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Публикации в базе данных Math-Net.Ru |
Цитирования |
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2025 |
| 1. |
S. A. Li, S. A. Novikova, I. A. Stenina, T. L. Kulova, A. M. Skundin, A. B. Yaroslavtsev, “Composite cathodes containing $\gamma$-sulfur and reduced graphene oxide for lithium–sulfur batteries”, Mendeleev Commun., 35:5 (2025), 560–562 |
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2024 |
| 2. |
S. A. Novikova, D. Yu. Voropaeva, S. A. Li, T. L. Kulova, A. M. Skundin, I. A. Stenina, A. B. Yaroslavtsev, “Composite cathode material based on sulfur and microporous carbon for Li–S batteries”, Mendeleev Commun., 34:4 (2024), 478–480 |
3
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| 3. |
Д. Ю. Воропаева, И. А. Стенина, А. Б. Ярославцев, “Твердые электролиты: на пути к повышению мощности литий-ионных аккумуляторов”, Усп. хим., 93:6 (2024), RCR5126 ; D. Yu. Voropaeva, I. A. Stenina, A. B. Yaroslavtsev, “Solid-state electrolytes: a way to increase the power of lithium-ion batteries”, Russian Chem. Reviews, 93:6 (2024), RCR5126 |
14
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2023 |
| 4. |
A. D. Manin, D. V. Golubenko, P. A. Yurova, A. B. Yaroslavtsev, “Improvement of Li/Mg monovalent ion selectivity of cation-exchange membranes by incorporation of cerium or zirconium phosphate particles”, Mendeleev Commun., 33:3 (2023), 365–367 |
7
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2022 |
| 5. |
D. Yu. Voropaeva, E. Yu. Safronova, S. A. Novikova, A. B. Yaroslavtsev, “Recent progress in lithium-ion and lithium metal batteries”, Mendeleev Commun., 32:3 (2022), 287–297 |
51
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| 6. |
E. Yu. Safronova, O. V. Korchagin, V. A. Bogdanovskaya, A. B. Yaroslavtsev, “Effect of ultrasonic treatment of Nafion® solution on the performance of fuel cells”, Mendeleev Commun., 32:2 (2022), 224–225 |
6
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2021 |
| 7. |
A. B. Yaroslavtsev, I. A. Stenina, “Current progress in membranes for fuel cells and reverse electrodialysis”, Mendeleev Commun., 31:4 (2021), 423–432 |
36
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| 8. |
С. П. Филиппов, А. Б. Ярославцев, “Водородная энергетика: перспективы развития и материалы”, Усп. хим., 90:6 (2021), 627–643 ; S. P. Filippov, A. B. Yaroslavtsev, “Hydrogen energy: development prospects and materials”, Russian Chem. Reviews, 90:6 (2021), 627–643 |
228
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2020 |
| 9. |
Д. Ю. Воропаева, С. А. Новикова, А. Б. Ярославцев, “Пoлимepныe элeктpoлиты для мeтaлл-иoнныx aккyмyлятopoв”, Усп. хим., 89:10 (2020), 1132–1155 ; D. Yu. Voropaeva, S. A. Novikova, A. B. Yaroslavtsev, “Polymer electrolytes for metal-ion batteries”, Russian Chem. Reviews, 89:10 (2020), 1132–1155 |
68
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2019 |
| 10. |
E. V. Polunin, Yu. E. Pogodina, I. A. Prikhno, A. B. Yaroslavtsev, “High pressure synthesis and transport properties of a perfluorinated sulfocationic exchange membrane”, Mendeleev Commun., 29:6 (2019), 661–662 |
8
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| 11. |
A. A. Lysova, I. I. Ponomarev, A. B. Yaroslavtsev, “Effect of the nature of functional groups grafted on the surface of silica nanoparticles on properties of the hybrid proton-conductive membranes based on N-phosphorylated polybenzimidazole”, Mendeleev Commun., 29:4 (2019), 403–404 |
13
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2018 |
| 12. |
I. A. Prikhno, K. A. Ivanova, G. M. Don, A. B. Yaroslavtsev, “Hybrid membranes based on short side chain perfluorinated sulfonic acid membranes (Inion) and heteropoly acid salts”, Mendeleev Commun., 28:6 (2018), 657–658 |
14
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2017 |
| 13. |
D. V. Golubenko, A. B. Yaroslavtsev, “New approach to the preparation of grafted ion exchange membranes based on UV-oxidized polymer films and sulfonated polystyrene”, Mendeleev Commun., 27:6 (2017), 572–573 |
20
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| 14. |
D. V. Golubenko, E. Yu. Safronova, A. B. Il'in, N. V. Shevlyakova, V. A. Tverskoi, G. Pourcelly, A. B. Yaroslavtsev, “Water state and ionic conductivity of grafted ion exchange membranes based on polyethylene and sulfonated polystyrene”, Mendeleev Commun., 27:4 (2017), 380–381 |
14
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| 15. |
R. R. Kapaev, A. A. Chekannikov, S. A. Novikova, T. L. Kulova, A. M. Skundin, A. B. Yaroslavtsev, “Activation of NaFePO<sub>4</sub> with maricite structure for application as a cathode material in sodium-ion batteries”, Mendeleev Commun., 27:3 (2017), 263–264 |
23
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2016 |
| 16. |
A. V. Parshina, E. Yu. Safronova, E. A. Ryzhkova, S. S. Chertov, D. V. Safronov, O. V. Bobreshova, A. B. Yaroslavtsev, “Effect of the treatment of MF-4SC membranes on the cross sensitivity of Donnan potential sensors to cations in the aqueous solutions of organic ampholytes”, Mendeleev Commun., 26:6 (2016), 505–507 |
6
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| 17. |
T. L. Kulova, Yu. M. Kreshchenova, A. A. Kuz'mina, A. M. Skundin, I. A. Stenina, A. B. Yaroslavtsev, “New high-capacity anode materials based on gallium-doped lithium titanate”, Mendeleev Commun., 26:3 (2016), 238–239 |
20
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| 18. |
D. Yu. Voropaeva, M. A. Moshareva, A. B. Il'in, S. A. Novikova, A. B. Yaroslavtsev, “Phase transitions and proton conductivity in hafnium hydrogen phosphate with the NASICON structure”, Mendeleev Commun., 26:2 (2016), 152–153 |
5
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| 19. |
А. Б. Ярославцев, “Основные направления разработки и исследования твердых электролитов”, Усп. хим., 85:11 (2016), 1255–1276 ; A. B. Yaroslavtsev, “Solid electrolytes: main prospects of research and development”, Russian Chem. Reviews, 85:11 (2016), 1255–1276 |
113
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2015 |
| 20. |
A. I. Svitan'ko, S. A. Novikova, T. L. Kulova, A. M. Skundin, A. B. Yaroslavtsev, “An improvement in the ionic conductivity and electrochemical characteristics of LiFePO<sub>4</sub> by heterogeneous doping with NASICON-type phosphate”, Mendeleev Commun., 25:3 (2015), 207–208 |
6
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| 21. |
E. Yu. Safronova, O. V. Bobreshova, W. Garcia-Vasquez, A. B. Yaroslavtsev, “Relationships between water uptake, conductivity and mechanical properties of hybrid MF-4SC membranes doped by silica nanoparticles”, Mendeleev Commun., 25:1 (2015), 54–55 |
12
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| 22. |
А. Б. Ярославцев, Т. Л. Кулова, А. М. Скундин, “Электродные наноматериалы для литий-ионных аккумуляторов”, Усп. хим., 84:8 (2015), 826–852 ; A. B. Yaroslavtsev, T. L. Kulova, A. M. Skundin, “Electrode nanomaterials for lithium-ion batteries”, Russian Chem. Reviews, 84:8 (2015), 826–852 |
92
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2014 |
| 23. |
A. B. Yaroslavtsev, Yu. P. Yampolskii, “Hybrid membranes containing inorganic nanoparticles”, Mendeleev Commun., 24:6 (2014), 319–326 |
52
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| 24. |
N. Tian, H. Gu, Q. Wu, H. Ding, W. Yan, A. B. Yaroslavtsev, “Temperature control-type electrolyte based on tungstovanadosilicic heteropoly acid and trioctylmethylammonium chloride”, Mendeleev Commun., 24:3 (2014), 147–148 |
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2013 |
| 25. |
S. A. Novikova, S. A. Yaroslavtsev, V. S. Rusakov, T. L. Kulova, A. M. Skundin, A. B. Yaroslavtsev, “Lithium intercalation and deintercalation into lithium–iron phosphates doped with cobalt”, Mendeleev Commun., 23:5 (2013), 251–252 |
12
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| 26. |
N. L. Basov, M. M. Ermilova, N. V. Orekhova, I. A. Oreshkin, A. B. Yaroslavtsev, “Low temperature methane coupling in a Pd-based membrane reactor with UV activation”, Mendeleev Commun., 23:2 (2013), 69–70 |
7
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| 27. |
A. G. Mikheev, E. Yu. Safronova, G. Yu. Yurkov, A. B. Yaroslavtsev, “Hybrid materials based on MF-4SC perfluorinated sulfo cation-exchange membranes and silica with proton-acceptor properties”, Mendeleev Commun., 23:2 (2013), 66–68 |
14
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| 28. |
N. Tian, W. Wu, Sh. Zhou, Q. Wu, F. Cao, W. Yan, A. B. Yaroslavtsev, “Preparation and Conductivity of a Hybrid Material based on Tungstovanadosilicic Acid Polyvinylpyrrolidone”, Mendeleev Commun., 23:1 (2013), 29–30 |
1
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| 29. |
Н. Л. Басов, М. М. Ермилова, Н. В. Орехова, А. Б. Ярославцев, “Мембранный катализ в процессах дегидрирования и производства водорода”, Усп. хим., 82:4 (2013), 352–368 ; N. L. Basov, M. M. Ermilova, N. V. Orekhova, A. B. Yaroslavtsev, “Membrane catalysis in dehydrogenation and hydrogen production processes”, Russian Chem. Reviews, 82:4 (2013), 352–368 |
39
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2012 |
| 30. |
O. V. Bobreshova, A. V. Parshina, K. A. Polumestnaya, E. Yu. Safronova, K. Yu. Yankina, A. B. Yaroslavtsev, “Perfluorinated sulfocation-exchange membranes modified with zirconia for sensors susceptible to organic anions in multiionic aqueous solutions”, Mendeleev Commun., 22:2 (2012), 83–84 |
11
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| 31. |
А. Б. Ярославцев, Ю. А. Добровольский, Н. С. Шаглаева, Л. А. Фролова, Е. В. Герасимова, Е. А. Сангинов, “Наноструктурированные материалы для низкотемпературных топливных элементов”, Усп. хим., 81:3 (2012), 191–220 ; A. B. Yaroslavtsev, Yu. A. Dobrovolsky, N. S. Shaglaeva, L. A. Frolova, E. V. Gerasimova, E. A. Sanginov, “Nanostructured materials for low-temperature fuel cells”, Russian Chem. Reviews, 81:3 (2012), 191–220 |
157
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2010 |
| 32. |
S. A. Novikova, E. Yu. Safronova, A. A. Lysova, A. B. Yaroslavtsev, “Influence of incorporated nanoparticles on the ionic conductivity of MF-4SC membrane”, Mendeleev Commun., 20:3 (2010), 156–157 |
59
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| 33. |
S. A. Novikova, G. Yu. Yurkov, A. B. Yaroslavtsev, “Synthesis and transport properties of membrane materials with incorporated metal nanoparticles”, Mendeleev Commun., 20:2 (2010), 89–91 |
35
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2009 |
| 34. |
А. Б. Ярославцев, “Композиционные материалы с ионной проводимостью — от неорганических композитов до гибридных мембран”, Усп. хим., 78:11 (2009), 1094–1112 ; A. B. Yaroslavtsev, “Composite materials with ionic conductivity: from inorganic composites to hybrid membranes”, Russian Chem. Reviews, 78:11 (2009), 1013–1029 |
85
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2007 |
| 35. |
A. A. Il'ina, I. A. Stenina, E. Kharitonova, A. B. Yaroslavtsev, “Conductivity and phase transitions in a potassium–magnesium molybdate”, Mendeleev Commun., 17:2 (2007), 95–96 |
2
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2004 |
| 36. |
I. A. Stenina, M. N. Kislitsyn, I. Yu. Pinus, A. B. Yaroslavtsev, “Phase transition through intermediate formation?”, Mendeleev Commun., 14:5 (2004), 191–193 |
5
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2003 |
| 37. |
А. Б. Ярославцев, В. В. Никоненко, В. И. Заболоцкий, “Ионный перенос в мембранных и ионообменных материалах”, Усп. хим., 72:5 (2003), 438–470 ; A. B. Yaroslavtsev, V. V. Nikonenko, V. I. Zabolotsky, “Ion transfer in ion-exchange and membrane materials”, Russian Chem. Reviews, 72:5 (2003), 393–421 |
143
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2002 |
| 38. |
V. G. Ponomareva, E. B. Burgina, V. A. Tarnopolsky, A. B. Yaroslavtsev, “Proton mobility in the composites of iron acid sulfate monohydrate with silica”, Mendeleev Commun., 12:6 (2002), 223–224 |
7
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1999 |
| 39. |
V. Yu. Kotov, I. A. Stenina, A. B. Yaroslavtsev, “Influence of anions on the kinetics of hydrogen/sodium ion exchange in a crystalline acid zirconium phosphate”, Mendeleev Commun., 9:2 (1999), 50–53 |
2
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1997 |
| 40. |
А. Б. Ярославцев, “Ионный обмен на неорганических сорбентах”, Усп. хим., 66:7 (1997), 641–660 ; A. B. Yaroslavtsev, “Ion exchange on inorganic sorbents”, Russian Chem. Reviews, 66:7 (1997), 579–596 |
54
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1996 |
| 41. |
A. B. Yaroslavtsev, A. E. Nikolaev, V. A. Tarnopolsky, “Ion-exchange in acid tantalum phosphate”, Mendeleev Commun., 6:2 (1996), 56–57 |
3
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1995 |
| 42. |
A. B. Yaroslavtsev, A. E. Nikolaev, “Synthesis and Proton Conductivity of Acid Tantalum Phosphate”, Mendeleev Commun., 5:4 (1995), 136–137 |
5
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| 43. |
A. B. Yaroslavtsev, D. L. Gorbatchev, “Proton Transfer in Low Temperature Proton Conductors”, Mendeleev Commun., 5:2 (1995), 46–49 |
5
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1994 |
| 44. |
А. Б. Ярославцев, “Протонная проводимость неорганических гидратов”, Усп. хим., 63:5 (1994), 449–455 ; A. B. Yaroslavtsev, “Proton conductivity of inorganic hydrates”, Russian Chem. Reviews, 63:5 (1994), 429–435 |
55
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