bed reactor to design of adiabatic monolithic reactors. Bulgarian Chemical Communications, 47, Bulgarian Academy of Sciences, 2015, ISSN:0324-1130, 49-53. ISI IF:0.201

Цитира се в:

1931. Kozhukharov, S., Kiradzhiyska D., Мancheva Rositsa, Characterization of porous anodic alumina with AC-incorporated silver, Electrochimica Acta, Volume 292, 1 December 2018, Pages 614-627, 2018 Линк

548. Gonzalez J. R., Menedez R., Alcantara R., Nacimento F., Tirado J. L., Zhecheva E., Stoyanova R.. High-intensity ultrasonification as a way to prepare iron oxyhydroxide hybrid electrode with high capacity in lithium battery. Ultrasonics Sonochemistry, 24, Elsevier, 2015,

Page 124: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 124/154

DOI:10.1016/j.ultsonch.2014.12.001, 238-246. ISI IF:4.321

Цитира се в:

1932. Li, D., Deng, M., Yu, Z., Liu, W., Zhou, G., Li, W., Wang, X., Yang, D.-P., Zhang, W. "Biocompatible and Stable GO-Coated Fe3O4 Nanocomposite: A Robust Drug Delivery Carrier for Simultaneous Tumor MR Imaging and Targeted Therapy" (2018) ACS Biomaterials Science and Engineering, 4 (6), pp. 2143-2154, 2018 Линк

1933. Kim, T., Leyden, M.R., Ono, L.K., Qi, Y. "Stacked-graphene layers as engineered solid-electrolyte interphase (SEI) grown by chemical vapour deposition for lithium-ion batteries" (2018) Carbon, 132, pp. 678-690, 2018 Линк

549. Nazarova, E., Balchev, N., Nenkov, K., Buchkov, K., Kovacheva, D., Zahariev, A., Fuchs, G.. Transport and pinning properties of Ag-doped FeSe0.94. Superconductor Science and Technology, 28, 2, Institute of Physics Publishing (IOP), 2015, ISSN:0953-2048, DOI:10.1088/0953-2048/28/2/025013, SJR:1.088, ISI IF:2.325

Цитира се в:

1934. Brehm, J.A., Lin, J., Zhou, J., Sims, H., Liu, Z., Pantelides, S.T., Suenaga, K. Electron-Beam-Induced Synthesis of Hexagonal 1 H -MoSe2 from Square β-FeSe Decorated with Mo Adatoms (2018) Nano Letters, 18 (3), pp. 2016-2020., 2018 Линк

550. Stefanov, P., Todorova, S., Naydenov, A., Tzaneva, B., Kolev, H., Atanasova, G., Stoyanova, D., Karakirova, Y., Aleksieva, K.. On the development of active and stable Pd-Co/γ-Al2O3 catalyst for complete oxidation of methane. Chemical Engineering Journal, 266, Elsevier, 2015, ISSN:13858947, DOI:DOI: 10.1016/j.cej.2014.12.099, 329-338. SJR:1.585, ISI IF:4.321

Цитира се в:

1935. Choya, A., de Rivas, B., González-Velasco, J.R., Gutiérrez-Ortiz, J.I., López-Fonseca, R., Oxidation of residual methane from VNG vehicles over Co3 O4 -based catalysts: Comparison among bulk, Al2 O3 -supported and Ce-doped catalysts, Applied Catalysis B: Environmental 237, pp. 844-854, 2018, 2018

1936. Shi, D., Jianfang Liu, Rui Sun, Shengfu Ji, Scott M.Rogers, Bethany M.Connolly, Nikolaos Dimitratos, Andrew E.H.Wheatley, Preparation of bifunctional Au-Pd/TiO2 catalysts and research on methanol liquid phase one-step oxidation to methyl formate, Catalysis Today, 316, pp. 206-213, 2018, 2018 Линк

1937. Choya, A., de Rivas, B., Gutiérrez-Ortiz, J.I., López-Fonseca, R., Effect of residual Na+on the combustion of methane over Co3 O4 bulk catalysts prepared by precipitation, Catalysts, 8(10), 427, 2018, 2018

1938. Banerjee, A.C., McGuire, J.M., Lawnick, O., Bozack, M.J., Low-temperature activity and PdO-PdOx transition in methane combustion by a PdO-PdOx /γ-AL2 O3 catalyst, 2018, Catalysts, 8(7), 266, 2018, 2018

1939. Chen, X., Zheng, Y., Huang, F., (...), Zheng, Y., Jiang, L., Catalytic Activity and Stability over Nanorod-Like Ordered Mesoporous Phosphorus-Doped Alumina Supported Palladium Catalysts for Methane Combustion, ACS Catalysis 8 pp. 11016-11028, 2018, 2018

1940. Yuji Mahara, Junya Ohyama, Kyoichi Sawabe, Atsushi Satsuma, Synthesis of Supported Bimetal Catalysts using Galvanic Deposition Method, The Chemical Record, Chemical Record, 18(9), pp. 1306-1313, 2018, 2018

1941. LuLu An, Yumei Chen, Jianchao Shi, Jian-Liang Cao, Baozhong Liu, Juan Yang. “Oxygen Reuction Activity and Stability of Composite Pdx/Co-Nanofilms/C Electrocatalysts in Acid and Alkaline Media” Frontiers in Chemistry vol.6:596, p. 1-10, DOI: 10.3389/fchem.2018.00596, 2018, 2018

551. Caballo, M., Ortiz, G., Lopez, M. C., Alcantara, R., Gonzalez, J.R, Tirado, J.L, Stoyanova, R., Zhecheva, E. Self-organaized sodium titanate/tirania nanoforest for the negative electrode for sodium-ion microbatteries. Journal of Alloys and Compounds, 646, Elsevier, 2015, ISSN:0925-8388, 816-826. ISI IF:2.999

Цитира се в:

1942. Díez García, María Isabel "Preparation and study of ternary metal oxide photocathodes for solar energy conversion" PhD Thesis (2018) Universidad de Alicante. Departamento de Química Física, 2018 Линк

1943. Xu, Y., Bauer, D., Lübke, M., Ashton, T.E., Zong, Y., Darr, J.A. ''High-power sodium titanate anodes; a comparison of lithium vs sodium-ion batteries''. Journal of Power Sources, 408, pp. 28-37, 2018, 2018 Линк

1944. Skundin, A.M., Kulova, T.L., Yaroslavtsev, A.B. "Sodium-Ion Batteries (a Review)". Russian Journal of Electrochemistry, 54 (2), pp. 113-152, 2018, 2018 Линк

552. Nazarova, E., Buchkov, K., Terzieva, S., Nenkov, K., Zahariev, A., Kovacheva, D., Balchev, N., Fuchs, G.. The effect of Ag addition on the superconducting properties of FeSe0.94. Journal of Superconductivity and Novel Magnetism, 28, 3, 2015, ISSN:1557-1939, DOI:10.1007/s10948-014-2821-8, 1135-1138. ISI IF:1.18

Цитира се в:

1945. Zhang, S., Liu, J., Feng, J., Shao, B., Li, C., Zhang, P. Influences of Ag doping on the high energy ball milling aided sintering FeSe superconductors (2018) Journal of Materials Science: Materials in Electronics, 29 (2), pp. 1018-1024., 2018 Линк

1946. Karwoth, T., Furutani, K., Koblischka, M.R., Zeng, X.L., Wiederhold, A., Muralidhar, M., Murakami, M., Hartmann, U. Electrotransport and magnetic measurements on bulk FeSe superconductors (2018) Journal of Physics: Conference Series, 1054

Page 125: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 125/154

(1), art. no. 012018, ., 2018 Линк

553. Boyadzhieva, T., Koleva, V., Zhecheva, E., Nihtianova, D., Mihaylo,v L., Stoyanova, R.. Competitive lithium and sodium intercalation into sodium manganese phospho-olivine NaMnPO4 covered with carbon black. RSC Advances, 5, Royal Society of Chemistry, 2015, ISSN:2046-2069, 87694-87705. ISI IF:3.84

Цитира се в:

1947. Barpanda, P., Lander, L., Nishimura, S.-I., Yamada, A. Polyanionic Insertion Materials for Sodium-Ion Batteries (2018) Advanced Energy Materials, 8 (17), art. no. 1703055, , 2018 Линк

1948. Wu, L., Shi, S., Zhang, X., Yang, Y., Liu, J., Tang, S., Zhong, S. Room-temperature pre-reduction of spinning solution for the synthesis of Na3V2(PO4)3/C nanofibers as high-performance cathode materials for Na-ion batteries (2018) Electrochimica Acta, 274, pp. 233-241., 2018 Линк

1949. Zhu, X., Lin, T., Manning, E., Zhang, Y., Yu, M., Zuo, B., Wang, L. Recent advances on Fe- and Mn-based cathode materials for lithium and sodium ion batteries (2018) Journal of Nanoparticle Research, 20 (6), art. no. 160, , 2018 Линк

1950. Tianyi Wang, Dawei Su, Devaraj Shanmukaraj, Teofilo Rojo, Michel Armand, Guoxiu Wang, "Electrode Materials for Sodium-Ion Batteries: Considerations on Crystal Structures and Sodium Storage Mechanisms", (2018), Electrochemical Energy Reviews, 1 (2), 200-237, 2018 Линк

554. Ivanov, B., Spassov, I., Milanova, M., Tyuliev, G., Khristova, M.. Effect of the addition of rare earths on the activity of alumina supported copper cobaltite in CO oxidation, CH4 oxidation and NO decomposition. Journal of Rare Earths, 33, 4, Elsevier, 2015, ISSN:1002-0721, 382-390. ISI IF:1.261

Цитира се в:

1951. Chu, C., Tang, X.-L., Yi, H.-H., Cao, Y.-M., Li, C.-L., Li, J.-Y., Zhang, R.-C. 57193379811;57203756512;15053822300;57188651583;57193394850;57193387287;57193774626; Impact of materials and structure of electrolytic cell on denitration performance of solid oxides electrolysis cell [电解池材料与结构对固体氧化物电解池

脱硝性能的影响] (2018) Xiandai Huagong/Modern Chemical Industry, 38 (4), pp. 59-63., 2018 Линк

1952. Intana, T., Föttinger, K., Rupprechter, G., & Kongkachuichay, P. (2018). Role of Copper and Cerium on Core–Shell Al-MCM-41 in NO Reduction via a SCR-CH4. Journal of nanoscience and nanotechnology, 18(1), 132-142., 2018

1953. Liu, K., Yu, Q., Qin, Q., & Wang, C. (2018). Selective catalytic reduction of nitric oxide with carbon monoxide over alumina-pellet-supported catalysts in the presence of excess oxygen. Environmental technology, 39(15), 1878-1885., 2018 Линк

555. Harizanova, S. G., Zhecheva, E. N., Valchev, V. D., Khristov, M. G., Stoyanova, R. K.. Improving the thermoelectric efficiency of Co based ceramics. Materials Today: Proceedings, 2, 8, Elsevier, 2015, ISSN:2214-7853, 4256-4261

Цитира се в:

1954. Dudnikov, V., Orlov, Y., Fedorov, A., Solovyov, L., Vereshchagin, S., Burkov, A., Novikov, S., Ovchinnikov, S. "Effect of oxygen nonstoichiometry on electrical conductivity and thermopower of Gd0.2Sr0.8FeO3-δ ferrite samples" (2018) Materials, 12 (1), art. no. 74, ., 2018 Линк

556. Kurnia Wijayanti, Stanislava Andonova, Ashok Kumar, Junhui Li, Krishna Kamasamudram, Neal W. Currier, Aleksey Yezerets, Louise Olsson. Impact of sulfur oxide on NH3-SCR over Cu-SAPO-34. Applied Catalysis B: Environmental, 166-167, 2015, DOI:10.1016/j.apcatb.2014.11.043, 568-579. ISI IF:9.446

Цитира се в:

1955. P. S. Hammershøi, P.N.R. Vennestrøm, H. Falsig, A.D. Jensen, T.V.W. Janssens. "Importance of the Cu oxidation state for the SO2-poisoning of a Cu-SAPO-34 catalyst in the NH3-SCR reaction." Applied Catalysis B: Environmental 236 (2018) 377-383., 2018 Линк

1956. Jonas Granestrand, Sandra Dahlin, Oliver Immele, Leonhard Schmalhorst, Cornelia Lantto, Marita Nilsson, Rodrigo Suárez París, Francesco Regali and Lars J. Pettersson. "Catalytic aftertreatment systems for trucks fueled by biofuels – aspects on the impact of fuel quality on catalyst deactivation" Catalysis: Volume 30, 2018, Royal Society of Chemistry., 2018 Линк

1957. Z. Chen, C. Fan, L. Pang, S. Ming, P. Liu, T. Li. "The influence of phosphorus on the catalytic properties, durability, sulfur resistance and kinetics of Cu-SSZ-13 for NOx reduction by NH3-SCR". Applied Catalysis B: Environmental 237 (2018) 116-127., 2018 Линк

1958. L. Bing, G. Wang, K. Yi, A. Tian, F. Wang, Ch. Wu. "One-pot synthesis of Cu-SAPO-34 catalyst using waste mother liquid and its application in the selective catalytic reduction of NO with NH3". Catalysis Today 316 (2018) 37-42., 2018 Линк

1959. Q. Yan, S. Chen, Ch. Zhang, Q. Wang, B. Louis. "Synthesis and catalytic performance of Cu1Mn0.5Ti0.5Ox mixed oxide as low-temperature NH3-SCR catalyst with enhanced SO2 resistance". Applied Catalysis B: Environmental 238 (2018) 236-247., 2018 Линк

1960. T. Wang, X. Zhang, J. Liu, H. Liu, Y. Guo, B. Sun. "Plasma-assisted catalytic conversion of NO over Cu-Fe catalysts supported on ZSM-5 and carbon nanotubes at low temperature". Fuel Processing Technology 178 (2018) 53-61., 2018 Линк

1961. S. Yu, S. Xu, B. Sun, Y. Lu, L. Li, W. Zou, P. Wang, F. Gao, C. Tang, L. Dong. "Synthesis of CrOx/C catalysts for low temperature NH3-SCR with enhanced regeneration ability in the presence of SO2". RSC Adv., 8 (2018) 3858-3868., 2018 Линк

Page 126: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 126/154

1962. G. Yang, X. Du, J. Ran, X. Wang, Y. Chen, L. Zhang. "Understanding SO2 Poisoning over Different Copper Species of Cu-SAPO-34 Catalyst: A Periodic DFT Study" Journal of Physical Chemistry C 122 (2018) 21468-21477., 2018 Линк

1963. Y. Liu, J. Zhao, J.‐Min Lee. "Conventional and New Materials for Selective Catalytic Reduction (SCR) of NOx". Chem.Cat.Chem. 10 (2018) 1499-1511., 2018 Линк

1964. Ch. Tang, et al., "Study of SO2 effect on selective catalytic reduction of NOx with NH3 over Fe/CNTs: The change of reaction route" Catalysis Today, 2017, in press , , 2018 Линк

1965. X. Sun, Rui-tang Guo, Ming-yuan Li, P. Sun, Wei-guo Pan, Shu-ming Liu, J. Liu, Shuai-wei Liu. "The promotion effect of Fe on CeZr2O x catalyst for the low-temperature SCR of NO x by NH3" Research on Chemical Intermediates 44 (2018) 3455–3474., 2018 Линк

1966. Y. Lio, et al., "Conventional and New Materials for SCR NOx Catalytic Reduction" ChemCatChem. 2017, in press, 2018 Линк

1967. D. Fan, et al., "Catalytic deactivation mechanism research over Cu/SAPO-34 catalysts for NH3-SCR (I): The impact of 950 °c hydrothermal aging time" Chemical Engineering Science, 176 (2018) 285-293., 2018 Линк

1968. P. S. Hammershøi, et al., "Reversible and irreversible deactivation of Cu-CHA NH3-SCR catalysts by SO2 and SO3" Applied Catalysis B: Environmental, 2017, in press., 2018 Линк

1969. M. Shen, et al., “Nature of SO3 poisoning on Cu/SAPO-34 SCR catalysts” Journal of Catalysis, 358 (2018) 277-286., 2018 Линк

557. Iordanova, R., Gegova, R., Bachvarova-Nedelcheva, A., Dimitriev, Y.. Sol-gel synthesis of composites in the ternary TiO2-TeO2-B2O3 system. Physics and Chemistry of Glasses: European Journal of Glass Science and Technology B, 56, 4, 2015, ISSN:0031-9090, 128-138. SJR:0.377, ISI IF:0.63

Цитира се в:

1970. Islam S., Bakhtiar H., Bidin N., Salim A.A., Riaz S., Abbas K.N., Suan L.P., Naseem S., Influence of ZnO doping on structural, optical and pH-stimulus characteristics of silica-titania nanocomposite matrix, J. Saudi Chem. Soc., 22 (7) (2018) pp 826-837., 2018 Линк

558. Gegova, R., Bachvarova-Nedelcheva, A., Iordanova, R., Dimitriev, Y.. Synthesis and crystallization of gels in the TiO2-TeO2-ZnO system. Bulgarian Chemical Communications, 47, 1, 2015, ISSN:0324-1130, 378-386. SJR:0.153, ISI IF:0.201

Цитира се в:

1971. Yeasmin, Zenefar; Alim, Abdul; Ahmed, Samina; et al., Synthesis, Characterization and, Efficiency of HAp-TiO2-ZnO Composite as a Promising Photocatalytic Material, Transactions of the Indian Ceramic Society, 77 (3) ( 2018) pp. 161-168., 2018 Линк

559. Stoyanova A., Ivanova N., Bachvarova-Nedelcheva A., Iordanova R.. Synthesis and photocatalytic performance of Fe (III), N co-doped TiO2 nanoparticle. Bulgarian Chemical Communications, 47, 1, 2015, ISSN:0324-1130, 330-335. SJR:0.153, ISI IF:0.201

Цитира се в:

1972. Gonzalez Patricio Allende, Laguna-Bercero Miguel A., Barrientos Lorena, Valenzuela Maria Luisa, and Díaz Carlos, Solid State Tuning of TiO2 Morphology, Crystal Phase and Size through Metal Macromolecular Complexes and its significance in the Photocatalytic Response, ACS Appl. Energy Mater., DOI: 10.1021/acsaem.8b00374 (2018) pp. 1-44, 2018 Линк

560. Gancheva, M., Aleksandrov, L., Iordanova, R., Dimitriev, Y.. Synthesis of amorphous and crystalline LaBWO6 using mechanochemical activation. Journal of Chemical Technology and Metallurgy, 50, 4, 2015, ISSN:1314-7978, 467-473

Цитира се в:

1973. Gaikwad, D. K., et al. "Physical, structural, optical investigation and shielding featuresof tungsten bismuth tellurite based glasses." Journal of Non-Crystalline Solids (2018)., 2018

561. Vasilić, R., Stojadinović, S., Radić, N., Stefanov, P., Dohčević-Mitrović, Z., Grbić, B.. One-step preparation and photocatalytic performance of vanadium doped TiO2 coatings. Materials Chemistry and Physics, 151, 1, Elsevier Ltd, 2015, ISSN:02540584, DOI:10.1016/j.matchemphys.2014.11.077, 337-344. SJR:0.733, ISI IF:2.101

Цитира се в:

1974. Amirsalehi, Mahmoud; Askari, Masoud Influence of vanadium, cobalt-codoping on electrochemical performance of titanium dioxide bronze nanobelts used as lithium ion battery anodes JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS Volume: 29 Issue: 15 Pages: 13068-13076, 2018, 2018 Линк

1975. Dehnavi, V., Binns, W.J., Noël, J.J., Shoesmith, D.W., Luan, B.L. Growth behaviour of low-energy plasma electrolytic oxidation coatings on a magnesium alloy Journal of Magnesium and Alloys, 6 (3), pp. 229-237. (2018), 2018 Линк

562. Iordanova, R., Ataalla, M., Milanova, M., Aleksandrov, L., Staneva, A., Dimitriev, Y.. Glass formation and structure of glasses in the WO3-ZnO-Nd2O3-Al2O3 system. Journal of Non-Crystalline Solids, 414, elsevier, 2015, ISSN:0022-3093, DOI:10.1016/j.jnoncrysol.2015.02.010, 42-50. SJR:0.753, ISI IF:1.766

Цитира се в:

Page 127: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 127/154

1976. Ahmed, Mohamed Raheem, et al. "Role of aluminum on the physical and spectroscopic properties of chromium-doped strontium alumino borate glasses." International Journal of Modern Physics B 32.08 (2018): 1850095., 2018

563. Tsoncheva, T., Velinov, N., Ivanova, R., Stoycheva, I, Tsyntsarski, B., Spassova, I., Paneva, D., Issa, G., Kovacheva, D, Genova, I., Mitov, I., Petrov, N.. Formation of catalytic active sites in iron modified activated carbons from agriculture residues. Microporous and Mesoporous Materials, 217, Elsevier, 2015, 87-95. ISI IF:3.453

Цитира се в:

1977. Guardia, L., Suárez, L., Querejeta, N., Pevida, C., Centeno, T.A. Winery wastes as precursors of sustainable porous carbons for environmental applications (2018) Journal of Cleaner Production, 193, pp. 614-624., 2018 Линк

1978. Wang, C., Chen, L., Liu, S., & Zhu, L. (2018). Nitrite desorption from activated carbon fiber during capacitive deionization (CDI) and membrane capacitive deionization (MCDI). Colloids and Surfaces A: Physicochemical and Engineering Aspects, 559, 392-400., 2018 Линк

564. Aleksandrov, L., Komatsu, T., Shinozaki, K., Honma, T., Iordanova, R.. Structure of MoO3-WO3-La2O3-B2O3 glasses and crystallization of LaMo1-xWxBO6 solid solution. Journal of Non-Crystalline Solids, 429, Elsevier, 2015, ISSN:0022-3093, DOI:10.1016/j.jnoncrysol.2015.09.004, 171-177. ISI IF:1.766

Цитира се в:

1979. Abo-Naf, S.M., R.L. Elwan, & H.A. ElBatal. “Photoluminescence, optical properties, thermal behavior and nano-crystallization of molybdenum-doped borobismuthate glasses”. J Mater Sci: Mater Electron 29 (2018): 4915., 2018 Линк

1980. Abo-Naf, S.M., S.A.M. Abdel-Hameed, A.M. Fayad, M.A. Marzouk, and Y.M. Hamdy. “Photoluminescence behavior of MO3 -B2 O3 -CeO2 -Bi2 O3 (M = Mo or W) glasses and their counterparts nano-glass-ceramics”. Ceramics International 44.17 (2018): 21800., 2018 Линк

565. Sachse, А, Cardoso, L., Kostov, K.L., Gerardin, C., Belamie, E., Alonso, B.. Mesoporous alumina from colloidal bio-templating of Al clusters. Chemistry-A European Journal, 21, 8, Wiley-VCH Verlag GmbH& 3206 Co. KGaA, Weinheim, 2015, ISSN:1521-3765, DOI:10.1002/chem.201405444, 3206-3210. SJR:2.7, ISI IF:5.731

Цитира се в:

1981. Liu, Y., Teng, W., Chen, G., Zhao, Z., Zhang, W., Kong, B., Hozzein, W.N., Al-Khalaf, A.A., Deng, Y. and Zhao, D., A vesicle-aggregation-assembly approach to highly ordered mesoporous γ-alumina microspheres with shifted double-diamond networks, Chemical science, 9(39), pp.7705-7714, 2018, 2018

1982. Nguyen, T.D., Tang, D., D’Acierno, F., Michal, C.A. and MacLachlan, M.J., Biotemplated Lightweight γ-Alumina Aerogels, Chemistry of Materials, 30(5), pp.1602-1609, 2018, 2018

566. Voleská, I., Nachtigall, P., Ivanova, E., Hadjiivanov, K., Bulánek, R.. Theoretical and experimental study of CO adsorption on Ca-FERzeolite. Catalysis Today, 243, 2015, DOI:10.1016/j.cattod.2014.07.029, 53-61. ISI IF:3.893

Цитира се в:

1983. A. Sierraalta, R. Añez, D.S. Coll and P. Alejos, New theoretical insight on the acid sites distribution, their local structures and acid strength of the SAPO-11 molecular sieve, Int. J. Quantum Chem., 118 (2018) e25541, DOI: 10.1002/qua.25541, 2018 Линк

1984. G. Paul, C. Bisio, I. Braschi, M. Cossi, G. Gatti, E. Gianotti and L. Marchese, Combined solid-state NMR, FT-IR and computational studies on layered and porous materials, Chem. Soc. Rev., 47 (2018) 5684 [ISI]., 2018 Линк

567. Tsoncheva, T., Genova, I., Stoycheva, I., Spassova I., Ivanova, R., Tsyntsarski, B., Issa, G., Kovacheva, D., Petrov, N.. Activated carbon from waste biomass as catalyst support: formation of active phase in copper and cobalt catalysts for methanol decomposition. Journal of Porous Materials, 22, 5, Springer, 2015, ISSN:1380-2224, 1127-1136. ISI IF:1.108

Цитира се в:

1985. Hargreaves, J.S.J. Catalysts derived from waste materials (2018) Catalysis, 30, pp. 1-20., 2018 Линк

568. Sachse, А, Hulea, V., Kostov, K.L., Belamie, E., Alonso, B.. Improved silica-titania catalysts by chitin bio-templating. Catalysis Science and Technology, 5, 1, The Royal Society of Chemistry, 2015, ISSN:20444761, DOI:10.1039/c4cy00978a, 415-427. SJR:1.68, ISI IF:5.426

Цитира се в:

1986. Variani, Y.M., Rojas, A. and Pergher, S.B., 2018. Synthesis and characterization of Ti-STF zeolite using 1, 2, 3-triethyl-4-methylimidazolium as structure-directing agent. Microporous and Mesoporous Materials, 262, pp.106-111, 2018., 2018

1987. Bo Duan, Yao Huang, Ang Lu, Lina Zhang, Recent Advances in Chitin Based Materials Constructed via Physical Methods, Progress in Polymer Science 82, 1-33, 2018., 2018

569. Mihaylov, M., Ivanova, E., Aleksandrov, H., Petkov, P., Vayssilov, G., Hadjiivanov, K.. FTIR and density functional study of NO interaction with reduced ceria: Identification of N3− and NO2− as new intermediates in NO conversion. Applied Catalysis B Environmental, 176-177,

Page 128: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 128/154

2015, DOI:10.1016/j.apcatb.2015.03.054, 107-119. SJR:2.088, ISI IF:8.51

Цитира се в:

1988. Mu, JC, Li, XY, Sun, WB, Fan, SY , Wang, XY, Wang, L, Qin, MC, Gan, GQ, Yin, ZF, Zhang, DK, Inductive Effect Boosting Catalytic Performance of Advanced Fe1-xVxO delta Catalysts in Low-Temperature NH3 Selective Catalytic Reduction: Insight into the Structure, Interaction, and Mechanisms, ACS Catal., 8 (2018) 6760 -6774, DOI: 10.1021/acscatal.8b01196, 2018 Линк

1989. Chen, S, Wang, HQ, Shi, MP, Ye, HL, Wu, ZB, Deep Oxidation of NO by a Hybrid System of Plasma-N-Type Semiconductors: High-Energy Electron-Activated "Pseudo Photocatalysis" Behavior, Environ. Sci. Technol., (2018) 8568 -8577, DOI: 10.1021/acs.est.8b00655, 2018 Линк

1990. Tronconi, E, Nova, I, Novakova, J, Bernauer, M, Sazama, P, Sobalik, Z, Mechanistic Study of the NO+NH4NO3 Reaction on H- and Fe/H-BEA Zeolites Using N-15 and O-18 Labeled Species, Top. Catal. 61 (2018) 1967-1973, DOI: 10.1007/s11244-018-1026-y, 2018 Линк

1991. Liao, E, Xu, YS, Jiang, QX, Xia, WS, Characterisation of dominant autochthonous strains for nitrite degradation of Chinese traditional fermented fish, Int. J. Food Sci. & Technol. (2018) 2633-2641 DOI: 10.1111/ijfs.13914, 2018 Линк

1992. Filtschew, A, Hess, C., Unravelling the mechanism of NO and NO2 storage in ceria: The role of defects and Ce-O surface sites, , Appl. Catal. B, 237 (2018) 1066 -1081, DOI: 10.1016/j.apcatb.2018.06.058, 2018 Линк

1993. T.H. Vuong, S. Bartling, U. Bentrup, H. Lund, J. Rabeah, H. Atia, U. Armbruster and A. Brückner, Synergistic effect of VOx and MnOx surface species for improved performance of V2O5/Ce0.5Ti0.5−xMnxO2−δ catalysts in low-temperature NH3-SCR of NO, Catal. Sci. Technol., 2018, Advance Article, DOI:10.1039/C8CY02193G, 2018 Линк

570. Marinova, D, Karadjova, V, Stoilova , D. Infrared spectroscopic study of SO42− ions included in M′2M′′(SeO4)2.6H2O (Me′=K, NH4+; M′′=Mg, Co, Ni, Cu, Zn) and NH4+ ions included in K2M(XO4)2.6H2O (X=S, Se; M=Mg, Co, Ni, Cu, Zn). Spectrochimica Acta A, 134, 0.6, Elsevier, 2015, ISSN:1386-1425, DOI:10.1016/j.saa.2014.06.114, 526-534. SJR:0.595, ISI IF:2.353

Цитира се в:

1994. Wang, D., Shi, Z., Cui, X., Robust Sparse Unmixing for Hyperspectral Imagery, (2018) IEEE Transactions on Geoscience and Remote Sensing, 56 (3), pp. 1348-1359, 2018 Линк

571. Kalapsazova, M., Ortiz, G. F., Tirado, J. L., Dolotko, O., Zhecheva, E., Nihtyanova, D., Mihaylov, L., Stoyanova, R.. P3-type of layered sodium-deficient nickel-manganese oxides: a flexible structural matrix for reversible sodium and lithium intercalation. ChemPlusChem, 80, 11, Wiley, 2015, ISSN:2192-6506, 1642-1656. ISI IF:3.026

Цитира се в:

1995. Kubota, K., Kumakura, S., Yoda, Y., Kuroki, K., Komaba, S. Electrochemistry and Solid-State Chemistry of NaMeO2 (Me = 3d Transition Metals) (2018) Advanced Energy Materials, 8 (17), art. no. 1703415, 2018 Линк

1996. Yoda, Y., Kubota, K., Isozumi, H., Horiba, T., Komaba, S. Poly-γ-glutamate Binder to Enhance Electrode Performances of P2-Na2/3Ni1/3Mn2/3O2 for Na-Ion Batteries (2018) ACS Applied Materials and Interfaces, 10 (13), pp. 10986-10997, 2018 Линк

1997. Huang, Q., Liu, J., Zhang, L., Xu, S., Chen, L., Wang, P., Ivey, D.G., Wei, W. Tailoring alternating heteroepitaxial nanostructures in Na-ion layered oxide cathodes via an in-situ composition modulation route (2018) Nano Energy, 44, pp. 336-344, 2018 Линк

1998. Song, J., Gim, J., Park, S., Kim, J. Sodium manganese oxide electrodes accompanying self-ion exchange for lithium/sodium hybrid ion batteries (2018) Electrochimica Acta, 261, pp. 42-48, 2018

1999. Huang, Q.; Xu, S.; Xiao, L.; He, P.; Liu, J.; Yang, Y.; Wang, P.; Huang, B.; Wei, W. "Improving the Electrochemical Properties of the Manganese-Based P3 Phase by Multiphasic Intergrowth" Inorg. Chem., 2018, 57 (24), pp 15584–15591, 2018 Линк

572. Stojadinović, S., Tadić, N., Radić, N., Stefanov, P., Grbić, B., Vasilić, R.. Anodic luminescence, structural, photoluminescent, and photocatalytic properties of anodic oxide films grown on niobium in phosphoric acid. Applied Surface Science, 355, Elsevier, 2015, ISSN:0169-4332, DOI:10.1016/j.apsusc.2015.07.174, 912-920. SJR:0.913, ISI IF:2.711

Цитира се в:

2000. Stepniowski, W.J., Misiolek, W.Z. Review of fabrication methods, physical properties, and applications of nanostructured copper oxides formed via electrochemical oxidation Nanomaterials, 8 (6), art. no. 379, (2018), 2018 Линк

2001. Kollender, J.P., Mardare, C.C., Mardare, A.I., Hassel, A.W. Downstream analytics quantification of ion release during high-voltage anodisation of niobium Journal of Solid State Electrochemistry, 22 (8), pp. 2457-2464. (2018), 2018 Линк

2002. Pereira, B.L., da Luz, A.R., Lepienski, C.M., Mazzaro, I., Kuromoto, N.K. Niobium treated by Plasma Electrolytic Oxidation with calcium and phosphorus electrolytes Journal of the Mechanical Behavior of Biomedical Materials, 77, pp. 347-352., (2018), 2018 Линк

2003. Wang, X., Zhu, Z., Li, Y., Chen, H. Characterization of Micro-arc Oxidation Coatings on 6N01 Aluminum Alloy Under Different Electrolyte Temperature Control Modes Journal of Materials Engineering and Performance, 27 (4), pp. 1890-1897. , (2018), 2018 Линк

573. Mihaylov, M., Andonova, S., Chakarova, K., Vimont, A., Ivanova, E., Drenchev, N., Hadjiivanov, K.. An advanced approach for measuring

Page 129: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 129/154

acidity of hydroxyls in confined space: a FTIR study of low-temperature CO and 15N2 adsorption on MOF samples from the MIL-53(Al) series. Physical Chemistry Chemical Physics, 17, 2015, DOI:10.1039/C5CP04139B, 24304-24314. ISI IF:4.493

Цитира се в:

2004. Hoffman, A.E.J. Vanduyfhuys, L. Nevjestić, I. Wieme, J. Rogge, S.M.J. Depauw, H. Van Der Voort, P. Vrielinck, H. Van Speybroeck, V., "Elucidating the Vibrational Fingerprint of the Flexible Metal–Organic Framework MIL-53(Al) Using a Combined Experimental/Computational Approach", J. Phys. Chem. C, 122 (2018) 2734-2746 [ISI], 2018 Линк

2005. Khusnun, N.F. Jalil, A.A. Triwahyono, S. Hitam, C.N.C. Hassan, N.S. Jamian, F. Nabgan, W. Abdullah, T.A.T. Kamaruddin, M.J. Hartanto, D., "Directing the amount of CNTs in CuO–CNT catalysts for enhanced adsorption-oriented visible-light-responsive photodegradation of p-chloroaniline", Powder Technol., 327 (2018) 170-178 [ISI], 2018 Линк

2006. A. Antunes, A. Gomes, N. Paiva, J. Ferra, J. Martins, L. Carvalho, A. Barros-Timmons, F. D. Magalhães, "Blocked melamine–urea–formaldehyde resins and their usage in agglomerated cork panels", J. Appl. Polym. Sci., 135 (2018) 46663., 2018 Линк

2007. C. O. Areán, "Probing Brønsted acidity of protonic zeolites with variable-temperature infrared spectroscopy", Ukr. J. Phys., 63 (2018) 538-545., 2018 Линк

574. Zdravkova, V., Drenchev, N., Ivanova, E., Mihaylov, M., Hadjiivanov, K.. Surprising Coordination Chemistry of Cu+ Cations in Zeolites: FTIR Study of Adsorption and Coadsorption of CO, NO, N2, and H2O on Cu–ZSM-5. Journal of Physical Chemistry C, 119, 27, 2015, DOI:10.1021/acs.jpcc.5b03213, 15292-15302. ISI IF:4.772

Цитира се в:

2008. Kharchenko, A. Zholobenko, V. Vicente, A. Fernandez, C. Vezin, H. De Waele, V. Mintova, S., "Formation of copper nanoparticles in LTL nanosized zeolite: spectroscopic characterization, Phys. Chem. Chem. Phys., 20 (2018) 2880-2889 [ISI], 2018 Линк

575. Panayotov, D., Ivanova, E., Mihaylov, M., Chakarova, K., Spassov, T., Hadjiivanov, K.. Hydrogen Spillover on Rh/TiO2: FTIR Study of Donated Electrons, Coadsorbed CO and H/D Exchange. Physical Chemistry Chemical Physics, 17, 2015, DOI:10.1039/C5CP03148F, 20563-20573. ISI IF:4.493

Цитира се в:

2009. A. Reghu, “Surface Reaction and Diffusion Kinetics in Semiconducting Metal Oxide Film Gas Sensors”, Ph. D. Thesis, University of Maine, Orono, Maine, USA, 2018., 2018 Линк

2010. A. V. Smirnov, P. A. Kots, M. A. Panteleyev, I. I. Ivanova, "Mechanistic study of 1, 1-dimethylhydrazine transformation over Pt/SiO2 catalyst", RSC Adv., 8, (2018) 36970-36979., 2018 Линк

2011. A. M. Shakib, “Mechanistic Studies of Reducible Metal Oxides as Hydrodeoxygenation Catalysts”, Ph. D. Thesis, University of Maine, Orono, Maine, USA, 2018., 2018 Линк

576. Kouzmanova, Y., Dimitrova, I, Gentscheva, G., Aleksandrov, L., Markova-Velichkova, M., Kovacheva, D.. Comparative study of the phase formation and interaction with water of calcium-silicate cements with dental applications. 2015, 239-244. SJR:0.16, ISI IF:0.238

Цитира се в:

2012. Rajasekharan, S., C. Vercruysse, L. Martens, and R. Verbeeck. Effect of Exposed Surface Area, Volume and Environmental pH on the Calcium Ion Release of Three Commercially Available Tricalcium Silicate Based Dental Cements. Materials 11. 1 (2018): 123., 2018 Линк

577. Georgieva, I., Aquino, A. J. A., Plasser, F., Trendafilova, N., Köhn, A., Lischka, H.. Intramolecular Charge-Transfer Excited-State Processes in 4-(N,N-Dimethylamino)benzonitrile: The Role of Twisting and the πσ* State. Journal of Physical Chemsitry A, 119, 24, American Chemical Society, 2015, 6232-6243. ISI IF:2.883

Цитира се в:

2013. Karbalaei Khani, S., Marefat Khah, A., Hättig, C., COSMO-RI-ADC(2) excitation energies and excited state gradients, 2018, Physical Chemistry Chemical Physics, 20(24), pp. 16354-16363., 2018

2014. Rankine, C.D., Nunes, J.P.F., Feixas, T.W.B.L., Young, S., Wann, D.A., Structure of 4-(Dimethylamino)benzonitrile Using Gas Electron Diffraction: A New Lease of Life for the only Gas Electron Diffractometer in the U.K., 2018, Journal of Physical Chemistry A, 122(25), pp. 5656-5665., 2018

2015. Liese, D., Haberhauer, G., Rotations in Excited ICT States – Fluorescence and its Microenvironmental Sensitivity, 2018, Israel Journal of Chemistry, 58(8), pp. 813-826., 2018 Линк

2016. Jȩdrzejewska, B., Skotnicka, A., Laurent, A.D., (...), Jacquemin, D., Ośmiałowski B., Influence of the Nature of the Amino Group in Highly Fluorescent Difluoroborates Exhibiting Intramolecular Charge Transfer, 2018, Journal of Organic Chemistry, 83(15), pp. 7779-7788., 2018 Линк

2017. Modesto-Costa, L., Borges, I., Discrete and continuum modeling of solvent effects in a twisted intramolecular charge transfer system: The 4-N, N-dimethylaminobenzonitrile (DMABN) molecule, 2018, Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy, 201, pp. 73-81., 2018 Линк

2018. Marefat Khah, A., Karbalaei Khani, S., Hättig, C., Analytic Excited State Gradients for the QM/MM Polarizable Embedded Second-

Page 130: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 130/154

Order Algebraic Diagrammatic Construction for the Polarization Propagator PE-ADC(2), 2018, Journal of Chemical Theory and Computation, 14(9), pp. 4640-4650., 2018 Линк

2019. Sun, W., Cui, J.-X., Ma, L.-L., (...), He, L., Wang, R.Imaging nucleus viscosity and G-quadruplex DNA in living cells using a nucleus-targeting two-photon fluorescent probe, 2018, Analyst, 143(23), pp. 5799-5804., 2018 Линк

2020. Mewes, S.A., Plasser, F., Krylov, A., Dreuw, A., Benchmarking Excited-State Calculations Using Exciton Properties (2018) Journal of Chemical Theory and Computation, 14(2), pp. 710-725., 2018 Линк

2021. Ma, C., Ou, Y.-Q., Chan, C.T.-L., (...), Wang, M.-L., Kwok, W.-M., Nonradiative dynamics determined by charge transfer induced hydrogen bonding: A combined femtosecond time-resolved fluorescence and density functional theoretical study of methyl dimethylaminobenzoate in water, (2018) Physical Chemistry Chemical Physics, 20(2), pp. 1240-1251., 2018 Линк

2022. Bohnwagner, Mercedes Vanessa, Intramolecular Charge Transfer in Solvated Organic Molecules: A Quantum Chemical Study Fakultät für Chemie und Geowissenschaften > Dekanat der Fakultät für Chemie und Geowissenschaften, 2018 Линк

578. Mujahid, M., Folytn-Arfa Kia, A., Duff, B., Egan, D. A., Devereux, M., McClean, S., Walsh, M., Georgieva, I., Trendafilova, N., Creaven, B. S.. Spectroscopic studies, DFT calculations and cytotoxic activity of novel silver(I) complexes of hydroxy ortho-substituted-nitro-2H-chromen-2-one ligands and a phenanthroline adduct. Journal of Inorganic Biochemistry, 153, Elsevier, 2015, 103-113. ISI IF:3.205

Цитира се в:

2023. Munteanu, A.-C., Badea, M., Olar, R., Silvestro, L., Mihaila, M., Brasoveanu, L.I., Musat, M.G., Andries, A., Uivarosi, V., Cytotoxicity studies, DNA interaction and protein binding of new Al (III), Ga (III) and In (III) complexes with 5-hydroxyflavone (2018) Applied Organometallic Chemistry, 32 (12), art. no. e4579, 2018 Линк

2024. Sert, Y., Gümüş, M., Gökce, H., Kani, İ., Koca, İ., Molecular docking, Hirshfeld surface, structural, spectroscopic, electronic, NLO and thermodynamic analyses on novel hybrid compounds containing pyrazole and coumarin cores (2018) Journal of Molecular Structure, 1171, pp. 850-866., 2018 Линк

2025. Torres, I., Ruiz, M., Phan, H., Dominguez, N., Garcia, J., Nguyen, T.-Q., Evans, H., Resendiz, M.J., Baruah, T., Metta, A., Arif, A., Noveron, J.C., Mesomorphic behavior in silver(I) N-(4-Pyridyl) benzamide with aromatic π-π stacking counterions (2018) Materials, 11 (9), art. no. 1666., 2018 Линк

2026. Rusu, A., Hancu, G., Imre, S. Essential guide of analysis methods applied to silver complexes with antibacterial quinolones (2018) Advanced Pharmaceutical Bulletin, 8 (2), pp. 181-189., 2018 Линк

579. Uzunova, E., Seriani, N., Mikosch, H.. CO2 Conversion to Methanol on Cu(I) Oxide Nanolayers and Clusters: Electronic Structure Insight into the Reaction Mechanism. Physical Chemistry Chemical Physics, 17, 2, Royal Society of Chemistry, 2015, ISSN:1463-9076, DOI:http://dx.doi.org/10.1039/C5CP01267H, 11088-11094. ISI IF:4.493

Цитира се в:

2027. Qi, L., Liu, S., Gao, W., Jiang, Q. Mechanistic Understanding of CO2 Electroreduction on Cu2O (2018) Journal of Physical Chemistry C, 122 (10), pp. 5472-5480, 2018

2028. Lee, K., Lee, S., Cho, H., Jeong, S., Kim, W.D., Lee, S., Lee, D.C. Cu+-incorporated TiO2 overlayer on Cu2O nanowire photocathodes for enhanced photoelectrochemical conversion of CO2 to methanol (2018) Journal of Energy Chemistry, 27 (1), pp. 264-270., 2018

2029. Rhatigan, S., Nolan, M. CO2 and water activation on ceria nanocluster modified TiO2 rutile (110) (2018) Journal of Materials Chemistry A, 6 (19), pp. 9139-9152., 2018

2030. Wang, P., Wang, S., Wang, H., Wu, Z., Wang, L. Recent Progress on Photo-Electrocatalytic Reduction of Carbon Dioxide (2018) Particle and Particle Systems Characterization, 35 (1), art. no. 1700371., 2018

2031. Nolan, M. Alkaline earth metal oxide nanocluster modification of rutile TiO2 (110) promotes water activation and CO2 chemisorption (2018) Journal of Materials Chemistry A, 6 (20), pp. 9451-9466, 2018

2032. Zhang, R., Li, L., Frazer, L., Chang, K.B., Poeppelmeier, K.R., Chan, M.K.Y., Guest, J.R. Atomistic determination of the surface structure of Cu2O(111): Experiment and theory (2018) Physical Chemistry Chemical Physics, 20 (43), pp. 27456-27463., 2018

2033. Nolan, M. Adsorption of CO2 on Heterostructures of Bi2O3 Nanocluster-Modified TiO2 and the Role of Reduction in Promoting CO2 Activation (2018) ACS Omega, 3 (10), pp. 13117-13128, 2018 Линк

2034. Sahu, A., Mondal, K., Ghosh, P. Microscopic understanding of electrocatalytic reduction of CO2 on Pd-polyaniline composite: an ab initio study (2018) Journal of Molecular Modeling, 24 (9), art. no. 248, ., 2018 Линк

580. Ivanov, V., Marychev, M., Andreev, P., Koseva, I., Tzvetkov, P., Nikolov, V.. Novel solvents for the single crystal growth of germanate phases by the flux method. Journal of Crystal Growth, 426, Elsevier, 2015, ISSN:0022-0248, DOI:10.1016/j.jcrysgro.2015.04.042, 25-32. SJR:0.772, ISI IF:1.698

Цитира се в:

2035. Ermakova, Larisa V., and Ivan I. Leonidov. "Towards a new group of olivine-type afterglow phosphors: the case of Ca2GeO4: Dy3+." Materials Letters 233 (2018): 39-41., 2018 Линк

581. Nazarova, E., Balchev, N., Nenkov, K., Buchkov, K., Kovacheva, D., Zahariev, A., Fuchs, G.. Improvement of the superconducting properties

Page 131: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 131/154

of polycrystalline FeSe by silver addition. Superconductor Science and Technology, 28, 12, Institute of Physics Publishing, 2015, ISSN:09532048, DOI:10.1088/0953-2048/28/12/125013, SJR:1.088, ISI IF:2.325

Цитира се в:

2036. Hosono, Hideo, et al. "Recent advances in iron-based superconductors toward applications." Materials Today (2018) 21(3), pp. 278-302., 2018 Линк

2037. Karwoth, T., Furutani, K., Koblischka, M.R., Zeng, X.L., Wiederhold, A., Muralidhar, M., Murakami, M., Hartmann, U. Electrotransport and magnetic measurements on bulk FeSe superconductors (2018) Journal of Physics: Conference Series, 1054 (1), art. no. 012018, ., 2018 Линк

2038. Zhang, S., Liu, J., Feng, J., Shao, B., Li, C., Zhang, P. Influences of Ag doping on the high energy ball milling aided sintering FeSe superconductors (2018) Journal of Materials Science: Materials in Electronics, 29 (2), pp. 1018-1024., 2018 Линк

582. Gonzalez, J. R., Zhecheva, E., Stoyanova, R., Nihtianova, D., Markov, P., Ravelle-Chapius, R., Alcantara, R., Naciemento, F., Tirado, J. L., Ortiz, G. F.. A fractal-like electrode based on double-wall nanotubes of anatase exhibiting improved electrochemical behaviour in both lithium and sodium batteries. Physical Chemistry Chemical Physics, 17, Royal Society Publishing, 2015, ISSN:1463-9076, 4687-4695. ISI IF:4.493

Цитира се в:

2039. Wang, W., Liu, Y., Wu, X., Wang, J., Fu, L., Zhu, Y., Wu, Y., Liu, X. "Advances of TiO2 as Negative Electrode Materials for Sodium-Ion Batteries". Advanced Materials Technologies, 3 (9), art. no. 1800004, 2018, 2018 Линк

583. Blaskov, V., Stambolova, I., Georgiev, V., Batakliev, T., Eliyas, A., Shipochka, M., Vassilev, S., Mehandjiev, D. Synthesis and catalytic activity of silver coated perlite in the reaction of ozone decomposition. Ozone: Science and Engineering, 37, 2015, ISSN:1547-6545, 252-256. ISI IF:0.953

Цитира се в:

2040. Othman, M., Théron, C., Bendahan, M., (...), Aguir, K., Tran-Thi, T.-H., Efficiency of new ozone filters for NO2 sensing and air depollution, Sensors and Actuators, B: Chemical 265, 2018, pp. 591-599, 2018 Линк

584. Kouzmanova, Y. I., Dimitrova, I. V., Gentscheva, G. D., Aleksandrov, L. I., Markova-Velichkova, M. G., Kovacheva, D.. Comparative study of the phase formation and interaction with water of calcium-silicate cements with dental applications. Bulgarian Chemical Communications, 47, 1, 2015, ISSN:0324-1130, 239-244. ISI IF:0.201

Цитира се в:

2041. Jalloul D., J. Al Abdullah, H. Alaffif (2018) The Chemical and Morphological Study of Calcium Silicate-Based Material (Biodentine®) and Glass Ionomer Cement (GIC®), The Open Dentistry Journal, 12, 1091-1106., 2018 Линк

2042. Rajasekharan S., Ch. Vercruysse, L. Martens, R. Verbeeck (2018) Effect of Exposed Surface Area, Volume and Environmental pH on the Calcium Ion Release of Three Commercially Available Tricalcium Silicate Based Dental Cements, Materials, 11 (1) 123-136, 2018 Линк

585. Marinova, D., Kostov, V., Nikolova, R., Kukeva, R., Zhecheva, E., Sendova-Vasileva, M., Stoyanova, R.. From kroehnkite-to-alluadite-type of structure: novel method of synthesis of sodium manganese sulfates with electrochemical properties in alkaline ion batteries. Journal of Materials Chemistry A, 3, Royal Society of Chemistry, 2015, ISSN:2050-7526, DOI:10.1039/C5TA07204B, 22287-22299. SJR:2.15, ISI IF:7.443

Цитира се в:

2043. Chakraborty, S., Banerjee, A., Watcharatharapong, T., Araujo, R.B., Ahuja, R. "Current computational trends in polyanionic cathode materials for Li and Na batteries". Journal of Physics Condensed Matter, 30 (28), art. no. 283003, 2018, 2018 Линк

2044. Shadike, Z., Zhao, E., Zhou, Y.-N., Yu, X., Yang, Y., Hu, E., Bak, S., Gu, L., Yang, X.-Q. "Advanced Characterization Techniques for Sodium-Ion Battery Studies". Advanced Energy Materials, 8 (17), art. no. 1702588, 2018, 2018 Линк

2045. Siidra, O.I., Lukina, E.A., Nazarchuk, E.V., Depmeier, W., Bubnova, R.S., Agakhanov, A.A., Avdontseva, E.Y., Filatov, S.K., Kovrugin, V.M.SaranChinaite. " Na2Cu(SO4)2, a new exhalative mineral from Tolbachik volcano, Kamchatka, Russia, and a product of the reversible dehydration of kröhnkite, Na2Cu(SO4)2(H2O)2". Mineralogical Magazine, 82 (2), pp. 257-274, 2018, 2018 Линк

2046. Zhao, P., et all "Syntheses, structure and properties of a new Fillowite-type compound Na0.48Mn1.22PO4". Journal of Alloys and Compounds, 734, 229-234, 2018, 2018 Линк

2016

586. Tepavitcharova, S, Havlícek D., Matulkova I., Rabadjieva, D, Gergulova, R, Plocek J., Nemec I., Císarova I.. New zinc-glycine-iodide complexes as a product of equilibrium and non-equilibrium crystallization in the Gly - ZnI2 - H2O system. Journal of Molecular Structure, 1120, Elsevier, 2016, ISSN:0022-2860, DOI:http://dx.doi.org/10.1016/j.molstruc.2016.05.005, 42-49. SJR:0.463, ISI IF:1.78

Page 132: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 132/154

Цитира се в:

2047. Ville Saarimaа, Aaretti Kalevа, Teemu Paunikallio, Juha-Pekka Nikkanen, Saara Heinonen, Erkki Levänen, Pasi Väisänen, Antti Markkula, " Convenient extraction method for quantification of thin zinc patina layers", Surface and Interface Analysis, 50(5), pp.564-570, 2018., 2018 Линк

2048. Michał Abendrot, Urszula Kalinowska-Lis, Zinc-containing Compounds for Personal Care Applications, International journal of cosmetic science, 40, pp. 319–327, 2018, 2018 Линк

2049. Angelos B. Canaj, Foteini Ε. Kakaroni, Alexandra Collet, Constantinos J. Milios, α-Amino acids: Natural and artificial building blocks for discrete polymetallic clusters, Polyhedron, 151, pp.1-32, 2018, 2018 Линк

2050. Rahamn Bikas, Behzad Soltani, Hamid Sheykhi, Maria Korabik, Moayad Hossaini-Sadr, Synthesis, crystal structure and magneto-structural studies of 2D copper(II) coordination polymer containing L-alanine amino acid, Journal of Molecular Structure, 1168, pp 195-201, 2018, 2018 Линк

587. Stoeva N., Spassova I., Kovacheva D., Atanasova G., Khristova M.. Capture of carbon dioxide by mesoporous carbon-silica composites. Bulgarian Chemical Communications, 48, Special Issue G, 2016, 120-124. ISI IF:0.349

Цитира се в:

2051. Wu, H. PARTICULATE AND MEMBRANE MOLECULAR SIEVES PREPARED TO ADSORB CARBON DIOXIDE IN PACKED AND STAGGERED ADSORBER., 2018 Линк

588. Tzaneva, B.R., Naydenov, A., Todorova, S.Zh., Videkov, V.H., Milusheva, V.S., Stefanov, P.K.. Cobalt electrodeposition in nanoporous anodic aluminium oxide for application as catalyst for methane combustion. Electrochimica Acta, 191, Elsevier, 2016, ISSN:00134686, DOI:10.1016/j.electacta.2016.01.063, 192-199. SJR:1.391, ISI IF:4.504

Цитира се в:

2052. Schiavi, P.G., Altimari, P., Rubino, A., Pagnanelli, F., Electrodeposition of cobalt nanowires into alumina templates generated by one-step anodization, Electrochimica Acta, Volume 259, 1 January 2018, Pages 711-722, 2018 Линк

589. Mihaylov, M., Chakarova, K., Andonova, S., Drenchev, N., Ivanova, E., Sabetghadam, A., Seoane, B., Gascon, J., Kapteijn, F., Hadjiivanov, K.. Adsorption Forms of CO2 on MIL-53(Al) and NH2-MIL-53(Al) As Revealed by FTIR Spectroscopy. J. Phys. Chem. C, 120, 41, 2016, DOI:10.1021/acs.jpcc.6b07492, 23584-23595. ISI IF:4.509

Цитира се в:

2053. Z. Niu, Q. Guan, Y. Shi, Y. Chen, Q. Chen, Z. Kong, P. Ning, S. Tian and R. Miao, Lithium-modified Zirconium-based metal organic framework (UiO-66) for efficient CO2 adsorption, New J. Chem. 42 (2018) 19764-19770 doi: 10.1039/C8NJ04945A [ISI]., 2018 Линк

2054. L. Zhou, Z. Niu, X. Jin, L. Tang, L. Zhu, "Effect of Lithium Doping on the Structures and CO2 Adsorption Properties of Metal‐Organic Frameworks HKUST‐1", ChemistrySelect, 3 (2018) 12865., 2018 Линк

2055. Jung, M., Park, S., Oh, H., Park, K.-I., "CO2 capture & separation in microporous materials: A comparison between porous carbon and flexible MOFs", Korean Journal of Materials Research, (2018), 28(7), pp. 417-422, 2018 Линк

2056. M. Mohamedali, H. Ibrahim, A. Henni, “Metal-Organic Frameworks: Applications in Separations and Catalysis”, (H. García and S. Navalón, Eds.), First Edition, Wiley-VCH Verlag GmbH & Co., 2018, p. 138., 2018 Линк

2057. S. Meshkat, S. Kaliaguine, D. Rodrigue, "Mixed matrix membranes based on amine and non-amine MIL-53(Al) in Pebax® MH-1657 for CO2 separation", Separation and Purification Technology, 200 (2018) 177-190., 2018 Линк

2058. Z. Kong, Z. Niu, L. He, Q. Chen, L. Zhou, Y. Cheng, Q. Guan, "In situ analysis of the adsorption behaviors of CO2 on the surface of MIL-91(Al)", New J. Chem., 42 (2018) 16985-16991., 2018 Линк

590. Drenchev, N., Mihaylov, M., Dietzel, Pascal D. C., Albinati, Alberto, Georgiev, Peter A, Hadjiivanov, К.. Low-Temperature Adsorption of H2 and D2 on Dehydrated and Water Precovered CPO-27-Ni. J. Phys. Chem. C, 120, 40, 2016, DOI:10.1021/acs.jpcc.6b08722, 23083-2309. ISI IF:4.509

Цитира се в:

2059. Wang, S., Guo, Q., Liang, S., Li, P., Luo, J., "Preparation of Ni-MOF-74/SBS mixed matrix membranes and its application of CH4/N2 separation", Separation and Purification Technology, Volume 199, (2018), 206-213., 2018 Линк

2060. D.M. Driscoll, D. Troya, P.M. Usov, A.J. Maynes, A.J. Morris and J.R. Morris, "Characterization of Undercoordinated Zr Defect Sites in UiO-66 with Vibrational Spectroscopy of Adsorbed CO", J. Phys. Chem. C, (2018), 122 (26), pp 14582–14589, 2018 Линк

591. Detcheva, A., Simeonov, V., Ivanova, E.. Chemometric expertise of Bulgarian mineral, spring and table waters. Bulgarian chemical communications, 48, 4, 2016, 684-688. ISI IF:0.229

Цитира се в:

2061. Sokrateva, T., Ivanova, D., Galunska, B., Todorova, M., Ivanov, D. Physicochemical analysis of varna basin mineral water (2018) International Multidisciplinary Scientific GeoConference Surveying Geology and Mining Ecology Management, SGEM, 18 (3.1), pp.

Page 133: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 133/154

555-564., 2018

592. Mihaylov, M., Chakarova, K., Andonova, S., Drenchev, N., Ivanova, E., Pidko, E.A., Sabetghadam, A., Seoane, B., Gascon, J., Kapteijn, F., Hadjiivanov, K.. Adsorption of CO2 on MIL-53(Al): FTIR evidence of the formation of dimeric CO2 species. Chem. Commun., 52, 2016, DOI:10.1039/C5CC08677A, 1494-1497. ISI IF:6.567

Цитира се в:

2062. A. Kathuria, N. Brouwers, M. Buntinx, T. Harding and R. Auras, " Effect of MIL-53 (Al) MOF particles on the chain mobility and crystallization of poly(L-lactic acid)", J. Appl. Polym. Sci., 135 (2018) 45690 [ISI]., 2018 Линк

2063. К. Yang, L. Zhu, J. Yang and D. Lin, "Adsorption and correlations of selected aromatic compounds on a KOH-activated carbon with large surface area" Science of The Total Environment, Sci. Total Environ., 618 (2018) 1677-1684, 2018 Линк

2064. M. Mohamedali, H. Ibrahim and A. Henni, Metal–Organic Framework (MOF)-based CO2 Adsorbents, in Metal-Organic Frameworks: Applications in Separations and Catalysis (H. García and S. Navalón, Eds.), John Wiley & Sons, 2018, p. 123 [GB]., 2018 Линк

2065. R.L. Yang, Y.P. Zheng, T.Y. Wang, P.P. Li, Y.D. Wang, D.D. Yao and L.X. Chen, "Solvent-free nanofluid with three structure models based on the composition of a MWCNT/SiO2core and its adsorption capacity of CO2", Nanotechnol., 29 (2018) 035704 [ISI]., 2018 Линк

593. Aleksandrov, H.A., Neyman, K.M., HADJIIVANOV, K., Vayssilov, G.N.. Can the State of Platinum Species be Unambiguously Determined by the Stretching Frequency of an Adsorbed CO Probe Molecule?. Phys. Chem. Chem. Phys., 18, 2016, DOI:10.1039/C6CP03988J, 22108-22121. ISI IF:4.449

Цитира се в:

2066. T.M. Kokumai, Platinum Catalysts for Hydrogen Production Reactions, Ph. D. Thesis, Universidade Estadual de Campinas, Campinas, Brazil, 2018 [GS]., 2018

2067. L. Borges, Catalisadores Pt/Al2O3 e CeO2/Pt/Al2O3 aplicados à reação deslocamento gás-água: efeito da composição nas propriedades estruturais e catalíticas, Ph. D. Thesis, Universidade federal de São Carlos, São Carlos, Brasil, 2018 [GS]., 2018 Линк

2068. P. Xie, T. Pu, A. Nie, S. Hwang, S.C. Purdy, W. Yu, D. Su, J.T. Miller and C. Wang, Nanoceria-Supported Single-Atom Platinum Catalysts for Direct Methane Conversion, ACS Catal., 8 (2018) 4044 [ISI]., 2018 Линк

2069. H. Thang, G. Pacchioni, L. De Rita and P. Christopher, Nature of stable single atom Pt catalysts dispersed on anatase TiO2, J. Catal., 367 (2018) 104 [ISI]., 2018 Линк

594. Milenov, T. I., Avramova, I., Valcheva, E., Tinchev, S.S.. Deposition of graphene/graphene-related phases on different substrates by thermal decomposition of acetone. Optical and Quantum Electronics, 48, 2, Springer New York, 2016, ISSN:0306-8919, 1-12. SJR:0.419, ISI IF:1.29

Цитира се в:

2070. Di Gaspare, L., Scaparro, A.M., Fanfoni, M., Fazi, L., Sgarlata, A., Notargiacomo, A., Miseikis, V., Coletti, C., De Seta, M. Early stage of CVD graphene synthesis on Ge(001) substrate (2018) Carbon, 134, pp. 183-188., 2018 Линк

595. Dikovska, A. Og. , Atanasova, G. B., Avdeev, G. V., Nedyalkov, N. N.. Synthesis and characterization of ZnO nanostructures on noble-metal coated substrates. Applied Surface Science, 374, Elsevier, 2016, ISSN:01694332, DOI:http://dx.doi.org/10.1016/j.apsusc.2015.09.141, 65-70. SJR:0.913, ISI IF:2.711

Цитира се в:

2071. Changqing Jin, Kexin Zhu, George Peterson, Zhihong Zhang, Zengyun Jian, Yongxing Wei, Deshan Zheng, Phase controlled synthesis and cathodoluminescence properties of ZnS nanobelts synthesized by PVD, Solid State Communications, Volume 269, January 2018, Pages 1-5, 2018

596. Uzynova, G., Nikolova, Kr., Perifanova, M., Gentscheva, G., Marudova, M., Antova, G. Physicochemical characterization of chia (Salvia hispanica) seed oil from Argentina. Bulgarian chemical communications, 48, Special Issue G, 2016, ISSN:0861-9808, 131-135. ISI IF:0.229

Цитира се в:

2072. Yingbin Shen, Liyou Zheng, Jun Jin, Xiaojing Li, Junning Fu, Mingzhong Wang, Yifu Guan and Xun Song (2018) Phytochemical and Biological Characteristics of Mexican Chia Seed Oil, Molecules, 23(12), 3219; doi:10.3390/molecules23123219, 2018 Линк

2073. Bouchra Sayed Ahmad (2018) “Etude de l'agroraffinage de graines d'Apiaceae, Lamiaceae et Chenopodiaceae pour la production de molécules biosourcées en vue d'application en industrie cosmétique”, Doctorat, Universite de Toulouse, 2018 Линк

597. Piperov, N.P., Ivanova, L.P., Aleksandrova, A.N.. A reappraisal of decrepitation-inductively coupled plasma spectroscopy (D-ICP) for the bulk analysis of fluid inclusions in minerals. Analytical Methods, 8, Royal Society of Chemistry, 2016, ISSN:ISSN 0003-2654, DOI:DOI: 10.1039/c5ay01936b, 3183-3195. ISI IF:1.915

Цитира се в:

2074. Butler, O.T., Cairns, W.R.L., Cook, J.M., Davidson, C.M., Mertz-Kraus, R., "Atomic spectrometry update-a review of advances in

Page 134: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 134/154

environmental analysis“. Journal of Analytical Atomic Spectrometry, 33 (1), 8-56, 2018., 2018

598. Soserov, L., Boyadzhieva, T., Koleva, V., Stoyanova, A., Stoyanova, R.. The capacitive performance of alfa-Ni(OH)2-based composites for hybrid supercapacitors. ECS Transactions, 74, The electrochemical society, 2016, ISSN:ISSN 1938-6737 (Online), 213-222. ISI IF:0.21

Цитира се в:

2075. Jayaraman, T., Murthy, A.P., Elakkiya, V., Chandrasekaran, S., Nithyadharseni, P., Khan, Z., Senthil, R.A., Shanker, R., Raghavender, M., Kuppusami, P., Jagannathan, M., Ashokkumar, M. Recent development on carbon based heterostructures for their applications in energy and environment: A review (2018) Journal of Industrial and Engineering Chemistry, 64, pp. 16-59., 2018 Линк

599. Afify A. S., Ataalla M., Hussain A., Hassan M., Mohammed A., Milanova, M., Tulliani J. M.. Studying the e ffect of doping metal ions onto a crystalline hematite - based humidity sensor for e nvironmental c ontrol. Bulgarian Chemical Communications, 48, 2, Bulgarian Academy of Sc iences, Union of Chemists in Bulgaria, 2016, ISSN:0324-1130, 297-302. ISI IF:0.238

Цитира се в:

2076. Ahmad, W. R. W., et al. "The effects of different precursor in sonicated immersion technique on hematite nanostructure properties." IOP Conference Series: Materials Science and Engineering. Vol. 340. No. 1. IOP Publishing, 2018., 2018

2077. Ahmad, W. R. W., et al. "The performance of hematite nanostructures in different humidity levels." AIP Conference Proceedings. Vol. 1963. No. 1. AIP Publishing, 2018., 2018

2078. Dutt, Meenakshi, et al. "Mesoporous silica mediated synthesis of α-Fe 2 O 3 porous structures and their application as humidity sensors." Journal of Materials Science: Materials in Electronics 29.23 (2018): 20506-20516., 2018

600. Stanislava Andonova, StefanieTamm, CliffordMontreuil, ChristineLambert, LouiseOlsson. The effect of iron loading and hydrothermal aging on one-pot synthesized Fe/SAPO-34 for ammonia SCR. Applied Catalysis B: Environmental, 180, 2016, DOI:10.1016/j.apcatb.2015.07.007, 775-787. ISI IF:9.446

Цитира се в:

2079. D. Zhang, Y. Wang, R.T. Yang. "Chemical Liquid Deposition (CLD)-Modified Fe-ZSM-5 for Enhanced Activity and Resistance to C3H6 Poisoning in Selective Catalytic Reduction with NH3 (NH3-SCR)" Industrial & Engineering Chemistry Research 57 (2018) 13586-13590., 2018 Линк

2080. D. Zhang, et al., “N2O formation pathways over zeolite-supported Cu- and Fe- catalysts in NH3-SCR” Energy & Fuels, Just Accepted, 2018, 2018 Линк

2081. Y. Xin, et al., "Zeolitic Materials for DeNOx Selective Catalytic Reduction" ChemCatChem. 2018, in press, 2018 Линк

2082. K. Silas, W. A.W.Ab.К. Ghani, T.S.Y. Choong, U. Rashid. "Carbonaceous materials modified catalysts for simultaneous SO2/NOx removal from flue gas: A review". , Catalysis Reviews Science and Engineering (2018), in press, 2018 Линк

2083. L. Bing, G. Wang, K. Yi, A. Tian, F. Wang, Ch. Wu."One-pot synthesis of Cu-SAPO-34 catalyst using waste mother liquid and its application in the selective catalytic reduction of NO with NH3" Catalysis Today 316 (2018) 37-42., 2018 Линк

2084. Z. Chen, C. Fan, L. Pang, S. Ming, P. Liu, D. Zhu, J. Wang, X. Cai, H. Chen, Y. Lai, T. Li. "Direct synthesis of submicron Cu-SAPO-34 as highly efficient and robust catalyst for selective catalytic reduction of NO by NH3" Applied Surface Science 448 (2018) 671-680., 2018 Линк

2085. T. Wang, X. Zhang, J. Liu, H. Liu, Y. Guo, B. Sun. "Plasma-assisted catalytic conversion of NO over Cu-Fe catalysts supported on ZSM-5 and carbon nanotubes at low temperature". Fuel Processing Technology 178 (2018) 53-61., 2018 Линк

2086. Y. Lyu, Y. Liu, X. He, L. Xu, X. Liu, Z. Yan. "The regulation of Si distribution and surface acidity of SAPO-11 molecular sieve". Applied Surface Science 453 (2018) 350-357., 2018 Линк

2087. X. Sun, et al., "Dehydration of fructose to 5-hydroxymethylfurfural over MeSAPOs synthesized from bauxite" Microporous and Mesoporous Materials, 259 (2018) 238-243., 2018 Линк

2088. S. Yin, Z. Zi, Q. Fang, T. Ge, J. Li. "Study of the alkali metal poisoning resistance of a Co-modified Mn/Ni foam catalyst in low-temperature flue gas SCR DeNO x " J. Mater. Sci. 53 (2018) 9674., 2018 Линк

2089. K. Mirza, et al., "Hydrothermal synthesize of modified Fe, Ag and K-SAPO-34 nanostructured catalysts used in methanol conversion to light olefins" Microporous and Mesoporous Materials, 260 (2018) 155-165., 2018 Линк

2090. H. Jiang, Y. Wang, J. Zhou, Y. Chen, M. Zhang. "Morphology control of manganese-based catalysts for low-temperature selective catalytic reduction of NOx". Materials Letters 233 (2018) 250-253., 2018 Линк

2091. K. Zhao, et al., "High-Efficiency Environmental-Friendly Fe–W–Ti Catalyst for Selective Catalytic Reduction of NO with NH3: The Structure–Activity Relationship" Catal Surv Asia (2018) in press, 2018 Линк

2092. S. Zhao, L. Huang, B. Jiang, M. Cheng, J. Zhang, Y. Hu. "Stability of Cu–Mn bimetal catalysts based on different zeolites for NOx removal from diesel engine exhaust". Chinese Journal of Catalysis 39 (2018) 800-809., 2018 Линк

2093. Y. Cao, L. Wei, X. Song, X. Yan, X. Liu, L. Wang. "Synthesis of iron phosphate-SAPO-34 composite and its application as effective absorbent for wastewater treatment" MATEC Web Conf. 238 (2018); International Conference on Novel Functional Materials (ICNFM2018) Article Number: 02003, 2018 Линк

Page 135: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 135/154

601. Stojadinović, S., Radić, N., Grbić, B., Maletić, S., Stefanov, P., Pačevski, A., Vasilić, R.. Structural, photoluminescent and photocatalytic properties of TiO2:Eu3+ coatings formed by plasma electrolytic oxidation. Applied Surface Science, 370, Elsevier, 2016, ISSN:01694332, DOI:10.1016/j.apsusc.2016.02.131, 218-228. SJR:0.93, ISI IF:3.38

Цитира се в:

2094. Qin, H., Chen, L., Yu, X., Wu, M., Yan, Z. Preparation and photocatalytic performance of ZnO/WO3/TiO2composite coatings formed by plasma electrolytic oxidation (2018) Journal of Materials Science: Materials in Electronics, 29 (3), pp. 2060-2071., 2018 Линк

2095. Zhang, X., Chen, R., Wang, P., Shu, J., Zhang, H., Song, H., Xu, J., Zhang, P., Xu, J. A soft chemistry-based route to enhanced photoluminescence of terbium ions and tin oxide nanocrystals codoped silica thin films (2018) Applied Surface Science, 452, pp. 96-101., 2018 Линк

2096. Zikriya, M., Nadaf, Y.F., Manjunath, C., Renuka, C.G. Microstructural and optical properties of rare earth ions doped TiO2 for potential white LED applications (2018) Journal of Materials Science: Materials in Electronics, 29 (19), pp. 16824-16835, 2018 Линк

602. Wildner, M., Marinova, D., Stoilova, D.. Vibrational spectra of Cs2Cu(SO4)2.6H2O and Cs2Cu(SeO4)2.nH2O (n = 4, 6) with a crystal structure determination of the Tutton salt Cs2Cu(SeO4)2.6H2O. Journal of Molecular Structure, 1106, Elsevier, 2016, ISSN:0022-2860, DOI:org/10.1016/j.molstruc.2015.11.008, 440-451. SJR:0.463, ISI IF:1.78

Цитира се в:

2097. Abu El-Fadl, A., Santos, I.C., Paulo, A., Nashaat, A.M., Enhanced physical properties of potassium zinc sulphate hydrate single crystal following iodide doping, (2018) Materials Research Express, 5 (6), art. no. 066207, 2018

2098. Morales, A.C., Cooper, N.D., Reisner, B.A., DeVore, T.C., Variable temperature PXRD investigation of the phase changes during the dehydration of potassium Tutton salts, (2018) Journal of Thermal Analysis and Calorimetry, 132 (3), pp. 1523-1534, 2018

603. Georgiev, M., Bancheva, Tsv., Marinova, D., Stoyanova, R., Stoilova, D.. On the formation of solid solutions with blödite- and kröhnkite-type structures. I. Synthesis, vibrational and EPR spectroscopic investigations of Na2Zn1-xCux(SO4)2.4H2O (0 < x < 0.14). International Journal of Scientific Research in Science and Technology, 2, 5, TechnoScience Academy, 2016, ISSN:Print ISSN: 2395-6011; Online ISSN: 2395-602X, 279-292

Цитира се в:

2099. Zinicovscaia, I.; Cepoi, L; Povar, I.; Chiriac, T.; Rodlovskaya, E.; Culicov, O.A.; "Metal Uptake from Complex Industrial Effluent by Cyanobacteria Arthrospira platensis" Water, Air, & Soil Pollution (2018) 229-230., 2018 Линк

604. Stojadinović, S., Vasilić, R., Radić, N., Tadić, N., Stefanov, P., Grbić, B.. The formation of tungsten doped Al2O3/ZnO coatings on aluminum by plasma electrolytic oxidation and their application in photocatalysis. Applied Surface Science, 377, Elsevier, 2016, ISSN:01694332, DOI:10.1016/j.apsusc.2016.03.104, 37-43. SJR:0.93, ISI IF:3.38

Цитира се в:

2100. Benzitouni, S., Zaabat, M., Aida, M.S., Ebothe, J., Michel, J., Boudine, B., Mansouri, L., Saidani, T. Morphology and photocatalytic activity of porous (In, Mg) co-doped ZnO nanoparticles (2018) Optik, 156, pp. 949-960., 2018 Линк

2101. Fatimah, S., Khoerunnisa, F., Ko, Y.G. Decoration of an inorganic layer with nickel (hydr)oxide via green plasma electrolysis RSC Advances, 8 (47), pp. 26804-26816., (2018), 2018 Линк

2102. Chen, Y., Song, X., Zhou, J., Liu, H., Yang, Y. The study on the overall plasma electrolytic oxidation for 6061-7075 dissimilar aluminum alloy welded parts based on the dielectric breakdown theory, Materials, 11 (1), art. no. 63, (2018), 2018 Линк

2103. Qin, H., Chen, L., Yu, X., Wu, M., Yan, Z. Preparation and photocatalytic performance of ZnO/WO3/TiO2composite coatings formed by plasma electrolytic oxidation Journal of Materials Science: Materials in Electronics, 29 (3), pp. 2060-2071, (2018), 2018 Линк

2104. Hakimizad, A., Raeissi, K., Golozar, M.A., Lu, X., Blawert, C., Zheludkevich, M.L. Influence of cathodic duty cycle on the properties of tungsten containing Al2O3/TiO2 PEO nano-composite coatings Surface and Coatings Technology, 340, pp. 210-221. , (2018), 2018 Линк

2105. Arul Hency Sheela, J., Lakshmanan, S., Manikandan, A., Arul Antony, S. Structural, Morphological and Optical Properties of ZnO, ZnO:Ni2+ and ZnO:Co2+ Nanostructures by Hydrothermal Process and Their Photocatalytic Activity Journal of Inorganic and Organometallic Polymers and Materials, 28 (6), pp. 2388-2398, (2018), 2018 Линк

605. Uzunova S., Minchev L., Uzunov I., Toteva V.. Efficient adsorption of thiophene from model fuel by pyrolysed rice husks: factors of influence. Chemistry and Ecology, 32, 10, Taylor&Francis, 2016, ISSN:0275-7540, 976-986. SJR:0.38, ISI IF:1.463

Цитира се в:

2106. Zuo W., Shi B., Chen S., Liao A. et al. "Low-cost and efficient adsorbent derived from pyrolysis of Jatropha curcas seeds for the removal of Cu 2+ from aqueous solutions". Chemistry and Ecology, 2018, DOI10.1080/02757540.2018.1472246, 2018

2107. El-Gendy N., Nassar H. "Bioadsorptive Desulfurization of Liquid Fuels". In Biodesulfurization in Petroleum Refining. Nour Shafik El-Gendy & Hussein Nabil Nassar. © 2018 Scrivener Publishing LLC. Published 2018 by John Wiley & Sons, Inc. DOI:10.1002/9781119224075.ch5, 2018

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606. Mujahid, M., Trendafilova, N., Foltyn-Kia, A., Rosair, G., Kavanagh, K., Walsh, M., McClean, S., Creaven, B. S., Georgieva, I.. Novel Silver(I) Complexes of Coumarin Oxyacetate Ligands and their Phenanthroline Adducts: Antimicrobial Activity, Structural and Spectroscopic Characterisation. Journal of Inorganic Biochemistry, 163, Elsevier, 2016, ISSN:01620134, DOI:10.1016/j.jinorgbio.2016.07.010, 53-67. ISI IF:3.205

Цитира се в:

2108. Onar, G., Karataş, M.O., Balcıoğlu, S., Tok, T.T., Gürses, C., Kılıç-Cıkla, I., Özdemir, N., Ateş, B., Alıcı, B., Benzotriazole functionalized N-heterocyclic carbene–silver(I) complexes: Synthesis, cytotoxicity, antimicrobial, DNA binding, and molecular docking studies (2018) Polyhedron, 153, pp. 31-40., 2018 Линк

2109. Achar, G., Agarwal, P., Brinda, K.N., Matecki, J.G., Keri, R.S., Budagumpi, S. , Ether and coumarin–functionalized (benz)imidazolium salts and their silver(I)–N–heterocyclic carbene complexes: Synthesis, characterization, crystal structures and antimicrobial studies, Journal of Organometallic Chemistry, 854(1), 64-75, 2018., 2018 Линк

2110. Peperidou, A., Bua, S., Bozdag, M., Hadjipavlou-Litina, D., Supuran, C.T., Novel 6- and 7-substituted coumarins with inhibitory action against lipoxygenase and tumor-associated carbonic anhydrase IX, Molecules 23(1), 153 (2018)., 2018 Линк

2111. Karataş, M.O., Di Giuseppe, A., Passarelli, V., (...), Özdemir, I., Castarlenas, R., Pentacoordinated Rhodium(I) Complexes Supported by Coumarin-Functionalized N-Heterocyclic Carbene Ligands, Organometallics, 37(2), pp. 191-202 (2018)., 2018 Линк

2112. Islas, M.S., Martínez Medina, J.J., Piro, O.E., (...), Ferrer, E.G., Williams, P.A.M., Comparisons of the spectroscopic and microbiological activities among coumarin-3-carboxylate, o-phenanthroline and zinc(II) complexes, 2018 Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy, 198, pp. 212-221 (2018)., 2018 Линк

607. Panayotov, D., McEntee, M., Burrows, S., Driscoll, D., Tang, W., Neurock, M., Morris, J.. Infrared studies of propene and propene oxide adsorption on nanoparticulate Au/TiO2. Surface Science, 652, Elsevier B.V., 2016, ISSN:0039-6028, DOI:http://dx.doi.org/10.1016/j.susc.2016.03.033, 172-182. SJR:0.792, ISI IF:1.931

Цитира се в:

2113. Ji, J.; Lu, Z.; Lei, Y.; Turner, C., "Theoretical Studies on the Direct Propylene Epoxidation Using Gold-Based Catalysts: A Mini-Review". Catalysts 2018, 8 (10), 421; DOI: 10.3390/catal8100421, 2018 Линк

2114. Yan, W.; Wu, Y.; Feng, X.; Yang, C.; Jin, X.; Shen, J., "Selective propylene epoxidation in liquid phase using highly dispersed Nb catalysts incorporated in mesoporous silicates". Chinese Journal of Chemical Engineering 2018, 26 (6), 1278-1284; DOI: 10.1016/j.cjche.2018.03.001, 2018 Линк

2115. Ji, J.; Lu, Z.; Lei, Y.; Turner, C. H., "Mechanistic insights into the direct propylene epoxidation using Au nanoparticles dispersed on TiO2/SiO2". Chemical Engineering Science 2018, 191, 169-182; DOI: 10.1016/j.ces.2018.06.064, 2018 Линк

2116. Xu, F.; Fampiou, I.; O'Connor, C. R.; Karakalos, S.; Hiebel, F.; Kaxiras, E.; Madix, R. J.; Friend, C. M., "Water facilitates oxygen migration on gold surfaces". Physical Chemistry Chemical Physics 2018, 20 (4), 2196-2204; DOI: 10.1039/C7CP06451A, 2018 Линк

608. Panayotov, D., Morris, J.. Surface chemistry of Au/TiO2: Thermally and photolytically activated reactions. Surface Science Reports, 71, Elsevier B.V., 2016, ISSN:0167-5729, DOI:http://dx.doi.org/10.1016/j.surfrep.2016.01.002, 77-271. SJR:4.417, ISI IF:5.95

Цитира се в:

2117. Siemer, N.; Lüken, A.; Zalibera, M.; Frenzel, J.; "Muñoz-Santiburcio, D.; Savitsky, A.; Lubitz, W.; Muhler, M.; Marx, D.; Strunk, J., Atomic scale explanation of O2 activation at the Au-TiO2 interface". Journal of the American Chemical Society 2018; DOI: 10.1021/jacs.8b10929, 2018 Линк

2118. Nemygina, N. A.; Nikoshvili, L. Z.; Tiamina, I. Y.; Bykov, A. V.; Smirnov, I. S.; LaGrange, T.; Kaszkur, Z.; Matveeva, V. G.; Sulman, E. M.; Kiwi-Minsker, L., "Au Core–Pd Shell Bimetallic Nanoparticles Immobilized within Hyper-Cross-Linked Polystyrene for Mechanistic Study of Suzuki Cross-Coupling: Homogeneous or Heterogeneous Catalysis?" Organic Process Research & Development 2018; DOI: 10.1021/acs.oprd.8b00272, 2018 Линк

2119. Chinh, N. D.; Hien, T. T.; Do Van, L.; Hieu, N. M.; Quang, N. D.; Lee, S.-M.; Kim, C.; Kim, D., "Adsorption/desorption kinetics of nitric oxide on zinc oxide nano film sensor enhanced by light irradiation and gold-nanoparticles decoration". Sensors and Actuators B: Chemical 2019, 281, 262-272; DOI: 10.1016/j.snb.2018.10.113, 2018 Линк

2120. Naya, S.-i.; Miki, S.; Yamauchi, J.; Teranishi, M.; Kobayashi, H.; Tada, H., "Au (Core)–Pt (Shell) Nanocatalysts with the Shell Thickness Controlled at a Monolayer Level: Extremely High Activity for Hydrogen Peroxide Decomposition". The Journal of Physical Chemistry C 2018, 122 (40), 22953-22958; DOI: 10.1021/acs.jpcc.8b06214, 2018 Линк

2121. Guo, Y.; Jia, H.; Yang, J.; Yin, H.; Yang, Z.; Wang, J.; Yang, B., "Understanding the roles of plasmonic Au nanocrystal size, shape, aspect ratio and loading amount in Au/g-C3N4 hybrid nanostructures for photocatalytic hydrogen generation". Physical Chemistry Chemical Physics 2018, 20 (34), 22296-22307; DOI: 10.1039/C8CP04241A, 2018 Линк

2122. Zhang, J.; Medlin, J. W., "Catalyst design using an inverse strategy: From mechanistic studies on inverted model catalysts to applications of oxide-coated metal nanoparticles". Surface Science Reports 2018, 73 (4), 117-152; DOI: 10.1016/j.surfrep.2018.06.002, 2018 Линк

2123. Kamely, N.; Ujihara, M., "Confeito-like Au/TiO2 nanocomposite: synthesis and plasmon-induced photocatalysis". Journal of Nanoparticle Research 2018, 20 (7), 172; DOI: 10.1007/s11051-018-4276-5, 2018 Линк

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2124. Naya, S.-i.; Tada, H., "Dependence of the plasmonic activity of Au/TiO2 for the decomposition of 2-naphthol on the crystal form of TiO2 and Au particle size". Journal of Catalysis 2018, 364, 328-333; DOI: 10.1016/j.jcat.2018.06.008, 2018 Линк

2125. Dodekatos, G.; Schünemann, S.; Tüysüz, H., "Recent Advances in Thermo-, Photo-, and Electrocatalytic Glycerol Oxidation". ACS Catalysis 2018, 8 (7), 6301-6333; DOI: 10.1021/acscatal.8b01317, 2018 Линк

2126. WU, K., "The Investigation of C―H Activation with Structure–Reactivity Relationship on Au(110)". Acta Phys. -Chim. Sin. 2018, 34 (12), 1306-1307; 10.3866/PKU.WHXB201803021, 2018 Линк

2127. Jiang, Z.-Y.; Zhao, Z.-Y., "Comparison studies of interfacial energetic and electronic properties of bimetallic AuCu/TiO2 hetero-structures from DFT calculations". Inorganic Chemistry Frontiers 2018, 5 (5), 1062-1075; DOI: 10.1039/C7QI00828G, 2018 Линк

2128. Wei, S.; Fu, X.-P.; Wang, W.-W.; Jin, Z.; Song, Q.-S.; Jia, C.-J., "Au/TiO2 Catalysts for CO Oxidation: Effect of Gold State to Reactivity". The Journal of Physical Chemistry C 2018, 122 (9), 4928-4936; DOI: 10.1021/acs.jpcc.7b12418, 2018 Линк

2129. Dai, J.-Q.; Zhu, J.-H.; Xu, J.-W., "First-principles investigation of platinum monolayer adsorption on the BiFeO3 (0001) polar surfaces". Applied Surface Science 2018, 428 (Supplement C), 964-971; DOI: 10.1016/j.apsusc.2017.09.244, 2018 Линк

2130. Naboulsi, I.; Lebeau, B.; Michelin, L.; Carteret, C.; Bonne, M.; Blin, J.-L., "Influence of crystallization conditions and of gaseous ammonia treatment on mesoporous TiO2 properties". Microporous and Mesoporous Materials, 262 (2018) 1-12. DOI: 10.1016/j.micromeso.2017.11.025, 2018 Линк

2131. Zaera, F., "Gold-Titania Catalysts for Low-Temperature Oxidation and Water Splitting". Topics in Catalysis 2018, Volume 61, Issue 5–6, pp 336–347; DOI: 10.1007/s11244-017-0866-1, 2018 Линк

2132. Sun, K.; Chen, A.; Liu, M.; Zhang, H.; Duan, R.; Ji, P.; Li, L.; Li, Q.; Li, C.; Zhong, D.; Müllen, K.; Chi, L., "Surface-Assisted Alkane Polymerization: Investigation on Structure–Reactivity Relationship". Journal of the American Chemical Society 2018, 140 (14), 4820-4825; DOI: 10.1021/jacs.7b09097, 2018 Линк

2133. Naya, S.-i.; Kume, T.; Akashi, R.; Fujishima, M.; Tada, H., "Red-Light-Driven Water Splitting by Au(Core)–CdS(Shell) Half-Cut Nanoegg with Heteroepitaxial Junction". Journal of the American Chemical Society 2018, 140 (4), 1251-1254; DOI: 10.1021/jacs.7b12972, 2018 Линк

609. Bachvarova-Nedelcheva A., Iordanova R., Stoyanova A., Georgieva N., Angelova Ts.. Sol-gel synthesis of Se and Te containing TiO2 nanocomposites with photocatalytic and antibacterial properties. J. Optoel. Adv. Mater., 18, 1-2, 2016, ISSN:1454 - 4164, 5-9. SJR:0.2, ISI IF:0.383

Цитира се в:

2134. Wu Deyong, Han Li, Zhang Xiaomin, Tan Haiyan, Wu Chengyi, The novel 2D-2D p-n heterojunction BiOBr/Bi12O15Cl6 composites with enhanced visible light photocatalytic activity, J. Optoel. Adv. Mater., 20 (7-8) (2018) 445-450., 2018 Линк

610. Gancheva, M., Markova-Velichkova, M., Atanasova, G., Kovacheva, D., Uzunov, I., Cukeva, R.. Design and photocatalytic activity of nanosized zinc oxides. Applied Surface Science, 368, Elsevier BV, 2016, ISSN:0169-4332, DOI:10.1016/j.apsusc.2016.01.211, 258-266. SJR:1.093, ISI IF:3.387

Цитира се в:

2135. Qin J., Boonyongmaneerat Y. "Microstructures and photocatalytic properties of ZnO films fabricated by Zn electrodeposition and heat treatment". Materials Science in Semiconductor Processing, 74, 2018, 232-237, 2018 Линк

2136. Widiyandari H., Umiati N., Herdianti R. "Synthesis and photocatalytic property of Zinc Oxide (ZnO) fine particle using flame spray pyrolysis method". Journal of Physics Conference Series 1025(1):012004, 2018, 2018 Линк

2137. Arabi M., Baizaee S., Bahador A., Otaqsara S. "Rapid, controllable, one‐pot and room‐temperature aqueous synthesis of ZnO: Cu nanoparticles by pulsed UV laser and its application for photocatalytic degradation of methyl orange". Luminescence 33 (3), 2018, 475-485, 2018 Линк

2138. Wanotayan, Thanyalux, et al. "Microstructures and photocatalytic properties of ZnO films fabricated by Zn electrodeposition and heat treatment." Materials Science in Semiconductor Processing 74 (2018): 232-237., 2018 Линк

2139. Rajeswari, M., Agrawal, P., Roopa, G.S., Akshay Jain, A., Kumar Gupta, P. Green Synthesis and Characterization of Multifunctional Zinc Oxide Nanomaterials using Extract of Moringa Oleifera Seed (2018) Materials Today: Proceedings, 5 (10), pp. 20996-21002., 2018 Линк

2140. Duru, I. P., E. Ozugurlu, and L. Arda. "Size effect on magnetic properties of Zn0. 95− xMgxNi0. 05O nanoparticles by Monte Carlo simulation." Ceramics International (2018)., 2018 Линк

2141. L. Ma, G. Wang, C. Jiang, H. Bao, Q. Xu, Synthesis of core-shell TiO2 g-C3N4 hollow microspheres for efficient photocatalytic degradation of rhodamine B under visible light, Applied Surface Science, 430, 2018, 263-272, 2018 Линк

611. Stoeva, N., Atanasova, G., Spassova, I., Nickolov, R., Khristova, M.. Copper catalysts supported on ordered and disordered silica-carbon composites for NOx elimination. Reaction Kinetics, Mechanism and Catalysis, 118, 1, Springer Netherlands, 2016, ISSN:18785190, DOI:10.1007/s11144-016-0996-7, 199-214. SJR:0.394, ISI IF:1.265

Цитира се в:

2142. N. Danchova, D. Paskalev, S. Gutzov, Aerogels – new materials with promising applications, Bulgarian Chemical Communications,

Page 138: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

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Volume 50, Special Issue J (pp. 172–177) 2018, 2018

2143. Hartley, U.W., Tongnan, V., Laosiripojana, N., Kim-Lohsoontorn, P., Li, K., Nitrous oxide decomposition over La0.3 Sr0.7 Co0.7 Fe0.3 O3−Δ catalyst, Reaction Kinetics, Mechanisms and Catalysis 125(1), pp. 85-97, 2018, 2018

612. Ivanova, R., Genova, I., Kovacheva, D., Atanasova, G., Tsoncheva, T.. Effect of porous structure on the formation of active sites in manganese hosted in ordered mesoporous silica catalysts for environmental protection. Journal of Porous Materials, 23, 4, Springer New York LLC, 2016, ISSN:13802224, DOI:10.1007/s10934-016-0158-3, 1005-1013. SJR:0.405, ISI IF:1.385

Цитира се в:

2144. Popa, A., Sasca, V., Verdes, O. et al. ffect of the amine type on thermal stability of modified mesoporous silica used for CO2 adsorption, J Therm Anal Calorim (2018) 134: 269., 2018 Линк

2145. Kuśtrowski, P., Rokicińska, A., Kondratowicz, T. Abatement of Volatile Organic Compounds Emission as a Target for Various Human Activities Including Energy Production, Advances in Inorganic Chemistry, 72, 2018 pp. 385-419, 2018 Линк

2146. Wang, Z., Qin, Y., Pan, F., (...), Wen, W., Li, J., Mesoporous Silica-Supported Manganese Oxides for Complete Oxidation of Volatile Organic Compounds: Influence of Mesostructure, Redox Properties, and Hydrocarbon Dimension, Industrial and Engineering Chemistry Research 57(22), 2018 pp. 7374-7382, , 2018 Линк

2147. Chen, Xi, et al. "Catalytic combustion of toluene over mesoporous Cr2O3-supported platinum catalysts prepared by in situ pyrolysis of MOFs." Chemical Engineering Journal 334 (2018): 768-779., 2018 Линк

613. Koseva I., Nikolov V., Petrova N., Tzvetkov P., Marychev M.. Thermal behavior of germanates with olivine structure. Thermochimica Acta, 646, Elsevier, 2016, DOI:http://dx.doi.org/10.1016/j.tca.2016.11.004, 1-7. SJR:0.708, ISI IF:1.938

Цитира се в:

2148. Xiang, Huaicheng, et al. "Ultralow loss CaMgGeO4 microwave dielectric ceramic and its chemical compatibility with silver electrodes for low-temperature cofired ceramic applications." ACS Sustainable Chemistry & Engineering 6.5 (2018): 6458-6466., 2018 Линк

2149. Li, Chunchun, et al. "Li2AGeO4 (A = Zn, Mg): Two novel low-permittivity microwave dielectric ceramics with olivine structure." Journal of the European Ceramic Society 38.4 (2018): 1524-1528., 2018 Линк

614. Dikovska, A. Og., Atanasova, G. B., Avdeev, G. V., Strijkova, V. Y.. Thin nanocrystalline zirconia films prepared by pulsed laser deposition. Journal of Physics: Conference Series, 700, Institute of Physics Publishing, 2016, ISSN:17426588, DOI:10.1088/1742-6596/700/1/012024, 012024. SJR:0.211

Цитира се в:

2150. Alkhayatt, A.H.O., Hussain, S.A., Mahdi, E.A. An investigation in to the impact of Ti doping on the structural, optical and sensing properties of spray deposited nanocrystalline ZrO2 thin films, Optik, 159, pp. 305-314 2018, 2018

615. Ivanova, S., Zhecheva, E., Kukeva, R., Nihtianova, D., Mihaylov, L., Atanasova, G., Stoyanova, R.. Layered P3-NaxCo1/3Ni1/3Mn1/3O2 versus Spinel Li4Ti5O12 as a Positive and a Negative Electrode in a Full Sodium-Lithium Cell,. ACS Applied Materials and Interfaces, 8, 27, American Chemical Society, 2016, ISSN:19448244, DOI:10.1021/acsami.6b05075, 17321-17333. SJR:2.381, ISI IF:7.145

Цитира се в:

2151. Jin-Zhi Guo, Yang Yang, Dao-Sheng Liu, Xing-Long Wu, Bao-Hua Hou, Wei-Lin Pang, Ke-Cheng Huang, Jing-Ping Zhang, Zhong-Min Su, A Practicable Li/Na-Ion Hybrid Full Battery Assembled by a High-Voltage Cathode and Commercial Graphite Anode: Superior Energy Storage Performance and Working, Mechanism, Advanced Energy Materials, Advanced Energy Materials, 8(10), 1702504, 2018, 2018

2152. Zulipiya Shadike, Enyue Zhao, Yong-Ning Zhou, Xiqian Yu, Yong Yang, Enyuan Hu, Seongmin Bak, Lin Gu, Xiao-Qing Yang, Advanced Characterization Techniques for Sodium-Ion Battery Studies, Advanced Energy Materials, Advanced Energy Materials, 8(17), 1702588, 2018, 2018

2153. Kitta, M., Kohyama, M. Mechanism of the Na-substituted spinel phase generation in a li4 Ti5 O12 electrode via sodium-ion battery cycling, Electrochemistry, 86(4), pp. 194-197, 2018, 2018

616. Kostov, K.L., Polzin, S., Schumann, F.O., Widdra, W.. Surface phonons of NiO(001) ultrathin films grown pseudomorphically on Ag(001). Surface Science, 643, 1, Elsevier, 2016, DOI:10.1016/j.susc.2015.08.022, 23-29. SJR:0.768, ISI IF:1.925

Цитира се в:

2154. Rink, M., Himmerlich, M., Krischok, S. and Kröger, J., Fuchs–Kliewer phonons of H-covered and clean GaN (11¯ 00). Surface Science, 667, pp.31-37, 2018, 2018 Линк

617. Popova, M., Szegedi, Á., Lazarova, H., Ristić, A., Kalvachev, Y., Atanasova, G., Wilde, N., Tušar, N. N., Gläser, R.. Synthesis of biomass derived levulinate esters on novel sulfated Zr/KIL-2 composite catalysts. Microporous and Mesoporous Materials, 235, Elsevier, 2016, ISSN:13871811, DOI:10.1016/j.micromeso.2016.07.047, 50-58. SJR:1.243, ISI IF:3.349

Page 139: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 139/154

Цитира се в:

2155. Kelleher, P.R., Haller, G.L., Casale, S., Méthivier, C., Thomas, C., Assessing carbon or tungstates coverage of ZrO2 nanoparticles supported on MWCNT via NOx –TPD, Nano-Structures and Nano-Objects, 16, pp. 110-119, 2018, 2018

618. Vassilev, Ts., Penkov, I., Tzvetkova, Chr., Pascova, R.. Glass transition temperatures and structures of multicomponent borate glasses: Influence of modifier cation field strenghts. Journal of Non-Crystalline Solids, 438, Elsevier, 2016, ISSN:0022-3093, 1-6. SJR:0.695, ISI IF:1.825

Цитира се в:

2156. Jadach, R., Zmojda, J., Miluski P., Sitarz, M. et al.. “ Spectroscopic properties of rare doped germinate glasses”. Conference: Fiber Lasers and Glass Photonics: Materials through Applications, Vol. 10683, p. 1068316. International Society for Optics and Photonics, May 2018, DOI: 10.1117/12.23222626, 2018

2157. Jadach, R., Kochanowicz, M., Zmoida, J., Dorosz, D. et al. “ Effect of Modifiers on Optical and Structural Properties of Barium Gallo-Germanate Glasses Doped with RE Ions”. Conference 2018, 20th International Conference on Transparent Optical Networks (ICTON), July 2018, (pp. 1-4)., IEEE.DOI: 10.1109/ICTON. 2018.8473756, 2018

2158. Ruangtaweep, Y., Kaewkhao, J., Hansupho, S., Huaikrachao, W. “Physical and optical properties of Ni2+ ions in borate glass”, Journal of Thai Interdisciplinary Research.;12(5):19-22, 2018, 2018

2159. Wagh, A., Hegde, V., Viswanath, D., Lakshminarayana, G, Raviprakash, Y, Kamath, S., D. “The effect of 1.25 MeV γ rays on Sm3+ doped lead fluoroborate glasses for reddish orange laser and radiation shielding applications”. Journal of Luminescence, Jul 1;V. 199, pp 87-108, 2018, 2018

619. Chakarova, K., Andonova, S., Dimitrov, L., Hadjiivanov, K.. FTIR study of CO and N2 adsorption on [Ge]FAU zeolites in their Na- and H-forms. Microporous and mesoporous materials, 220, Elsevier, 2016, ISSN:1387-1811, DOI:10.1016/j.micromeso.2015.09.002, 188-197. SJR:1.156, ISI IF:3.453

Цитира се в:

2160. L. Duplouy, Preliminary Investigation of Rare Earth Elements Ion Exchange on Zeolites, Ms. Thesis, UNIVERSITY OF HELSINKI, 2018, 2018 Линк

2161. M.A. Wassel, H.A. Bayoumi, A.A. Wassel, A.S. Elzaref and M.M. Arafa, Spectroscopic Characterization For Adsorption Processes Of Cadmium Ions (Cd+2) Onto Zeolite-A Treated By Cold Plasma , World J. Pharm. Life Sci., 4 (2018) 20-34 [ISI]., 2018 Линк

2162. M. Rubeš, M. Trachta, E. Koudelková, R. Bulánek, J. Klimeš, P. Nachtigall, O. Bludský, "Temperature Dependence of Carbon Monoxide Adsorption on a High-Silica H-FER Zeolite", J. Phys. Chem. C, 122 (2018) 26088-26095., 2018 Линк

2163. M. R. Delgado, C. O. Arean, "Non-linear enthalpy-entropy correlation for nitrogen adsorption in zeolites", Molecules, 23 (2018) 2978., 2018 Линк

620. Vassileva, P.S., Radoykova, T.H., Detcheva, A.K., Avramova, I.A., Aleksieva, K.I., Nenkova, S.K., Valchev, I.V., Mehandjiev, D.R.. Adsorption of Ag+ ions on hydrolyzed lignocellulosic materials based on willow, paulownia, wheat straw and maize stalks. International Journal of Environmental Science and Technology, 13, 5, 2016, 1319-1328. ISI IF:2.344

Цитира се в:

2164. Araújo, C.S.T., Almeida, I.L.S., Rezende, H.C., Marcionilio, S.M.L.O., Léon, J.J.L., de Matos, T.N. Elucidation of mechanism involved in adsorption of Pb(II) onto lobeira fruit (Solanum lycocarpum) using Langmuir, Freundlich and Temkin isotherms (2018) Microchemical Journal, 137, pp. 348-354., 2018 Линк

621. Harizanova, R., Abrashev, M., Avramova, I., Vladislavova, L., Bocker, C., Tsutsumanova, G., Avdeev, G., Rüssel, C.. Phase composition identification and microstructure of BaTiO3-containing sodium-aluminoborosilicate glass-ceramics. Solid State Sciences, 52, Elsevier Masson SAS, 2016, ISSN:1293-2558, 49-56. SJR:0.608, ISI IF:2.041

Цитира се в:

2165. El-Alaily, N.A., Hussein, E.M.A., Ezz Eldin, F.M.Gamma Irradiation and Heat Treatment Effects on Barium Borosilicate Glasses Doped Titanium Oxide (2018) Journal of Inorganic and Organometallic Polymers and Materials, 28 (6), pp. 2662-2676., 2018 Линк

622. Uzunova E. L., Mikosch H.. A theoretical study of nitric oxide adsorption and dissociation on copper-exchanged zeolites SSZ-13 and SAPO-34: the impact of framework acid–base properties. Phys.Chem.Chem.Phys, 18, 2, RSC, 2016, ISSN:1463-9076, DOI:http://dx.doi.org/10.1039/c6cp01146b, 11233-11243. ISI IF:4.493

Цитира се в:

2166. Pham, T.N., Sugiyama, M., Muttaqien, F., Putra, S.E.M., Inagaki, K., Son, D.N., Hamamoto, Y., Hamada, I., Morikawa, Y. Hydrogen Bond-Induced Nitric Oxide Dissociation on Cu(110) (2018) Journal of Physical Chemistry C, 122 (22), pp. 11814-11824., 2018

623. Ivanova, S., Zhecheva, E., Kukeva, R., Tyuliev, G., Nihtianova, D., Mihailov L., Stoyanova R.. Effect of Sodium Content on the Reversible Lithium Intercalation into Sodium-Deficient Cobalt–Nickel–Manganese Oxides NaxCo1/3Ni1/3Mn1/3O2 (0.38 ≤ x ≤ 0.75) with a P3 Type

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page 140/154

of Structure. The Journal of Physical Chemistry C, 120, 7, ACS Publications, 2016, DOI:10.1021/acs.jpcc.5b11910, 3654-3668. ISI IF:4.509

Цитира се в:

2167. Mortemard De Boisse, B., Carlier, D., Guignard, M., Guerin, E., Duttine, M., Wattiaux, A., Delmas, C. Influence of Mn/Fe Ratio on Electrochemical and Structural Properties of P2-NaxMn1- yFeyO2 Phases as Positive Electrode Material for Na-Ion Batteries (2018) Chemistry of Materials, 30 (21), pp. 7672-7681., 2018 Линк

2168. Chen, H., Wu, Z., Zheng, Z., Chen, T., Guo, X., Li, J., Zhong, B. Tuning the component ratio and corresponding sodium storage properties of layer-tunnel hybrid Na0.6Mn1-xNixO2 cathode by a simple cationic Ni2+ doping strategy (2018) Electrochimica Acta, 273, pp. 63-70., 2018 Линк

2169. Hu, F., Jiang, X. Li-substituted P2-Na0.66LixMn0.5Ti0.5O2 as an advanced cathode material and new “bi-functional” electrode for symmetric sodium-ion batteries (2018) Advanced Powder Technology, 29 (4), pp. 1049-1053, 2018 Линк

2170. Chu, S., Wei, S., Chen, Y., Cai, R., Liao, K., Zhou, W., Shao, Z. Optimal synthesis and new understanding of P2-type Na2/3Mn1/2Fe1/4Co1/4O2 as an advanced cathode material in sodium-ion batteries with improved cycle stability (2018) Ceramics International, 44 (5), pp. 5184-5192., 2018 Линк

2171. Song, J., Gim, J., Park, S., Kim, J. Sodium manganese oxide electrodes accompanying self-ion exchange for lithium/sodium hybrid ion batteries (2018) Electrochimica Acta, 261, pp. 42-48, 2018 Линк

2172. Gao, G., Tie, D., Ma, H., Yu, H., Shi, S., Wang, B., Xu, S., Wang, L., Zhao, Y. Interface-rich mixed P2 + T phase NaxCo0.1Mn0.9O2(0.44 ≤ x ≤ 0.7) toward fast and high capacity sodium storage (2018) Journal of Materials Chemistry A, 6 (15), pp. 6675-6684., 2018 Линк

624. Uzunova E., Mikosch H.. Adsorption of phosphates and phosphoric acid in zeolite clinoptilolite: Electronic structure study. Microporous and Mesoporous Materials, 232, Elsevier, 2016, ISSN:1387-1811, DOI:http://dx.doi.org/10.1016/j.micromeso.2016.06.019, 119-125. ISI IF:3.455

Цитира се в:

2173. Pazouki, M., Zabihi, M., Shayegan, J., Fatehi, M.H. Mercury ion adsorption on AC Fe3O4-NH2-COOH from saline solutions: Experimental studies and artificial neural network modeling (2018) Korean Journal of Chemical Engineering, 35 (3), pp. 671-683, 2018

2174. Toledo-Jaldin, H.P., Blanco-Flores, A., Sánchez-Mendieta, V., Martín-Hernández, O. Influence of the chain length of surfactant in the modification of zeolites and clays. Removal of atrazine from water solutions (2018) Environmental Technology (United Kingdom), 39 (20), pp. 2679-2690., 2018 Линк

2175. Zhang, L., Jin, S., Wang, Y., Ji, J. Phosphate adsorption from aqueous solution by lanthanum–iron hydroxide loaded with expanded graphite (2018) Environmental Technology (United Kingdom), 39 (8), pp. 997-1006., 2018

625. Ivanova, Sv., Zhecheva, E. K., Stoyanova, R. K.. Sodium deficient transition metal oxides Na1/2Co1/3Ni1/3Mn1/3O2 as alternative electrode materials for lithium-ion batteries. Bulgarian Chemical Communications, Special Issue - A 2016, 48, 2016, ISSN:ISSN: 0324-1130, 88-94. ISI IF:0.201

Цитира се в:

2176. Kubota, K.; Kumakura, S.; Yoda, Y.; Kuroki, K.; Komaba, S.; Electrochemistry and Solid‐State Chemistry of NaMeO2 (Me = 3d Transition Metals) Adv. Energy Materials 8 (2018) 1703415, 2018 Линк

626. Aslam, S., Isab, A. A., Alotaibi, M. A., Saleem, M., Monim-ul-Mehboob, M., Ahmad, S., Georgieva, I., Trendafilova, N. Synthesis, Spectroscopic Characterization, Theoretical DFT Calculations and Antimicrobial Properties of Silver(I) Complexes of 2,2’-Bipyridine and 1,10-Phenanthroline. Polyhedron, 115, Elsevier, 2016, ISSN:0277-5387, DOI:doi:10.1016/j.poly.2016.04.047, 212-218. SJR:0.509, ISI IF:2.108

Цитира се в:

2177. Ermolaev, A.V., Smolentsev, A.I., Brylev, K.A., Kitamura, N., Mironov, Y.V., First cyano-bridged coordination polymers based on N, N’-chelated Ag(I) ions and octahedral rhenium(III) chalcocyanide clusters exhibiting unusually long-lived photoluminescence, 2018, Journal of Molecular Structure, 1173, pp. 627-634., 2018 Линк

2178. Munteanu, A.-C., Badea, M., Olar, R., (...), Andries, A., Uivarosi, V., Cytotoxicity studies, DNA interaction and protein binding of new Al (III), Ga (III) and In (III) complexes with 5-hydroxyflavone, 2018, Applied Organometallic Chemistry, 32(12), e4579., 2018 Линк

2179. Andrejević, T.P., Nikolić, A.M., Glišić, B.Đ., (...), Opsenica, I.M., Djuran, M.I., Synthesis, structural characterization and antimicrobial activity of silver(I) complexes with 1-benzyl-1H-tetrazoles, 2018, Polyhedron, 154, pp. 325-333., 2018 Линк

2180. Savić, N.D., Vojnovic, S., Glišić, B.Đ., (...), Nikodinovic-Runic, J., Djuran, M.I., Mononuclear silver(I) complexes with 1, 7-phenanthroline as potent inhibitors of Candida growth, 2018, European Journal of Medicinal Chemistry, 156, pp. 760-773., 2018 Линк

2181. Selmi, W., Abdelhak, J., Marchivie, M., Zid, M.F., A comparative structural, spectroscopic, optical and photoluminescence studies by DFT of Fe(II) difluoro(oxalato)borate complex, 2018, Journal of Photochemistry and Photobiology A: Chemistry, 352, pp. 43-54., 2018 Линк

Page 141: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 141/154

2182. Movahedi, E., Rezvani, A.R., Multispectroscopic DNA-Binding studies and antimicrobial evaluation of new mixed-ligand Silver(I) complex and nanocomplex: A comparative study, (2018) Journal of Molecular Structure, 1160, pp. 117-128., 2018 Линк

627. Stambolova, I., Georgiev, V., Batakliev, T., Lutzkanov, L., Blaskov, V., Atanasova, G., Vassilev, S., Eliyas, A.. Synthesis and characterization of nickel and silver-loaded activated carbon catalysts for ozone decomposition. Journal of Chemical Technology and Metallurgy, 51, 2, 2016, ISSN:1314-7471, 181-187. SJR:0.194

Цитира се в:

2183. Applying an activated carbon/silver catalyst to the decomposition of the aqueous solutions of tetramethyl ammonium hydroxide Lu, L.-W., Peng, Y.-P., Chang, C.-N. 2018 Journal of the Taiwan Institute of Chemical Engineers 88, pp. 130-136, 2018

628. Blagoev, B.S., Dimitrov, D.Z., Mehandzhiev, V.B., Kovacheva, D., Terziyska, P., Pavlic, J., Lovchinov, K., Mateev, E., Leclercq, J., Sveshtarov, P.. Electron transport in Al-doped ZnO nanolayers obtained by atomic layer deposition. Journal of Physics: Conference Series, 700, 1, IOP Publishing Ltd., 2016, ISSN:1742-6588, DOI:10.1088/1742-6596/700/1/012040, art. no.-012040. SJR:0.211

Цитира се в:

2184. Su, Y.C., Chiou, C.C., Marinova, V., Lin, S.H., Bozhinov, N., Blagoev, B., Babeva, T., Hsu, K.Y., Dimitrov, D.Z. Atomic layer deposition prepared Al-doped ZnO for liquid crystal displays applications (2018) Optical and Quantum Electronics, 50 (5), art. no. 205, ., 2018 Линк

2185. Marinov, G., Strijkova, V., Vasileva, M., Madjarova, V., Malinowski, N., Babeva, T. Effect of Substrate Temperature on the Microstructural, Morphological, and Optical Properties of Electrosprayed ZnO Thin Films (2018) Advances in Condensed Matter Physics, 2018, art. no. 8957507, ., 2018 Линк

629. Slavov, A., Panchev, I., Kovacheva, D., Vasileva, I.. Physico-chemical characterization of water-soluble pectic extracts from Rosa damascena, Calendula officinalis and Matricaria chamomilla wastes. Food Hydrocolloids, 61, Elsevier, 2016, ISSN:0268-005X, DOI:10.1016/j.foodhyd.2016.06.006, 469-476. ISI IF:4.53

Цитира се в:

2186. Malucelli, L.C., Massulo, T., Magalhães, W.L.E., Stofella, N.C.F., Vasconcelos, E.C., Filho, M.A.S.C., Murakami, F.S. Thermal and chemical characterization of Dicksonia sellowiana extract by means of thermal analysis (2018) Brazilian Journal of Pharmacognosy, 28 (5), pp. 626-630., 2018 Линк

2187. Tang, Yun, et al. "The chemical structure and anti-aging bioactivity of an acid polysaccharide obtained from rose buds." Food & function 9.4 (2018): 2300-2312., 2018 Линк

2188. Gurarslan, Alper, and Muhammed Erkam Narinç. "Investigating the rose oil and toluene absorption of populus fiber." Textile Research Journal (2018): 0040517518783338., 2018 Линк

2189. Akbari-Alavijeh, Safoura, et al. "Pistachio hull water-soluble polysaccharides as a novel prebiotic agent." International Journal of Biological Macromolecules, Volume 107, Part A, (2018): 808-816., 2018 Линк

630. Schipper, F., Dixit, M., Kovacheva, D., Talianker, M., Haik, O., Grinblat, J., Erickson, E.M., Ghanty, C., Major, D.T., Markovsky, B., Aurbach, D.. Stabilizing nickel-rich layered cathode materials by a high-charge cation doping strategy: Zirconium-doped LiNi0.6Co0.2Mn0.2O2. Journal of Materials Chemistry A, 4, 41, Royal Society of Chemistry, 2016, ISSN:2050-7488, DOI:10.1039/c6ta06740a, 16073-16084. ISI IF:8.36

Цитира се в:

2190. Xia, Y., Zheng, J., Wang, C., Gu, M. Designing principle for Ni-rich cathode materials with high energy density for practical applications (2018) Nano Energy, 49, pp. 434-452., 2018 Линк

2191. Cheng, C., Chen, F., Yi, H., Lai, G. Enhanced electrochemical and safe performances of LiNi1/3Co1/3Mn1/3O2 by nano-CeO2 coating via a novel hydrolysis precipitate reaction route (2018) Journal of Alloys and Compounds, 753, pp. 155-161., 2018 Линк

2192. Chen, Y., Li, Y., Li, W., Cao, G., Tang, S., Su, Q., Deng, S., Guo, J. High-voltage electrochemical performance of LiNi0.5Co0.2Mn0.3O2 cathode material via the synergetic modification of the Zr/Ti elements (2018) Electrochimica Acta, 281, pp. 48-59., 2018 Линк

2193. Chen, Y., Li, Y., Tang, S., Lei, T., Deng, S., Xue, L., Cao, G., Zhu, J. Enhanced electrochemical properties of the Cd-modified LiNi0.6Co0.2Mn0.2O2 cathode materials at high cut-off voltage (2018) Journal of Power Sources, 395, pp. 403-413., 2018 Линк

2194. Liu, S., Dang, Z., Liu, D., Zhang, C., Huang, T., Yu, A. Comparative studies of zirconium doping and coating on LiNi0.6Co0.2Mn0.2O2 cathode material at elevated temperatures (2018) Journal of Power Sources, 396, pp. 288-296., 2018 Линк

2195. Klinser, G., Stückler, M., Kren, H., Koller, S., Goessler, W., Krenn, H., Würschum, R. Charging processes in the cathode LiNi0.6Mn0.2Co0.2O2 as revealed by operando magnetometry (2018) Journal of Power Sources, 396, pp. 791-795., 2018 Линк

2196. Li, Z., Luo, C., Wang, C., Jiang, G., Chen, J., Zhong, S., Zhang, Q., Li, D. Effects of Nb substitution on structure and electrochemical properties of LiNi0.7Mn0.3O2 cathode materials (2018) Journal of Solid State Electrochemistry, 22 (9), pp. 2811-2820., 2018 Линк

2197. Choi, S.-J., Choi, S.-H., Bui, A.D., Lee, Y.-J., Lee, S.-M., Shin, H.-C., Ha, Y.-C. LiI-Doped Sulfide Solid Electrolyte: Enabling a High-Capacity Slurry-Cast Electrode by Low-Temperature Post-Sintering for Practical All-Solid-State Lithium Batteries (2018) ACS Applied Materials and Interfaces, 10 (37), pp. 31404-31412., 2018 Линк

2198. Ding, N., Wang, X., Hou, Y., Wang, S., Li, X., Fam, D.W.H., Zong, Y., Liu, Z. Rational design of a high-energy LiNi0.8Co0.15Al0.05O2

Page 142: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 142/154

cathode for Li-ion batteries (2018) Solid State Ionics, 323, pp. 72-77., 2018 Линк

2199. Pişkin, B., Savaş Uygur, C., Aydınol, M.K. Mo doping of layered Li (NixMnyCo1-x-y-zMz)O2 cathode materials for lithium-ion batteries (2018) International Journal of Energy Research, 42 (12), pp. 3888-3898., 2018 Линк

2200. Lu, Y., Shi, S., Yang, F., Zhang, T., Niu, H., Wang, T. Mo-doping for improving the ZrF4 coated-Li[Li0.20Mn0.54Ni0.13Co0.13]O2 as high performance cathode materials in lithium-ion batteries (2018) Journal of Alloys and Compounds, 767, pp. 23-33., 2018 Линк

2201. Mei, B.-A., Lau, J., Lin, T., Tolbert, S.H., Dunn, B.S., Pilon, L. Physical Interpretations of Electrochemical Impedance Spectroscopy of Redox Active Electrodes for Electrical Energy Storage (2018) Journal of Physical Chemistry C, 122 (43), pp. 24499-24511., 2018 Линк

2202. Han, B., Xu, S., Zhao, S., Lin, G., Feng, Y., Chen, L., Ivey, D.G., Wang, P., Wei, W. Enhancing the Structural Stability of Ni-Rich Layered Oxide Cathodes with a Preformed Zr-Concentrated Defective Nanolayer (2018) ACS Applied Materials and Interfaces, 10 (46), pp. 39599-39607., 2018 Линк

2203. Liu, L., Li, J., Xiao, Y., Sun, W., Yue, B. Structure and electrochemical performance of LiNi0.6Co0.1Mn0.2Fe0.1O2 tetrad cathode material for Li-battery (2018) Journal of Materials Science: Materials in Electronics, 29 (24), pp. 21213-21222., 2018 Линк

2204. Heo, Kookjin, et al. "Ionic Conductor-LiNi0. 8Co0. 1Mn0. 1O2 Composite Synthesized by Simultaneous Co-Precipitation for Use in Lithium Ion Batteries." Journal of The Electrochemical Society 165.13 (2018): A2955-A2960., 2018 Линк

2205. Bingang, Mei. Physical Interpretations and Electrode Design Guidelines for Electrochemical Capacitors. Diss. UCLA, 2018., 2018 Линк

2206. Zhang, Jiangtao, et al. "Origin of Performance Differences of Nickel‐Rich LiNi0. 9Mn0. 1O2 Cathode Materials Synthesized in Oxygen and Air." Energy Technology., 2018 Линк

2207. Liu, Wen, et al. "Significantly Improving Cycling Performance of Cathodes in Lithium Ion Batteries: The Effect of Al 2 O 3 and LiAlO 2 Coatings on LiNi 0.6 Co 0.2 Mn 0.2 O 2." Nano Energy, Volume 44, (2018): 111-120., 2018 Линк

2208. Chen, Yongxiang, et al. "Enhancing the high-voltage electrochemical performance of the LiNi0. 5Co0. 2Mn0. 3O2 cathode materials via hydrothermal lithiation." Journal of Materials Science 53.3 (2018): 2115-2126., 2018 Линк

2209. Xu, Z., Rahman, M.M., Mu, L., Liu, Y., Lin, F. Chemomechanical behaviors of layered cathode materials in alkali metal ion batteries (2018) Journal of Materials Chemistry A, 6 (44), pp. 21859-21884., 2018 Линк

2210. Iqbal, A., Chen, L., Chen, Y., Gao, Y.-X., Chen, F., Li, D.-C. Lithium-ion full cell with high energy density using nickel-rich LiNi0.8Co0.1Mn0.1O2 cathode and SiO−C composite anode (2018) International Journal of Minerals, Metallurgy and Materials, 25 (12), pp. 1473-1481., 2018 Линк

2211. Tian, C., Nordlund, D., Xin, H.L., Xu, Y., Liu, Y., Sokaras, D., Lin, F., Doeff, M.M. Depth-dependent redox behavior of LiNi0.6Mn0.2Co0.2O2 (2018) Journal of the Electrochemical Society, 165 (3), pp. A696-A704., 2018 Линк

2212. Kong, F., Liang, C., Longo, R.C., Zheng, Y., Cho, K. Atomic-scale understanding of non-stoichiometry effects on the electrochemical performance of Ni-rich cathode materials (2018) Journal of Power Sources, 378, pp. 750-758., 2018 Линк

2213. Wang, H., Wei, Y., Wang, J., Long, D. Polymer-chelation synthesis of compositionally homogeneous LiNi1/3Co1/3Mn1/3O2 crystals for lithium-ion cathode (2018) Electrochimica Acta, 269, pp. 724-732., 2018 Линк

2214. He, T., Lu, Y., Su, Y., Bao, L., Tan, J., Chen, L., Zhang, Q., Li, W., Chen, S., Wu, F. Sufficient Utilization of Zirconium Ions to Improve the Structure and Surface properties of Nickel-Rich Cathode Materials for Lithium-Ion Batteries (2018) ChemSusChem, 11 (10), pp. 1639-1648., 2018 Линк

2215. Hou, Q., Cao, G., Wang, P., Zhao, D., Cui, X., Li, S., Li, C. Carbon coating nanostructured-LiNi1/3Co1/3Mn1/3O2 cathode material synthesized by chemical vapor deposition method for high performance lithium-ion batteries (2018) Journal of Alloys and Compounds, 747, pp. 796-802., 2018 Линк

2216. Xue, L., Li, Y., Xu, B., Chen, Y., Cao, G., Li, J., Deng, S., Chen, Y., Chen, J. Effect of Mo doping on the structure and electrochemical performances of LiNi0.6Co0.2Mn0.2O2 cathode material at high cut-off voltage (2018) Journal of Alloys and Compounds, 748, pp. 561-568., 2018 Линк

2217. Feng, S., Kong, X., Sun, H., Wang, B., Luo, T., Liu, G. Effect of Zr doping on LiNi0.5Mn1.5O4 with ordered or disordered structures (2018) Journal of Alloys and Compounds, 749, pp. 1009-1018., 2018 Линк

631. Kalapsazova, M., Stoyanova, R., Zhecheva, E.. Effect of the synthesis procedure on the electrochemical properties of Na2/3Ni1/2Mn1/2O2 used as an electrode material in lithium-ion batteries. Bulgarian Chemical Communications, 48, 2016, ISSN:0324-1130, 95-100. ISI IF:0.201

Цитира се в:

2218. Lee, Y., Yoo, J.-K., Oh, Y., Park, H., Go, W., Myung, S.-T., Kim, J. "Unexpectedly high electrochemical performances of a monoclinic Na2.4V2(PO4)3/conductive polymer composite for Na-ion batteries". Journal of Materials Chemistry A, 6 (36), pp. 17571-17578, 2018, 2018 Линк

632. Nedkov, I., Slavov, L., Angelova, R., Blagoev, B., Kovacheva, D., Abrashev, M.V., Iliev, M., Groudeva, V.. Biogenic nanosized iron oxides obtained from cultivation of iron bacteria from the genus Leptothrix. Journal of Biological Physics, 42, 4, Springer Netherlands, 2016, ISSN:0092-0606, DOI:10.1007/s10867-016-9426-3, 587-600. ISI IF:1.33

Page 143: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 143/154

Цитира се в:

2219. Jubb, Aaron M., et al. "Characterization of iron oxide nanoparticle films at the air–water interface in Arctic tundra waters." Science of the Total Environment 633 (2018): 1460-1468., 2018 Линк

633. Lilkov, V., Petrov, O., Kovacheva, D., Rostovsky, I., Tzvetanova, Y., Petkova, V., Petrova, N.. Carbonation process in cement with mineral additions of natural zeolite and silica fume – Early hydration period (minutes) up to 24 hours. Construction and Building Materials, 124, Elsevier Limited, 2016, ISSN:0950-0618, DOI:10.1016/j.conbuildmat.2016.07.117, 838-845. ISI IF:3.24

Цитира се в:

2220. Domínguez, Iván Ayoseth Chulines, et al. "Characterizations and Industrial Applications for Cement and Concrete Incorporated Natural Zeolite." Zeolites and Their Applications. IntechOpen, 2018., 2018 Линк

634. Tsoncheva, T., Ivanova, R., Dimitrov, M., Paneva, D., Kovacheva, D., Henych, J., Vomáčka, P., Kormunda, M., Velinov, N., Mitov, I., Štengl, V.. Template-assisted hydrothermally synthesized iron-titanium binary oxides and their application as catalysts for ethyl acetate oxidation. Applied Catalysis A: General, 528, Elsevier, 2016, ISSN:1873-3875, DOI:10.1016/j.apcata.2016.09.006, 24-35. ISI IF:3.869

Цитира се в:

2221. Yang, Y., Li, Y., Zhang, Q., Zeng, M., Wu, S., Lan, L., Zhao, X. Novel photoactivation and solar-light-driven thermocatalysis on ϵ-MnO2 nanosheets lead to highly efficient catalytic abatement of ethyl acetate without acetaldehyde as unfavorable by-product (2018) Journal of Materials Chemistry A, 6 (29), pp. 14195-14206., 2018 Линк

2222. Kostova, N.G., Fabian, M., Dutkova, E., Balaz, M., Shipochka, M. Characterisation of mechanochemically synthesised N-doped TiO2 (2018) Bulgarian Chemical Communications, 50, pp. 122-129., 2018 Линк

2223. Arellano, U., Wang, J.A., Asomoza, M., Chen, L.F., González, J., Manzo, A., Solís, S., Lara, V.H. Crystalline structure, surface chemistry and catalytic properties of Fe3+ doped TiO2 sol–gel catalysts for photooxidation of 2, 4–dichlorophenoxyacetic acid (2018) Materials Chemistry and Physics, 214, pp. 247-259., 2018 Линк

635. Velinov, N., Petrova, T., Tsoncheva, T., Genova, I., Koleva, K., Kovacheva, D., Mitov, I.. Auto-combustion synthesis, Mössbauer study and catalytic properties of copper-manganese ferrites. Hyperfine Interactions, 237, 1, Springer Netherlands, 2016, ISSN:0304-3843, DOI:10.1007/s10751-016-1222-8, 1-11. SJR:0.305, ISI IF:0.49

Цитира се в:

2224. Soares, Sofia F., et al. "Surface Engineered Magnetic Biosorbents for Water Treatment." Green Adsorbents for Pollutant Removal. Springer, Cham, 2018. 301-342., 2018 Линк

636. Kostov, K.L., Schumann, F.O., Polzin, S., Sander, D., Widdra, W.. NiO growth on Ag(001): A layer-by-layer vibrational study. Physical Review B, 94, 7, American Physica Society, 2016, ISSN:2469-9950, DOI:10.1103/PhysRevB.94.075438, 075438-1-075438-10. ISI IF:3.718

Цитира се в:

2225. Rink, M., Himmerlich, M., Krischok, S. and Kröger, J., Fuchs–Kliewer phonons of H-covered and clean GaN (11¯ 00). Surface Science, 667, pp.31-37, 2018., 2018

637. Hassler, J., Matschat, S., Richter, S., Barth, P., Detcheva, A.K., Waarlo, H.-J.. Determination of 22 trace elements in high-purity copper including Se and Te by ETV-ICP OES using SF6, NF3, CF4 and H2 as chemical modifiers. Journal of Analytical Atomic Spectrometry, RSC Publishing, 2016, ISSN:0267-947, DOI:DOI: 10.1039/C5JA00240K, 642-657. ISI IF:3.379

Цитира се в:

2226. Scheffler, G.L., Sadiq, N.W., Pozebon, D., Beauchemin, D. "Risk assessment of trace elements in airborne particulate matter deposited on air filters using solid sampling ETV-ICPOES to measure total concentrations and leaching with simulated saliva, gastric juice and lung fluid to estimate bio-accessibility" Journal of Analytical Atomic Spectrometry, 33 (9), pp. 1486-1492, 2018, 2018 Линк

2227. Olson, N. "Current trends in analytical spectroscopy: Technique and instrument modifications for both new and improved measurements" Spectroscopy (Santa Monica), 33 (3), pp. 34-39, 2018, 2018 Линк

2017

638. Boyadzhieva, T., Koleva, V., Stoyanova, R.. Crystal chemistry of Mg substitution in NaMnPO4 olivine: concentration limit and cation distribution. Physical Chemistry Chemical Physics, 19, 20, 2017, DOI:10.1039/c7cp01947e, 12730-12739. ISI IF:4.123

Цитира се в:

2228. Seo, J.Y.; Choi, H.; Kim, C.S.; Lee, Y.B. "Crystal Structure and Magnetic Properties of Sodium-Iron Phosphates NaFe0.9Mn0.1PO4 Cathode Material" Journal of the Korean Physical Society (2018) 73 (12), 1863–1866., 2018 Линк

Page 144: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 144/154

639. Koseva, I., Tzvetkov, P., Yordanova, A., Marychev, M., Dimitrov, O., Nikolov, V.. Preparation of chromium doped LiAlSiO4 glass-ceramics. Bulgarian Chemical Communications, 49, 2, 2017, 366-370. ISI IF:0.238

Цитира се в:

2229. Varghese, Jobin, et al. "Multilayer Functional Tapes Cofired at 450° C: Beyond HTCC and LTCC Technologies." ACS applied materials & interfaces 10.13 (2018): 11048-11055., 2018 Линк

640. Detcheva, A.,, Velinova., R, Manoylova, A.,, Ivanova, E.,. Study on the Colouration of Bulgarian Late-antique and Medieval Archaeological Glass Finds by a Validated Total Reflection X-ray Fluorescence Procedure. Physics and Chemistry of Glasses: European Journal of Glass Science and Technology Part B, 58, 5, 2017, ISSN:ISSN 1753-3562, DOI:DOI: https://doi.org/10.13036/17533562.58.5.014, 217-225. ISI IF:0.588

Цитира се в:

2230. Carter, S., Clough, R., Fisher, A. Gibson, B., Russell, B., Waack, J. Atomic spectrometry update: Review of advances in the analysis of metals, chemicals and materials, Journal of Analytical Atomic Spectrometry, 33(11) , 1802-1848, 2018, 2018

2231. Vanhoof, C., Bacon, J.R., Ellis, A.T., Vincze, L., Wobrauschek, P., 2018 atomic spectrometry update-a review of advances in X-ray fluorescence spectrometry and its special applications, Journal of Analytical Atomic Spectrometry, 33( 9) 1413-1431, 2018, 2018

641. Georgieva, J., Valova, E., Armyanov, S., Tatchev, D., Sotiropoulos, S., Avramova, I., Dimitrova, N., Hubin, A., Steenhaut, O.. A simple preparation method and characterization of B and N co-doped TiO2 nanotube arrays with enhanced photoelectrochemical performance. Applied Surface Science, 413, Elsevier, 2017, ISSN:0169-4332, DOI:https://doi.org/10.1016/j.apsusc.2017.04.055, 284-291. SJR:0.951, ISI IF:3.387

Цитира се в:

2232. Dindar, B., Güler, A.C."Comparison of facile synthesized N doped, B doped and undoped ZnO for the photocatalytic removal of Rhodamine B".(2018) Environmental Nanotechnology, Monitoring and Management, 10, pp. 457-466., 2018 Линк

2233. Alitabar, M., Yoozbashizadeh, H. Study on the morphology and photocatalytic activity of TiO2 nanotube arrays produced by anodizing in organic electrolyte with Ni, Na, and C as dopants.(2018) Journal of Solid State Electrochemistry, 22 (12), pp. 3883-3893., 2018 Линк

2234. Ma, X., Sun, Z., Hu, X. Synthesis of tin and molybdenum co-doped TiO2nanotube arrays for the photoelectrocatalytic oxidation of phenol in aqueous solution (2018) Materials Science in Semiconductor Processing, 85, pp. 150-159., 2018 Линк

2235. Hao, L., Yan, J., Cheng, L., Zhao, Q., Guan, S., Zhu, Z., Lu, Y. Solar-responsive sole TiO2 nanotube arrays with high photocatalytic activity prepared by one-step anodic oxidation (2018) Journal of Solid State Electrochemistry, 22 (10), pp. 3183-3190., 2018 Линк

2236. Nasirian, M., Lin, Y.P., Bustillo-Lecompte, C.F., Mehrvar, M.Enhancement of photocatalytic activity of titanium dioxide using non-metal doping methods under visible light: a review (2018) International Journal of Environmental Science and Technology, 15 (9), pp. 2009-2032., 2018 Линк

2237. Men, B., Zhang, J., Diao, C., Li, X., Liu, X., Zheng, H. Photoluminescence, surface photovoltage and photocatalytic properties of BaBiO3 powders (2018) Journal of Materials Science: Materials in Electronics, 29 (15), pp. 12729-12734., 2018 Линк

2238. Gupta, R., Sen, S., Phase, D.M., Avasthi, D.K., Gupta, A. Tailoring optical properties of TiO2-Cr co-sputtered films using swift heavy ions (2018) Applied Surface Science, 440, pp. 403-408., 2018 Линк

2239. Li, Y., Cao, C., Xie, X., Zhang, L., Lin, S. Enhanced photoelectrochemical performance of TiO2nanotube arrays with coexisted Pt nanoparticles and Co-Pi cocatalysts (2018) Applied Surface Science, 436, pp. 337-344., 2018 Линк

2240. Dronov, A., Gavrilin, I., Kirilenko, E., Dronova, D., Gavrilov, S. Investigation of anodic TiO2 nanotube composition with high spatial resolution AES and ToF SIMS (2018) Applied Surface Science, 434, pp. 148-154., 2018 Линк

2241. Mao, Z., Lin, H., Xu, M., Miao, J., He, S., Li, Q. Fabrication of co-doped CdSe quantum dot-sensitized TiO2 nanotubes by ultrasound-assisted method and their photoelectrochemical properties (2018) Journal of Applied Electrochemistry, 48 (2), pp. 147-155., 2018 Линк

2242. Fang, L., Wang, X., Wang, Z., Gong, Z., Jin, L., Li, J., Zhang, M., He, G., Jiang, X., Sun, Z. Heterostructured TiO2 nanotree arrays with silver quantum dots loading for enhanced photoelectrochemical properties (2018) Journal of Alloys and Compounds, 730, pp. 110-118., 2018 Линк

2243. Hao, L., Miyazawa, K., Yoshida, H., Lu, Y. Visible-light-driven oxygen vacancies and Ti3+co-doped TiO2 coatings prepared by mechanical coating and carbon reduction (2018) Materials Research Bulletin, 97, pp. 13-18., 2018 Линк

2244. Kongson, P.; Sikong, L.; Masae, M. PHOTOCATALYTIC REACTOR USING TiO2 DOPED WITH N AND SnO2 COATED ON GLASS FIBER FOR CONTAMINATED WATER TREATMENT.(2018) DIGEST JOURNAL OF NANOMATERIALS AND BIOSTRUCTURES Volume: 13 Issue: 3 Pages: 661-668., 2018

642. Koleva, V., Stefov, V., Najdoski, M. Characterization and thermal decomposition of Mg2KH(AsO4)2•15H2O. Journal of Thermal Analysis and Calorimetry, 127, 3, Springer, 2017, ISSN:1588-2926, 1911-1919. ISI IF:1.953

Цитира се в:

Page 145: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 145/154

2245. Cheng, L., Li, W., Li, Y., Yang, Y., Li, Y., Cheng, Y., Song, D. Thermal analysis and decomposition kinetics of the dehydration of copper sulfate pentahydrate. (2018) Journal of Thermal Analysis and Calorimetry, , 2018 Линк

2246. Makreski, P., Todorov, J., Jovanovski, G., Stojanovska, M., & Petrushevski, G. Depicting the dehydration and dehydroxylation processes in very rare hydrogen arsenate minerals. Journal of Thermal Analysis and Calorimetry, 1-12. DOI: 10.1007/s10973-018-7436-z, 2018

643. Grigorova, E., Khristov, M., Stoycheva, I., Tsyntsarski, B.. Effect of activated carbon from polyolefin wax on the hydrogensorption properties of magnesium. International Journal of Hydrogen Energy, 42, 43, International Association for Hydrogen Energy, ELSEVIER, 2017, ISSN:0360-3199, DOI:10.1016/j.ijhydene.2017.06.155, 26872-26876. SJR:1.142, ISI IF:3.582

Цитира се в:

2247. Puttimate Thongtan, Palmarin Dansirima, Sophida Thiangviriya, Natthaporn Thaweelap, Apirak Suthummapiwat, Praphatsorn Plerdsranoy, Rapee Utke. "Reversible hydrogen sorption and kinetics of hydrogen storage tank based on MgH2 modified byTiF4 and activated carbon". International Journal of Hydrogen Energy Vol. 43, Pages 12260-12270, 2018, 2018 Линк

644. Ganev Sv., Parvanov Sv., Slavov S., Bachvarova-Nedelcheva A., Iordanova R., Dimitriev Y.. Influence of TiO2 on the thermal stability and crystallization of glasses within TeO2-Bi2O3-Nb2O5-ZnO system. Bulg. Chem. Commun, 49, spesial issue A, 2017, ISSN:0324-1130, 103-109. ISI IF:0.349

Цитира се в:

2248. Abood M. K., Salim E. T. and Saimon J. A., Niobium Pentoxide Thin Film Prepared using Simple Colloidal Suspension for Optoelectronic Application, International Journal of Nanoelectronics and Materials, 11 (2) (2018) pp. 127-134., 2018 Линк

645. M. Kalapsazova, S. Ivanova, R. Kukeva, S. Simova, S. Wegner, E. Zhecheva, R. Stoyanova. Combined use of EPR and 23Na MAS NMR spectroscopy for assessing the properties of the mixed cobalt–nickel–manganese layers of P3-NayCo1 2xNixMnxO2. Phys. Chem. Chem. Phys., 19, 2017, DOI:10.1039/c7cp04849a, 27065-27073. ISI IF:3.901

Цитира се в:

2249. Meguerdichian, A.G., Shirazi-Amin, A., Moharreri, E., Achola, L.A., Murphy, S.C., Macharia, J., Zhong, W., Jafari, T., Suib, S.L. Synthesis of Large Mesoporous-Macroporous and High Pore Volume, Mixed Crystallographic Phase Manganese Oxide, Mn2O3/Mn3O4 Sponge Inorganic Chemistry, 57 (12), pp. 6946-6956, 2018 Линк

2250. Lee, Y., Yoo, J.-K., Oh, Y., Park, H., Go, W., Myung, S.-T., Kim, J. Unexpectedly high electrochemical performances of a monoclinic Na2.4V2(PO4)3/conductive polymer composite for Na-ion batteries Journal of Materials Chemistry A, 6 (36), pp. 17571-17578, 2018 Линк

646. Soserov, L., Boyadzhieva, T., Koleva, V., Girginov, Ch., Stoyanova, A., Stoyanova, R.. Effect of the Electrolyte Alkaline Ions on the Electrochemical Performance of α-Ni(OH)2/Activated Carbon Composites in the Hybrid Supercapacitor Cell. Chemistry Select, 2, 23, Wiley, 2017, ISSN:2365-6549, 6693-6698. ISI IF:1.505

Цитира се в:

2251. Lee, S.-H., Kim, J.H., Yoon, J.-R. Laser Scribed Graphene Cathode for Next Generation of High Performance Hybrid Supercapacitors (2018) Scientific Reports, 8 (1), art. no. 8179, , 2018 Линк

2252. Sichumsaeng, T., Chanlek, N., Maensiri, S. Effect of various electrolytes on the electrochemical properties of Ni(OH)2 nanostructures (2018) Applied Surface Science, 446, pp. 177-186., 2018 Линк

647. Milanova, M., Donchev, V., Kostov, K.L., Alonso-Álvarez, D., Valcheva, E., Kirilov, K., Asenova, I., Ivanov, I.G., Georgiev, S., Ekins-Daukes, N.. Experimental study of the effect of local atomic ordering on the energy band gap of melt grown InGaAsN alloys. Semiconductor Science and Technology, 32, 8, IOP Publishing, 2017, DOI:10.1088/1361-6641/aa7404, 085005 (1)-085005 (6). ISI IF:2.305

Цитира се в:

2253. Hamed, T.A., Adamovic, N., Aeberhard, U., Alonso-Alvarez, D., Amin-Akhlaghi, Z., Der Maur, M.A., Beattie, N., Bednar, N., Berland, K., Birner, S. and Califano, M., Multiscale in modelling and validation for solar photovoltaics. EPJ Photovoltaics, 9, p.10, 2018, 2018

648. Ormanova, M., Petrov, P., Kovacheva, D.. Electron beam surface treatment of tool steels. Vacuum, 135, Pergamon, 2017, ISSN:0042-207X, DOI:10.1016/j.vacuum.2016.10.022, 7-12. ISI IF:1.53

Цитира се в:

2254. Wei, Deqiang, et al. "Surface modification of 5CrMnMo steel with continuous scanning electron beam process." Vacuum 149 (2018) 118-123., 2018 Линк

2255. Fu, Yulei, et al. "Characterization of High-current Pulsed Electron Beam Interaction with AISI 1045 Steel and the Microstructure Evolution." Procedia CIRP 68 (2018): 196-199., 2018 Линк

2256. Fu, Yulei, et al. "Surface modification of AISI 1045 steel by pseudospark based pulsed electron beam." Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 434 (2018): 88-92., 2018 Линк

Page 146: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 146/154

649. Koseva, I., Ivanov, V., Simanovskiy, D., Marychev, M., Andreev, P., Tzvetkov, P., Nikolov, V.. Ca2GeO4:Cr4+ transparent nano-glass ceramics. Journal of Non-Crystalline Solids, 456, 2017, DOI:http://dx.doi.org/10.1016/j.jnoncrysol.2016.11.003, 76-82. ISI IF:1.825

Цитира се в:

2257. Liu, Xiaofeng, et al. "Transparent glass-ceramics functionalized by dispersed crystals." Progress in Materials Science (2018)., 2018 Линк

650. Gyurov, S., Marinkov, N., Kostova, Y., Rabadjieva, D., Kovacheva, D., Tzvetkova, C.,, Gentscheva, G., Penkov, I.. Technological scheme for copper slag processing. International Journal of Mineral Processing, 158, Elsevier, 2017, ISSN:0301-7516, DOI:10.1016/j.minpro.2016.11.008, 1-7. SJR:0.852, ISI IF:1.617

Цитира се в:

2258. Zhengqi Guo, Deqing Zhu, Jian Pan, Feng Zhang, (2018) Innovative methodology for comprehensive and harmless utilization of waste copper slag: Preparing crude Fe-Ni-Cu alloy for wreathing steel by selective co-reduction with nickel laterite ore, Journal of Cleaner Production, 187, 910-922, 2018, 2018 Линк

2259. Ankit Patadia, Aditya Chaturvedi, Bhavik Daxini (2018) “Experimental Investigation on High Strength Concrete Containing Copper Slag”, International Journal for Scientific Research & Development (IJSRD) 6 (3) 358-362, 2018, 2018 Линк

2260. Ludwig M., E. Śnieżek and J. Szczerba, Decomposition of zirconia-mullite material in contact with copper slag, 6th Dresden Nanoanalysis Symposium “Materials challenges for automotive industry –Micro- and nanoscale characterization” Abstract booklet 37pp, August 31, Dresden, Germany, 2018, 2018 Линк

2261. Yu, Qi. Metal Recovery from Steelmaking Slag. Diss. 2018., 2018 Линк

2262. Potysz, Anna, Eric D. van Hullebusch, and Jakub Kierczak. "Perspectives regarding the use of metallurgical slags as secondary metal resources–a review of bioleaching approaches." Journal of environmental management 219, pp. 138-152, 2018, 2018 Линк

651. Lazarova. Ts., Georgieva, M., Tzankov, D., Voykova, D., Aleksandrov, L., Cherkezova-Zheleva, Z., Kovacheva, D.. Influence of the type of fuel used for the solution combustion synthesis on the structure, morphology and magnetic properties of nanosized NiFe2O4. 700, Journal of Alloys and Compounds, 2017, ISSN:0925-8388, DOI:10.1016/j.jallcom.2017.01.055, 272-283. ISI IF:3.779

Цитира се в:

2263. Sendhilnathan, S., P. Iyyappa Rajan, and T. Adinaveen. "Synthesis and Characterization of NiFe 2 O 4 Nanoparticles for the Enhancement of Direct Sunlight Photocatalytic Degradation of Methyl Orange." Journal of Superconductivity and Novel Magnetism 31.10 (2018): 3315-3322., 2018 Линк

2264. Feyzi, Mostafa, et al. "Kinetic and equilibrium isotherms of removal malachite green from aqueous solution by using Fe3O4 SiO2-CPTS magnetic nanoparticles.", 2018 Линк

2265. Tong, S.-K., P.-W. Chi, S.-H. Kung, and D.-H. Wei. “Tuning bandgap and surface wettability of NiFe2 O4 driven by phase transition”. Scientific Reports 8.1 (2018): 1338., 2018 Линк

2266. Hirthna, S. Sendhilnathan, P.I. Rajan, and T. Adinaveen. “Synthesis and Characterization of NiFe2 O4 Nanoparticles for the Enhancement of Direct Sunlight Photocatalytic Degradation of Methyl Orange”. Journal of Superconductivity and Novel Magnetism 31. 10 (2018): 3315., 2018 Линк

2267. Bajac, B., M. Milanovic, Z. Cvejic, A. Lanculescu, P. Postolached, L. Mitoseriu, and V.V.Srdic. “Magnetic properties of multilayer BaTiO3 /NiFe2 O4 thin films prepared by solution deposition technique”. Ceramics International 44. 13 (2018): 15965., 2018 Линк

2268. Xia, J., Y. Ning, Y. Luo, W. Chen, X. Wu, W. Wu, Q. Li, and K. Li. “Structural and magnetic properties of soft/hard NiFe2 O4 SrCo0.2 Fe11.8 O19 core/shell composite prepared by the ball-milling-assisted ceramic process”. Journal of Materials Science: Materials in Electronics 29. 16 (2018):13903., 2018 Линк

2269. Asghar, G., M. Riaz, S.N. Khusro, M. Rashid, M. S. Awan, G. H. Tariq, F. Shabir, and M.A. Ur Rehman. “Effect of Co-Sm substitution on nickel ferrite synthesized by wows sol-gel method”. Journal of Ovonic Research 14. 4 (2018): 317., 2018 Линк

2270. Pourgolmohammad, B., S.M. Masoudpanah, and M.R. Aboutalebi. “Cation distribution tuning of solution combusted CoFe2 O4 powders”. Iranian Journal of Materials Science and Engineering 15. 2 (2018): 67., 2018 Линк

2271. Hamedani, F.N., S., S.M. Masoudpanah, M.S. Bafghi, and N. A. Baloochi. “Solution combustion synthesis of CoFe2 O4 powders using mixture of CTAB and glycine fuels”. Journal of Sol-Gel Science and Technology 86. 3 (2018): 743., 2018 Линк

2272. Deganello, F., and A.K. Tyagi. “Solution combustion synthesis, energy and environment: Best parameters for better materials”. Progress in Crystal Growth and Characterization of Materials 64. 2 (2018): 23., 2018 Линк

2273. Pavlova, J. A., A. V. Ivanov, N. V. Maksimova, K. V. Pokholok, A. V. Vasiliev, A. P .Malakho, and V.V. Avdeev. “Two-stage preparation of magnetic sorbent based on exfoliated graphite with ferrite phases for sorption of oil and liquid hydrocarbons from the water surface”. Journal of Physics and Chemistry of Solids 116 (2018): 299., 2018 Линк

2274. Leal, E., J. Dantas, P.L. de Oliveira, L.S. Conrado, and A.C.F.M. Costa. “Evaluation of the formation of the hybrid NiFe2 O4 SiO2 and its performance in the immobilization of GOx | [Avaliação da formação do híbrido NiFe2 O4 SiO2 e sua performance na imobilização da GOX]”. Revista Materia 23. 1 (2018): e-11948., 2018 Линк

Page 147: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 147/154

2275. Naserifar, M., S. M. Msoudpanah, and S. Alamolhoda. “Effect of fuel content on structural and magnetic properties of solution combusted Mn0.8Zn0.2Fe2O4 powders”. Journal of Ultrafine Grained and Nanostructured Materials 51. 1 (2018): 26., 2018 Линк

652. Driscoll, D., Tang, W., Burrows, S., Panayotov, D., Neurock, M., McEntee, M., Morris, J.. Binding Sites, Geometry, and Energetics of Propene at Nanoparticulate Au/TiO2. The Journal of Physical Chemistry C, 121, 3, ACS Publications, 2017, DOI:10.1021/acs.jpcc.6b10997, 1683-1689. ISI IF:4.536

Цитира се в:

2276. Ji, J.; Lu, Z.; Lei, Y.; Turner, C. H., "Mechanistic insights into the direct propylene epoxidation using Au nanoparticles dispersed on TiO2/SiO2". Chemical Engineering Science 2018, 191, 169-182; DOI: 10.1016/j.ces.2018.06.064, 2018 Линк

2277. Ulrich, V.; Froese, C.; Moroz, B.; Pyrjaev, P.; Gerasimov, E.; Sinev, I.; Cuenya, B. R.; Muhler, M.; Bukhtiyarov, V.; Grünert, W., "Three-way catalysis with supported gold catalysts: Poisoning effects of hydrocarbons". Applied Catalysis B: Environmental 2018, 237, 1021-1032; DOI: 10.1016/j.apcatb.2018.06.063, 2018 Линк

2278. Ji, J.; Lu, Z.; Lei, Y.; Turner, C., "Theoretical Studies on the Direct Propylene Epoxidation Using Gold-Based Catalysts: A Mini-Review". Catalysts 2018, 8 (10), 421; DOI: 10.3390/catal8100421, 2018 Линк

653. Panayotov, D., Frenkel, A., Morris, J.. Catalysis and Photocatalysis by Nanoscale Au/TiO2: Perspectives for Renewable Energy. ACS Energy Letters, 2, ACS Publications, 2017, DOI:10.1021/acsenergylett.7b00189, 1223-1231. ISI IF:1

Цитира се в:

2279. Zhu, X.; Keshavarz Hedayati, M.; Raza, S.; Levy, U.; Mortensen, N. A.; Kristensen, A., "Digital resonant laser printing: Bridging nanophotonic science and consumer products". (2018) Nano Today 19, 7-10., 2018 Линк

2280. MA Abbas, PV Kamat, JH Bang. "Thiolated gold nanoclusters for light energy conversion", ACS Energy Lett., 2018, 3 (4), 840–854; DOI: 10.1021/acsenergylett.8b00070, 2018 Линк

2281. Mosleh, S.; Rahimi, M. R.; Ghaedi, M.; Asfaram, A.; Jannesar, R.; Sadeghfar, F., "A rapid and efficient sonophotocatalytic process for degradation of pollutants: Statistical modeling and kinetics study" Journal of Molecular Liquids 2018, 261, 291-302; DOI: 10.1016/j.molliq.2018.03.115, 2018 Линк

2282. Wan, W.; Nie, X.; Janik, M. J.; Song, C.; Guo, X., Adsorption. "Dissociation, and Spillover of Hydrogen over Au/TiO2 Catalysts: The Effects of Cluster Size and Metal–Support Interaction from DFT"; The Journal of Physical Chemistry C 2018, 122 (31), 17895-17916; DOI: 10.1021/acs.jpcc.8b05482, 2018 Линк

2283. Samuel, J. J.; Beh, K. P.; Cheong, Y. L.; Yusuf, W. A. A.; Yam, F. K., "Novel bamboo structured TiO2 nanotubes for energy storage/production applications". Journal of Physics: Conference Series 2018, 995 (1), 012054; DOI: 10.1088/1742-6596/995/1/012054, 2018 Линк

2284. Wang, M.; Gönüllü, Y.; Pyeon, M.; Diao, Z.; Czympiel, L.; Singh, M.; Shen, S.; Mathur, S., "Trace Amount of Platinum Supported on Carbonized Biomorphic Wood for Efficient Electrochemical Hydrogen Evolution in Alkaline Condition". ChemistrySelect 2018, 3 (7), 2140-2143; DOI: 10.1002/slct.201702959, 2018 Линк

2285. Sarmah, K.; Roy, U. K.; Maji, T. K.; Pratihar, S., "Role of Metal Exchange toward the Morphology and Photocatalytic Activity of Cu/Ag/Au-Doped ZnO: A Study with a Zinc–Sodium Acetate Complex as the Precursor". ACS Applied Nano Materials 2018, 1 (5), 2049-2056; DOI: 10.1021/acsanm.8b00436, 2018 Линк

2286. Shuang, S.; Zhang, Z., "The Effect of Annealing Treatment and Atom Layer Deposition to Au/Pt Nanoparticles-Decorated TiO2 Nanorods as Photocatalysts". Molecules 2018, 23 (3), 525; DOI: 10.3390/molecules23030525, 2018 Линк

2287. Muñoz-Santiburcio, D.; Farnesi Camellone, M.; Marx, D., "Solvation-Induced Changes in the Mechanism of Alcohol Oxidation at Gold/Titania Nanocatalysts in the Aqueous Phase versus Gas Phase". Angewandte Chemie 2018, 130 (13), 3385-3389; DOI: 10.1002/ange.201710791, 2018 Линк

2288. Kashiwaya, S.; Aymonier, C.; Majimel, J.; Olivier, C.; Klein, A.; Jaegermann, W.; Toupance, T., "Supercritical CO2-assisted deposition of NiO on (101)-anatase-TiO2 for efficient facet engineered photocatalysts". New Journal of Chemistry 2018, 42 (23), 18649-18658; DOI: 10.1039/C8NJ04292F, 2018 Линк

2289. Singha, K.; Mondal, A.; Ghosh, S. C.; Panda, A. B., "Visible-light-driven Efficient Photocatalytic Reduction of Organic Azides to Amines over CdS Sheet–rGO Nanocomposite". Chemistry – An Asian Journal 2018, 13 (3), 255-260; DOI: 10.1002/asia.201701614, 2018 Линк

2290. Marques Mota, F.; Nguyen, D. L. T.; Lee, J.-E.; Piao, H.; Choy, J.-H.; Hwang, Y. J.; Kim, D. H., "Toward an Effective Control of the H2 to CO Ratio of Syngas through CO2 Electroreduction over Immobilized Gold Nanoparticles on Layered Titanate Nanosheets". ACS Catalysis 2018, 8 (5), 4364-4374; DOI: 10.1021/acscatal.8b00647, 2018 Линк

2291. Vinesh, V.; Shaheer, A. R. M.; Neppolian, B., "Reduced graphene oxide (rGO) supported electron deficient B-doped TiO2 (Au/B-TiO2/rGO) nanocomposite: An efficient visible light sonophotocatalyst for the degradation of Tetracycline (TC)". Ultrasonics Sonochemistry 2019, 50, 302-310; DOI: 10.1016/j.ultsonch.2018.09.030, 2018 Линк

2292. Barbosa, E. C. M.; Fiorio, J. L.; Mou, T.; Wang, B.; Rossi, L. M.; Camargo, P. H. C., "Reaction Pathway Dependence in Plasmonic Catalysis: Hydrogenation as a Model Molecular Transformation". Chemistry – A European Journal 2018, 24 (47), 12330-12339; DOI: 10.1002/chem.201705749, 2018 Линк

2293. Kamat, P. V.; Hartland, G. V., "Plasmons for Energy Conversion". ACS Energy Letters 2018, 3 (6), 1467-1469, 2018 Линк

Page 148: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 148/154

654. Grabchev, I., Yordanova, S., Bosch, P., Vasileva-Tonkova, E., Kukeva, R., Stoyanov, S., Stoyanova, R.. Structural characterization of 1, 8-naphthalimides and in vitro microbiological activity of their Cu (II) and Zn (II) complexes. Journal of Molecular Structure, 1130, Elsevier, 2017, 974-983. ISI IF:2.011

Цитира се в:

2294. Oliveira, Verônica da Silva "Estudo do sistema Fe-cyclam com ligantes carboxilatos e avaliação do efeito spin crossover e atividade antibacteriana do complexo (Fe(cyclam)ox)PF6" UNIVERSIDADE FEDERAL DO RIO GRANDE DO NORTE CENTRO DE CIÊNCIAS EXATAS E DA TER; INSTITUTO DE QUÍMIC, 2018 Линк

2295. Fernández-Alonso, S., Corrales, T., Pablos, J.L., Catalina, F "A Switchable fluorescence solid sensor for Hg2+detection in aqueous media based on a photocrosslinked membrane functionalized with (benzimidazolyl)methyl-piperazine derivative of 1, 8-naphthalimide". Sensors and Actuators, B: Chemical, 270, pp. 256-262, 2018, 2018 Линк

655. Benzaqui, M., Pillai, R.S, Sabetghadam, A., Benoit, V., Normand, P., Marrot, J., Menguy, N., Montero, D., Shepard, W., Tissot, A., Martineau-Corcos, Ch., Sicard, C., Mihaylov, M., Carn, F., Beurroies, I., Llewellyn, A. Ph.L., De Weireld, G., Hadjiivanov, K., Gascon, J., Kapteijn, F., Maurin, G., Steunou, N., Serre, Ch.. Revisiting the Aluminum Trimesate-Based MOF (MIL-96): From Structure Determination to the Processing of Mixed Matrix Membranes for CO2 Capture. Chemistry of Materials, 29, 24, 2017, DOI:10.1021/acs.chemmater.7b03203, 10326-10338. ISI IF:9.466

Цитира се в:

2296. A.A. Shamsabadi, H. Riazi and M. Soroush, in Current Trends and Future Developments on (Bio-) Membranes: Carbon Dioxide Separation/Capture by Using Membranes (A. Basile and E.P. Favvas, Eds.), Elsevier, Amsterdam, 2018, p. 103 [GB]., 2018

2297. H. Wang, Y. Duan, Z. Ying and Y. Xue, Effects of SO2 on Hg Adsorption by Activated Carbon in O2/CO2 Conditions. Part 1: Experimental and Kinetic Study, Energy & Fuels 2018 32 (10), 10773-10778, DOI: 10.1021/acs.energyfuels.8b02295, 2018 Линк

2298. J. Poater, M. Gimferrer and A. Poater, Covalent and Ionic Capacity of MOFs To Sorb Small Gas Molecules, Inorganic Chemistry 2018 57 (12), 6981-6990, DOI: 10.1021/acs.inorgchem.8b00670, 2018 Линк

2299. Yuan, Y., You, H., Ricardez-Sandoval, L., Recent advances on first-principles modeling for the design of materials in CO2 capture technologies, Chinese Journal of Chemical Engineering, 2018/11/10/1004-9541, DOI - https://doi.org/10.1016/j.cjche.2018.10.017, 2018 Линк

2300. Z.-W. Mo, H.-L. Zhou, J.-W. Ye, D.-D. Zhou, P.-Q. Liao, W.-X. Zhang and J.-P. Zhang, Tuning Connectivity and Flexibility of Two Zinc-Triazolate-Carboxylate Type Porous Coordination Polymers, Crystal Growth & Design 2018 18 (5), 2694-2698, DOI: 10.1021/acs.cgd.8b00196, 2018 Линк

2301. Mónica Sagastuy-Breña, Paulo G. M. Mileo, Elí Sánchez-González, Joseph E. Reynolds, III, Tamara Jurado-Vázquez, Jorge Balmaseda, Eduardo González-Zamora, Sabine Devautour-Vinot, Simon M. Humphrey, Guillaume Maurin and Ilich A. Ibarra, Humidity-induced CO2 capture enhancement in Mg-CUK-1, Dalton Trans., 2018, 47, 15827-15834 , 10.1039/C8DT03365J, 2018 Линк

2302. N. Prasetya, B. Donose and B. Ladewig, A new and highly robust light-responsive Azo-UiO-66 for highly selective and low energy post-combustion CO2 capture and its application in a mixed matrix membrane for CO2/N2 separation, J. Mater. Chem. A, 2018, 6, 16390-16402, 2018 Линк

2303. Ram R. R. Prasad, Daniel M. Dawson, Paul A. Cox, Sharon E. Ashbrook, Paul A. Wright, Matthew L. Clarke, A Bifunctional MOF Catalyst Containing Metal–Phosphine and Lewis Acidic Active Sites, Chemistry – A European Journal 24 (2018) https://doi.org/10.1002/chem.201803094, 2018 Линк

656. Schipper, F., Nayak, P., Erickson, E., Amalraj, S., Srur-Lavi, O., Penki, T., Talianker, M., Grinblat, J., Sclar, H., Breuer, O., Julien, C., Munichandraiah, N., Kovacheva, D., Dixit, M., Major, D., Markovsky, B., Aurbach, D.. Study of Cathode Materials for Lithium-Ion Batteries: Recent Progress and New Challenges. Inorganics, 5, 2, 2017, ISSN:2304-6740, DOI:10.3390/inorganics5020032, 32

Цитира се в:

2304. Evertz, M., Kröger, T.-N., Winter, M., Nowak, S. Total reflection X-ray fluorescence in the field of lithium ion batteries – Elemental detection in Lithium containing electrolytes using nanoliter droplets (2018) Spectrochimica Acta - Part B Atomic Spectroscopy, 149, pp. 118-123., 2018 Линк

2305. Pişkin, B., Savaş Uygur, C., Aydınol, M.K. Mo doping of layered Li (NixMnyCo1-x-y-zMz)O2 cathode materials for lithium-ion batteries (2018) International Journal of Energy Research, 42 (12), pp. 3888-3898., 2018 Линк

2306. Klinser, G., Stückler, M., Kren, H., Koller, S., Goessler, W., Krenn, H., Würschum, R. Charging processes in the cathode LiNi0.6Mn0.2Co0.2O2 as revealed by operando magnetometry (2018) Journal of Power Sources, 396, pp. 791-795., 2018 Линк

2307. Chakraborty, S., Banerjee, A., Watcharatharapong, T., Araujo, R.B., Ahuja, R. Current computational trends in polyanionic cathode materials for Li and Na batteries (2018) Journal of Physics Condensed Matter, 30 (28), art. no. 283003, ., 2018 Линк

2308. Beltrop, K., Klein, S., Nölle, R., Wilken, A., Lee, J.J., Köster, T.K.-J., Reiter, J., Tao, L., Liang, C., Winter, M., Qi, X., Placke, T. Triphenylphosphine Oxide as Highly Effective Electrolyte Additive for Graphite/NMC811 Lithium Ion Cells (2018) Chemistry of Materials, 30 (8), pp. 2726-2741., 2018 Линк

2309. Liu, Y., Sun, D., Zhou, J., Qin, Y., Wang, D., Guo, B. Isophorone Diisocyanate: An Effective Additive to Form Cathode-Protective-Interlayer and Its Influence on LiNi0.5Co0.2Mn0.3O2 at High Potential (2018) ACS Applied Materials and Interfaces, 10 (13), pp.

Page 149: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 149/154

11305-11310., 2018 Линк

2310. Zhang, H., Zhao, H., Khan, M.A., Zou, W., Xu, J., Zhang, L., Zhang, J. Recent progress in advanced electrode materials, separators and electrolytes for lithium batteries (2018) Journal of Materials Chemistry A, 6 (42), pp. 20564-20620., 2018 Линк

2311. Schmuch, Richard, et al. "Performance and cost of materials for lithium-based rechargeable automotive batteries." Nature Energy 3.4 (2018): 267., 2018 Линк

2312. Cococcioni, Matteo, and Nicola Marzari. "Energetics and cathode voltages of LiMPO $ _4 $ olivines (M = Fe, Mn) from extended Hubbard functionals." arXiv preprint arXiv:1811.06586 (2018)., 2018 Линк

2313. Liu, Guilong, et al. "Single-Crystalline Particles: An Effective Way to Ameliorate the Intragranular Cracking, Thermal Stability, and Capacity Fading of the LiNi0. 6Co0. 2Mn0. 2O2 Electrodes." Journal of The Electrochemical Society 165.13 (2018): A3040-A3047., 2018 Линк

2314. Shapira, Alon, et al. "A Robust AlF3 ALD Protective Coating on LiMn1. 5Ni0. 5O4 Particles-An Advanced Li-ion Battery Cathode Material Powder." ACS Applied Energy Materials (2018)., 2018 Линк

2315. Liu Haowen, et al. "Comparison of ternary cathode materials and different precipitants prepared by oxalic acid coprecipitation method." Journal of South-Central University for Nationalities (Natural Science Edition) 37.2 (2018): 16-19., 2018 Линк

2316. Deng Xukun, et al. "Effects of Polygonatum Polysaccharide on Immunosuppression Induced by Cyclophosphamide in Mice." Journal of South-Central University for Nationalities (Natural Science Edition) 37.2 (2018)., 2018 Линк

2317. Mussa, Abdilbari Shifa. Durability Aspects of Fast Charging, Mechanical Constraint, and Inhomogeneity in Lithium-Ion Batteries. Diss. KTH Royal Institute of Technology, 2018., 2018 Линк

2318. Hausbrand, René. "Trendbericht Physikalische Chemie: Elektronenspektroskopie an Lithiumionenbatterien." Nachrichten aus der Chemie 66.3 (2018): 299-303., 2018 Линк

2319. Xiao, Bin, et al. "Effect of MgO and TiO2 Coating on Electrochemical Performance of Li‐Rich Cathode Materials for Lithium‐ion Batteries." Energy Technology., 2018 Линк

657. Eysseltova , J, Zbranek V., Skripkin M.Y., Sawada K., Tepavitcharova S.. IUPAC-NIST solubility data series. 89. alkali metal nitrates. part 2. sodium nitrate. Journal of Physical and Chemical Reference Data, 46, 013103, AIPPublishing, 2017, DOI:https://doi.org/10.1063/1.4972807, ISI IF:3.51

Цитира се в:

2320. Ren, M., Dang, Y., Fei, D., Wu, C., Zhang, S., Han, X. "Phase Equilibria of the Na+, NH4 +//SO4 2-, NO3 --H2 O Quaternary System at 303.15 and 323.15 K"Journal of Chemical and Engineering Data 63(5), pp. 1435-1442, 2018, 2018 Линк

2321. Kumbhani, S., Longin, T., Wingen, L.M., Kidd C, Perraud, V., Finlayson-Pitts, B.J. "New Mechanism of Extractive Electrospray Ionization Mass Spectrometry for Heterogeneous Solid Particles " Analytical Chemistry 90(3), pp. 2055-2062, 2018, 2018 Линк

2322. Hoock, P., Pöllinger, S., Kronauer, A., Laudahn, M., Weiss, C. "PCM in a fridge/freezer combination – A challenging PCM application ", Refrigeration Science and Technology, pp. 301-308, 2018, 2018 Линк

658. Dikovska, A.Og., Pallotti, D., Lettieri, S., Atanasova, G. B., Avdeev, G. V., Maddalena, P., Amoruso, S., Nedyalkov, N.N.. Growth mechanism of ZnO nanostructures produced by ultraviolet and visible laser ablation. Applied Surface Science, 423, Elsevier, 2017, ISSN:0169-4332, 977-982. SJR:0.951, ISI IF:3.387

Цитира се в:

2323. Salah, M., Azizi, S., Boukhachem, A., (...), Amlouk, M., Lamloumi, J., Effects of lithium doping on: microstructure, morphology, nanomechanical properties and corrosion behaviour of ZnO thin films grown by spray pyrolysis technique, 2018, Journal of Materials Science: Materials in Electronics, , 2018

2324. Fiaschi, G., Mirabella, S., Franzò, G., (...), Komem, Y., Shacham-Diamand, Y., Effect of laser annealing on ZnO nanorods grown by chemical bath deposition on flexible substrate, Applied Surface Science, 458, 2018, pp. 800-804, 2018

2325. Ganesh, R.S., Mani, G.K., Elayaraja, R., (...), Muthamizhchelvan, C., Hayakawa, Y. Surfactant free controllable synthesis of 2D – 1D ZnO hierarchical nanostructure and its gas sensing properties, Applied Surface Science 449, 2018, pp. 838-845, 2018

2326. Sang, D., Wang, Q., Wang, Q., (...), Fan, Q., Li, H. , Improved electrical transport properties of an n-ZnO nanowire/p-diamond heterojunction, , RSC Advances, 8(50), 2018 pp. 28804-28809, 2018

659. Stanchovska, S., Markov, P., Tenchev, K., Stoyanova, R., Zhecheva, E., Naydenov, A.. Preparation and characterization of palladium containing nickel–iron–cobalt perovskite catalysts for the complete oxidation of C1–C6 alkanes. Reaction Kinetics, Mechanisms and Catalysis, 122, 1, Springer, 2017, DOI:10.1007/s11144-017-1278-8, 1-12. ISI IF:1.515

Цитира се в:

2327. Hu, S., Qu, Z., Jiang, H., Liu, Y., Chen, R. "Selective phenol hydrogenation to cyclohexanone over Pd N-doped porous carbon: role of storage under air of recovered catalyst". Reaction Kinetics, Mechanisms and Catalysis, 125 (2), pp. 605-617, 2018, 2018 Линк

660. Nikov, Ru. G., Dikovska, A. Og., Nedyalkov, N. N., Atanasov, P. A., Atanasova, G., Hirsch, D., Rauschenbach, B.. ZnO nanostructures produced by pulsed laser deposition in open air. Applied Physics A: Materials Science & Processing, 123, Springer Berlin Heidelberg, 2017,

Page 150: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

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ISSN:0947-8396 (Print) 1432-0630 (Online), DOI:10.1007/s00339-017-1276-8, 657. SJR:0.509, ISI IF:1.455

Цитира се в:

2328. Gopalakrishnan, S., Shankar, R., Kolandaivel, P., DFT/TD-DFT study on the electronic and spectroscopic properties of hollow cubic and hollow spherical (ZnO)mquantum dots interacting with CO, NO2and SO3molecules, Applied Physics A: Materials Science and Processing, 124(3), 2018, 280, 2018

2329. A. Vlad, R. Birjega, I. TircaA. Matei, C. C. Mardare, A. W. Hassel, A. Nedelcea, M. Dinescu, R. Zavoianu, Pulsed laser deposition of functionalized Mg–Al layered double hydroxide thin films, Applied Physics A 124.2 (2018): 152., 2018

661. Popova, M., Szegedi, Á., Lazarova, H., Dimitrov, M., Kalvachev, Y., Atanasova, G., Ristić, A., Wilde, N., Gläser, R.. Influence of the preparation method of sulfated zirconia nanoparticles for levulinic acid esterification. Reaction Kinetics, Mechanisms and Catalysis, 120, 1, Springer Netherlands, 2017, ISSN:18785190, DOI:10.1007/s11144-016-1088-4, 55-67. SJR:0.394, ISI IF:1.265

Цитира се в:

2330. Ma, Z., Meng, X., Liu, N., Yang, C., Shi, L., Preparation, Characterization, and Isomerization Catalytic Performance of Palladium Loaded Zirconium Hydroxide/Sulfated Zirconia, Industrial and Engineering Chemistry Research 57(43), pp. 14377-14385, 2018, 2018

2331. Szabó, R., Lente, G., Full analytical solution of a nucleation-growth type kinetic model of nanoparticle formation, Journal of Mathematical Chemistry https://doi.org/10.1007/s10910-018-0975-5, (2018)., 2018

662. Georgieva, I., Trendafilova, N., Dodoff, N., Kovacheva, D.. DFT study of the molecular and crystal structure and vibrational analysis of cisplatin. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 176, 5, Elsevier, 2017, DOI:dx.doi.org/10.1016/j.saa.2017.01.008, 58-66. ISI IF:2.653

Цитира се в:

2332. Schmid, M.H., Das, A.K., Landis, C.R., Meuwly, M., Multi-State VALBOND for Atomistic Simulations of H ypervalent Molecules, Metal Complexes, and Reactions, 2018, Journal of Chemical Theory and Computation, 14(7), pp. 3565-3578., 2018 Линк

663. Nikolov, A. S., Balchev, I. I., Nedyalkov, N.N., Kostadinov, I. K., Karashanova, D. B., Atanasova, G. B.. Influence of the laser pulse repetition rate and scanning speed on the morphology of Ag nanostructures fabricated by pulsed laser ablation of solid target in water. Applied Physics A: Materials Science & Processing, 123, Springer Berlin Heidelberg, 2017, ISSN:0947-8396 (Print) 1432-0630 (Online), 719. SJR:0.509, ISI IF:1.455

Цитира се в:

2333. Xu, X., Gao, L., Duan, G. The fabrication of Au C Core/Shell nanoparticles by laser ablation in solutions and their enhancements to a gas sensor, Micromachines, 2018, 9(6), 278, 2018

664. Mileva, A., Issa, G., Henych, J., Štengl, V., Kovacheva, D., Tsoncheva, T.. CeO2 and TiO2 obtained by urea assisted homogeneous hydrolyses method as catalysts for environmental protection: Effect of Ti/Ce ratio. Bulgarian Chemical Communications,, 49, Special Issue A, 2017, ISSN:0324-1130, 77-83. ISI IF:0.238

Цитира се в:

2334. Italiano, C., et al. "High specific surface area supports for highly active Rh catalysts: Syngas production from methane at high space velocity." International Journal of Hydrogen Energy 43.26 (2018): 11755-11765., 2018 Линк

665. Akhtar, M., Alharthi, A. I., Alotaibi, M. A., Trendafilova, N., Georgieva, I., Tahir, M. N., Mazhar, M., Isab, A. A., Ahmad, S.. Synthesis, X-ray Structure, Spectroscopic (IR, NMR) Analysis and DFT Modeling of a New Polymeric Zinc(II) Complex of Cystamine, [Zn(Cym-Cym)Cl2]n. Polyhedron, 122, Elsevier, 2017, DOI:http://dx.doi.org/10.1016/j.poly.2016.11.017, 105-115. ISI IF:2.108

Цитира се в:

2335. Asadizadeh, S., Amirnasr, M., Fadaei Tirani, F., Mansouri, A., Schenk, K., DNA-BSA interaction, cytotoxicity and molecular docking of mononuclear zinc complexes with reductively cleaved N2S2Schiff base ligands (2018) Inorganica Chimica Acta, 483, pp. 310-320., 2018 Линк

2336. Ferranco, A., Sun, K., Udaipaul, T., Kraatz, H.-B., Metal Coordination to Unsymmetric 1, n′-Disubstituted Ferrocene Histidine Peptides (2018) European Journal of Inorganic Chemistry, 2018 (27), pp. 3213-3223., 2018 Линк

666. Stefanović I, Špírková, M, Ostojić, S., Stefanov, P., Pavlović V., Pergal M.. Montmorillonite/poly(urethane-siloxane) nanocomposites: Morphological, thermal, mechanical and surface properties. Applied Clay Science, 149, Elsevier, 2017, ISSN:01691317, DOI:10.1016/j.clay.2017.08.021, 136-146. SJR:0.892, ISI IF:3.641

Цитира се в:

2337. Babu, S.S., Kalarikkal, N., Thomas, S., Radhakrishnan, E.K. Enhanced antimicrobial performance of cloisite 30B/poly (ε-caprolactone) over cloisite 30B/poly (L-lactic acid) as evidenced by structural features (2018) Applied Clay Science, 153, pp. 198-204., 2018 Линк

Page 151: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 151/154

2338. Adak, B., Butola, B.S., Joshi, M. Effect of organoclay-type and clay-polyurethane interaction chemistry for tuning the morphology, gas barrier and mechanical properties of clay/polyurethane nanocomposites (2018) Applied Clay Science, 161, pp. 343-353., 2018 Линк

2339. Li, Y., Tian, G., Dong, G., Bai, S., Han, X., Liang, J., Meng, J., Zhang, H. Research progress on the raw and modified montmorillonites as adsorbents for mycotoxins: A review (2018) Applied Clay Science, 163, pp. 299-311, 2018 Линк

667. Tsoncheva, T., Mileva, A., Issa, G., Dimitrov, M., Kovacheva, D., Henych, J., Scotti, N., Kormunda, M., Atanasova, G., Štengl, V.. Template-assisted hydrothermally obtained titania-ceria composites and their application as catalysts in ethyl acetate oxidation and methanol decomposition with a potential for sustainable environment protection. Applied Surface Science, 396, Elsevier, 2017, ISSN:0169-4332, DOI:http://dx.doi.org/10.1016/j.apsusc.2016.11.146, 1289-1302. SJR:0.93, ISI IF:3.15

Цитира се в:

2340. Ahmadi, N., Nemati, A., Bagherzadeh, M., Synthesis and properties of Ce-doped TiO2-reduced graphene oxide nanocomposite, Journal of Alloys and Compounds, 742, 2018, pp. 986-995, 2018 Линк

2341. Meng Wang, Mei-Fang Wang, Yi-Ming Wang, Ji-Wei Shen, Zhi-Ying Wang, Han Gao, Li-Li Wang and Xiangyuan Ouyang, DNA assisted synthesis of CeO2 nanocrystals with enhanced peroxidase-like activity, Cryst Eng Comm, 2018, 20, 4075-4079, 2018 Линк

668. Marinova, D., Zhecheva, E., Kukeva, R., Markov, P., Nihtianova, D., Stoyanova, R.. Mixed sodium nickel-manganese sulfates: Crystal structure relationships between hydrates and anhydrous salts. Journal of Solid State Chemistry, 250, Elsevier, 2017, ISSN:0022-4596, DOI:10.1016/j.jssc.2017.03.015, 49-59. SJR:0.703, ISI IF:2.265

Цитира се в:

2342. Driscoll, L. L., et all "Investigation into the dehydration of selenate doped Na2M(SO4)2·2H2O (M = Mn, Fe, Co and Ni): Stabilisation of the high Na content alluaudite phases Na3M1.5(SO4 3-1.5x(SeO4)1.5 x (M = Mn, Co and Ni) through selenate incorporation". Journal of Solid State Chemistry, (2018) 258, 64-71., 2018 Линк

669. Koseva, I., Tzvetkov, P., Ivanov, P., Yordanova, A., Nikolov, V.. Terbium and europium co-doped NaAlSiO4 nano glass-ceramics for LED application. Optik, 137, 2017, DOI:https://doi.org/10.1016/j.ijleo.2017.02.098, 45-50. ISI IF:1.191

Цитира се в:

2343. Yuan, Li, Jianwang He, and Zhulang Qiu. "Hydrothermal Synthesis of Tb2 (WO4) 3: Eu 3 Phosphors with Controllable Morphology and Multicolor Tunable Luminescence." (2018)., 2018 Линк

670. Kalapsazova, M., Zhecheva, E, Tyuliev, G., Nihtianova, D., Mihaylov, L., Stoyanova, R.. Effects of the Particle Size Distribution and of the Electrolyte Salt on the Intercalation Properties of P3-Na2/3Ni1/2Mn1/2O2. The Journal of Physical Chemistry C, 121, 11, ACS Publications, 2017, DOI:10.1021/acs.jpcc.6b12887, 5931-5940. ISI IF:4.536

Цитира се в:

2344. Lee, Y., Yoo, J.-K., Oh, Y., Park, H., Go, W., Myung, S.-T., Kim, J. Unexpectedly high electrochemical performances of a monoclinic Na2.4V2(PO4)3/conductive polymer composite for Na-ion batteries (2018) Journal of Materials Chemistry A, 6 (36), pp. 17571-17578., 2018 Линк

671. Kaur, A., Khanna, A., Aleksandrov, L.. Structural, thermal, optical and photo-luminescent properties of barium tellurite glasses doped with rare-earth ions. Journal of Non-Crystalline Solids, 476, 15, 2017, DOI:https://doi.org/10.1016/j.jnoncrysol.2017.09.025, 67-74. SJR:0.692, ISI IF:2.448

Цитира се в:

2345. Mohan, S., S. Kaur, P. Kaur, and D.P. Singh. “Spectroscopic investigations of Sm3+-doped lead alumino-borate glasses containing zinc, lithium and barium oxides”. Journal of Alloys and Compounds 763 (2018): 486., 2018 Линк

2346. Krishna, V.M., S. Mahamuda, R.A. Talewar, K. Swpna, M. Venkateswarlu, and A.S. Rao. “Dy3+ions doped oxy-fluoro boro tellurite glasses for the prospective optoelectronic device applications”. Journal of Alloys and Compounds 762 (2018): 814., 2018 Линк

2347. Sayyed, M.I., S.A.M. Issa, M. Büyükyıldız, and M. Dong. “Determination of nuclear radiation shielding properties of some tellurite glasses using MCNP5 code”. Radiation Physics and Chemistry 150 (2018): 1., 2018 Линк

2348. Kasprzyk, M., and M. Środa. “Influence of Gd2 O3 on thermal and spectroscopic properties of aluminosilicate glasses”. Journal of Molecular Structure 1161 (2018): 536., 2018 Линк

2349. Marzuki, A., and D.E. Fausta. “Physical and Optical Studies of Bi3+-Modified Erbium Doped Tellurite Glasses”. IOP Conference Series: Materials Science and Engineering 333. 1 (2018): 012015., 2018 Линк

672. Andonova, S., Ivanova, E., Yang, J., Hadjiivanov, K.. Adsorption Forms of CO2on MIL-53(Al) and MIL-53(Al)-OHxAs Revealed by FTIR Spectroscopy. Journal of Physical Chemistry C, 121, 34, 2017, ISSN:1932-7455, DOI:10.1021/acs.jpcc.7b05538, 18665-18673. ISI IF:4.536

Цитира се в:

Page 152: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 152/154

2350. Driscoll, D.M., Troya, D., Usov, P.M., Maynes, A.J., Morris, A.J., Morris, J.R. "Characterization of Undercoordinated Zr Defect Sites in UiO-66 with Vibrational Spectroscopy of Adsorbed CO". Journal of Physical Chemistry C 122 (2018) 14582-14589., 2018 Линк

2351. A.E.J. Hoffman, L. Vanduyfhuys, I. Nevjestic, J. Wieme, S.M.J. Rogge, H. Depauw, P. Van Der Voort, H. Vrielinck and V. Van Speybroeck, Elucidating the Vibrational Fingerprint of the Flexible Metal–Organic Framework MIL-53(Al) Using a Combined Experimental/Computational Approach, J. Phys. Chem. C, 2018, 122 (5), pp 2734–2746, 2018 Линк

2018

673. Konova, P., Naydenov, A., Nikolov, P., Kumar, N.. Low-temperature Ozone Decomposition, CO and Iso-propanol Combustion on Silver Supported MCM-41 and Silica. Journal of Porous Materials, 25, 5, Springer US, 2018, ISSN:1573-4854, DOI:https://doi.org/10.1007/s10934-017-0540-9, 1301-1308. SJR:0.5, ISI IF:1.858

Цитира се в:

2352. Girginov, Ch., Kozhukharov, S., Kiradzhiyska, D., Mancheva R., "Characterization of porous anodic alumina with AC-incorporated silver", Electrochimica Acta, 292 (2018) 614-627., 2018 Линк

674. Nesheva, Diana, Dzhurkov, Valeri, Stambolova, I., Blaskov, V., Bineva, Irina, Calderon Moreno, Jose Maria, Preda, Silviu, Gartner, Mariuca, Hristova-Vasileva, Temenuga, Shipochka, M.. Surface modification and chemical sensitivity of sol gel deposited nanocrystalline ZnO films. Materials Chemistry and Physics, 209, 2018, 165-171. SJR:0.651, ISI IF:2.084

Цитира се в:

2353. Facile fabrication of zinc oxide coated superhydrophobic and superoleophilic meshes for efficient oil/water separation, Zhang, Y., Wang, X., Wang, C., (...), Zhao, X., Fang, D. 2018 RSC Advances, 8(61), pp. 35150-35156, 2018

675. Koseva, I., Tzvetkov, P., Ivanov, P., Yordanova, A., Nikolov, V.. Some investigations on Tb3+ and Eu3+ doped Na2SiO3 as a material for LED application. Optik, 168, 1, 2018, DOI:https://doi.org/10.1016/j.ijleo.2018.04.113, 376-383. SJR:0.346, ISI IF:1.191

Цитира се в:

2354. Shi, Lei, et al. "Synthesis and photoluminescence properties of novel Ca2LaSbO6: Mn4+ double perovskite phosphor for plant growth LEDs." Ceramics International (2018)., 2018 Линк

676. Stoyanova-Ivanova, A.K., Terzieva, S.D., Georgieva, S.I., Blagoev, B.S., Kovacheva, D.G., Zaleski, A., Mikli, V.. Superconductivity and magnetic studies of bulk Y123/BaCuO2 composite. Romanian Journal of Physics, 63, 1-2 art. no. 602, 2018, ISSN:1221146X, 15. ISI IF:1.398

Цитира се в:

2355. Ingosi, Antony', Wafula, Henry', Sakwa Thomas', Kibe Horace. "Thermodynamic Properties Of YBCO-123 Superconducting Materials With S-Wave And P-Wave Singlet Admixture", Journal of Multidisciplinary Engineering Science and Technology, 2018, 5(10) 8790-8793., 2018 Линк

677. Bumstead, A. M., Cordes, D. B., Dawson , D. M., Chakarova, K., Mihaylov, M., Hobday, C., Düren, T., Hadjiivanov, K., Slawin, A., Ashbrook, S., Prasad, R., Wright, A.. Modulator‐Controlled Synthesis of Microporous STA‐26, an Interpenetrated 8,3‐Connected Zirconium MOF with the the‐iTopology, and its Reversible Lattice Shift. Chemistry – A European Journal, 20, 2018, 6115-6126. ISI IF:5.317

Цитира се в:

2356. S. J. Garibay, I. Iordanov, T. Islamoglu, J. B. DeCoste, O. K. Farha, "Synthesis and functionalization of phase-pure NU-901 for enhanced CO2 adsorption: the influence of a zirconium salt and modulator on the topology and phase purity", CrystEngComm, 20 (2018) 7066-7070., 2018 Линк

678. Grabchev, I., Vasileva-Tonkova, E., Staneva, D., Bosch, P., Kukeva, R., Stoyanova, R.. Synthesis, spectral characterization, and in vitro antimicrobial activity in liquid medium and applied on cotton fabric of a new PAMAM metallodendrimer. International Journal of Polymer Analysis and Characterization, 23, 1, Taylor & Francis, Inc., 2018, ISSN:1023-666X, DOI:10.1080/1023666X.2017.1387025, 45-57. ISI IF:1.333

Цитира се в:

2357. Zechel, S., Hager, M.D., Schubert, S., Manners, I., Schubert, U.S. "From Dendrimers to Macrocycles: 80 Years George R. Newkome—Milestones of a Gentleman Scientist". Macromolecular Chemistry and Physics, 219 (22), art. no. 1800269 (2018), 2018 Линк

679. Tsoncheva T., Mileva A., Tsyntsarski B., Paneva D., Spassova I., Kovacheva D., Velinov N., Karashanova D., Georgieva B., Petrov N.. Activated carbon from Bulgarian peach stones as a support of catalysts for methanol decomposition. Biomass and Bioenergy, 109, 2018, 135-146. ISI IF:3.358

Цитира се в:

2358. Alguacil, F., Alcaraz, L., García-Díaz, I., & López, F. (2018). Removal of Pb2+ in Wastewater via Adsorption onto an Activated

Page 153: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 153/154

Carbon Produced from Winemaking Waste. Metals, 8(9), 697., 2018

2359. Grycová, B., Pryszcz, A., Lestinsky, P., & Chamradova, K. (2018). Influence of potassium hydroxide and method of carbonization treatment in garden and corn waste microwave pyrolysis. Biomass and Bioenergy, 118, 40-45., 2018

2360. González-Domínguez, J. M., Fernández-González, M. C., Alexandre-Franco, M., & Gómez-Serrano, V. (2018). How does phosphoric acid interact with cherry stones? A discussion on overlooked aspects of chemical activation. Wood Science and Technology, 52(6), 1645-1669., 2018

2361. Kasperiski, F. M., Lima, E. C., Umpierres, C. S., dos Reis, G. S., Thue, P. S., Lima, D. R., ... & da Costa, J. B. (2018). Production of porous activated carbons from Caesalpinia ferrea seed pod wastes: Highly efficient removal of captopril from aqueous solutions. Journal of Cleaner Production, 197, 919-929, 2018

2362. ANDREIA CRISTINA FONSECA ALVES, AVALIAÇÃO DA REMOÇÃO DE BISFENOL-A POR ADSORÇÃO EM CARVÃO ATIVADO PRODUZIDO DA BORRA DE CAFÉ, Thesis 2018, UNIVERSIDADE FEDERAL DE GOIÁS ESCOLA DE ENGENHARIA CIVIL E AMBIENTAL PROGRAMA DE PÓS-GRADUAÇÃO EM ENGENHARIA AMBIENTAL E SANITÁRIA (PPGEAS), Brasil, 2018

2363. N. Stoeva, Наноразмерни и наноструктурирани композитни материали като катализатори и адсорбенти с екологично предназначениер PhD Thesis, 2018, 2018

680. Kostov-Kitin, V, Dyulgerova, E, Ilieva, R, Petkova, V. Powder x-ray diffraction studies of hydroxyapatite and β-TCP mixtures processed by haih energy dry milling. Ceramic International, 44, 7, Elsevier, 2018, ISSN:0272-8842, DOI:https://doi.org/10.1016/j.ceramint.2018.02.094, 8664-8671. SJR:0.78, ISI IF:3.057

Цитира се в:

2364. Ramkumar, T., Selvakumar, M., Vasanthsankar, R., Sathishkumar, A.S., Narayanasamy, P., Girija, G., Rietveld refinement of powder X-ray diffraction, microstructural and mechanical studies of magnesium matrix composites processed by high energy ball milling, Journal of Magnesium and Alloys, . DOI: 10.1016/j.jma.2018.08.002, 2018, 2018 Линк

681. Tsoncheva T, Mileva A, Marinov S, Paneva D, Velinov N, Spassova I, Kosateva A, Kovacheva D, Petrov N. Activated carbons from used motor oil as catalyst support for sustainable environmental protection. Microporous and Mesoporous Materials, 259, 2018, 9-16. ISI IF:3.615

Цитира се в:

2365. Патраков, Юрий Федорович, Светлана Александровна Семенова, and Михаил Симхович Клейн. "РАСШИРЕНИЕ СЫРЬЕВОЙ БАЗЫ ФЛОТОРЕАГЕНТОВ ЗА СЧЕТ ИСПОЛЬЗОВАНИЯ ОЗОНИРОВАННЫХ ОТРАБОТАННЫХ МОТОРНЫХ МАСЕЛ." Вестник Кузбасского государственного технического университета 1 (123) (2018)., 2018 Линк

2366. Semenova, S. A., Patrakov, Y. F., & Klein, M. S. (2018). Production of Flotation Agents for Coal Cleaning by the Oxidative Modification of Waste Motor Oils. Solid Fuel Chemistry, 52(4), 247-251., 2018

2367. Jiang, X., Xia, H., Zhang, L., Cheng, S., Zhang, Q., Chen, Q., Hu, W. Synthesis of copper-loaded activated carbon for enhancing the photocatalytic removal of methylene blue (2018) Journal of Molecular Liquids, 272, pp. 353-360., 2018

682. Todorova, S., Naydenov, A., Kolev, H., Ivanov, G., Ganduly, A., Mondal, S., Saha, S., Ganduli, A.K.. Reaction kinetics and mechanism of complete methane oxidation on Pd/Mn2O3 catalyst. Reaction Kinetics, Mechanisms and Catalysis, 123, 2, 2018, DOI:10.1007/s11144-018-1343-y, 585-605. ISI IF:1.515

Цитира се в:

2368. Cui, W., Li, S., Wang, D., Deng, Y., Chen, Y., High reactivity and sintering resistance of CH4 oxidation over modified Pd/Al2O3(2019) Catalysis Communications, 119, pp. 86-90., 2018 Линк

683. Ellie L. Uzunova. Theoretical study of nitrogen dioxide and nitric oxide co-adsorption and DeNOx reaction on Cu-SAPO-34 and Cu-SSZ-13 in presence of Brønsted acid sites. Molecular Catalysis, 447, Elsevier, 2018, ISSN:2468-8231, DOI:http://doi.org/10.1016/j.mcat.2018.01.003, 47-55. ISI IF:4.17

Цитира се в:

2369. Xiong, Y., Zhong, Q., Ou, M., Cai, W., Wan, S., Yu, Y., Zhang, S. Efficient Inhibition of N2O during NO Absorption Process Using a CuO and (NH4)2SO3 Mixed Solution (2018) Industrial and Engineering Chemistry Research, 57 (39), pp. 13010-13018, 2018 Линк

684. Nedyalkov, N., Stankova, N.E., Koleva, M.E., Nikolov, R., Grozeva, M., Yordanova, E., Yankov, G., Aleksandrov, L., Yordanova, R., Karashanova, D.. Optical properties modification of gold doped glass induced by nanosecond laser radiation and annealing. Optical Materials, 75, Elsevier, 2018, 646-653. ISI IF:2.32

Цитира се в:

2370. Fu, X., Y. Li, X. Li, R. Tian, L. Yin, and J. Zhang. “Laser bonding of glass and glass with constant temperature output”. Proceedings - 2018 19th International Conference on Electronic Packaging Technology, ICEPT 20188480752 (2018) 1084., 2018 Линк

2371. Aparimita, A., C. Sripan, R. Ganesan, S. Jena, and R. Naik. “Influence of thermal annealing on optical and structural properties change in Bi-doped Ge30 Se70 thin films”. Phase Transitions 91.8 (2018): 872., 2018 Линк

Page 154: €¦ · page 1/154 сички цитати Институт по обща и неорганична химия одина: 2018 рой цитирани публикации: 686

page 154/154

685. Rangelova, N., Aleksandrov, L., Nenkova, S.. Synthesis and characterization of pectin/SiO2 hybrid materials, Journal of Sol-Gel Science and Technology. Springer, 85, 2, Journal Sol-gel Science and Technology, 2018, 330-339. ISI IF:1.745

Цитира се в:

2372. Günter, E. A., P. A. Markov, A. K. Melekhin, V.S. Belozerov, E. A. Martinson, S. G. Litvinets, and S. V. Popov. “Preparation and release characteristics of mesalazine loaded calcium pectin-silica gel beads based on callus cultures pectins for colon-targeted drug delivery”. International Journal of Biological Macromolecules 120 (2018): 2225., 2018 Линк

2373. Zhao, S., O. Emery, A. Wohlhauser, M. M. Koebel, C. Adlhart, and W. J. Malfait. “Merging flexibility with superinsulation: Machinable, nanofibrous pullulan-silica aerogel composites”. Materials and Design 160 (2018): 294., 2018 Линк

686. Chakarova, V., Boiadjieva-Scherzer, Tz., Kovacheva, D., Kronberger, H., Monev, M.. Corrosion behaviour of electrodeposited Zn-Cr alloy coatings. CORROSION SCIENCE, 140, 2018, ISSN:0010-938X, DOI:10.1016/j.corsci.2018.06.019, 73-78. ISI IF:4.862

Цитира се в:

2374. Palaniappan, N., et al. "Praseodymium-decorated graphene oxide as a corrosion inhibitor in acidic media for the magnesium AZ31 alloy." RSC Advances 8.60 (2018): 34275-34286., 2018 Линк