Труды КНЦ (Технические науки вып. 1/2024(15))
Труды Кольского научного центра РАН. Серия: Технические науки. 2024. Т. 15, № 1. С. 165-170. Transactions of the Kola Science Centre of RA s . Series: Engineering Sciences. 2024. Vol. 15, No. 1. P. 165-170. Список источников 1. The Evolution o f Solid Oxide Fuel Cell Materials / A. Chroneos [et al.] // Applied Sciences. 2024. Vol. 14, No. 1. P. 69. https:// doi.org/10.3390/app14010069. 2. Solid-oxide fuel cells: A critical review o f materials for cell components / M. A. Yatoo [et al.] // MRS Communications. 2023. Vol. 13. P. 378-384. https://doi.org/10.1557/s43579-023-00371-0. 3. Chemical design o f oxygen electrodes for solid oxide electrochemical cells: A guide / A. P. Tarutin [et al.] // Sustainable Energy Technologies and Assessments. 2023. Vol. 57. P. 1030185. https://doi.org/10.1016/j.seta.2023.103185. 4. Hussain S., Yangping L. Review o f solid oxide fuel cell materials: cathode, anode, and electrolyte // Energy Transitions. 2020. Vol. 4, No. 2. P. 113-126. https://doi.org/10.1007/s41825-020-00029-8. 5. Электродные материалы на основе сложных оксидов d-металлов для симметричных твёрдооксидных топливных элементов / С. Я. Истомин [и др.] // Успехи химии. 2021. Т. 90, № 6. С. 644-676. https://doi.org/10.1070/RCR4979. 6. High-entropy approach to double perovskite cathode materials for solid oxide fuel cells: Is multicomponent occupancy in (La,Pr,Nd,Sm,Gd)BaCo 2 O 5+8 affecting physicochemical and electrocatalytic properties? / J. D^browa ^ t al.] // Frontiers in Energy Research. 2022. Vol. 10. P. 899308. https://doi.org/10.3389/fenrg.2022.899308. 7. Vostakola M. F., Horri B. A. Progress in Materials Development for Low-Temperature Solid Oxide Fuel Cells: A Review // Energies. 2021. Vol. 14, № . 1280. https://doi.org/10.3390/en14051280. 8. Perovskite as a Cathode Material: A Review of its Role in Solid-Oxide Fuel Cell Technology / A. Jun ^ t al.] // ChemElectroChem. 2016. Vol. 3. P. 511-530. https://doi.org/10.1002/celc.201500382. 9. Layered oxygen-deficient double perovskites as promising cathode materials for solid oxide fuel cells / A. I. Klyndyuk ^ t al.] // Materials. 2022. Vol. 15, № . 1. P. 141. https://doi.org/10.3390/ma15010141. 10. Электротранспортные и термические свойства твёрдых растворов NdBa 1 -xMgxFeCo 0 . 5 Cu 0 , 5 O 5 +s (0,00 < х < 0,40) / Е. А. Чижова [и др.] // Физика и химия стекла. 2023. T. 49, № 1. C. 71-79. doi: 10.31857/S0132665122600200. 11. Kumar V., Khandale R. A review on recent progress and selection o f cobalt-based cathode materials for low temperature solid oxide fuel cells // Renewable and Sustainable Energy Reviews. 2022. Vol. 156. P. 111985. https://doi.org/10.1016/j.rser.2021.111985. 12. Клындюк А. И., Журавлева Я. Ю. Структура и физико-химические свойства твёрдых растворов NdBa 1 -xCaxFeCo 0 , 5 Cu 0 , 5 O 5+8 (0,00 < х < 0,40) // Журнал неорганической химии. 2022. T. 67, № 12. С. 1874-1880. https://doi.org/10.31857/S0044457X22600669. References 1. Chroneos A., Goulatis I. L., Solovjov A., Vovk R. V. The Evolution o f Solid Oxide Fuel Cell Materials. Applied Sciences, 2024, Vol. 14, № . 1, pp. 69. https://doi.org/10.3390/app14010069. 2. Yatoo M. A., Habib F., Malik A. H. Qazi M. J., Ahmad S., Ganayee M. A., Ahmad Z. Solid-oxide fuel cells: A critical review o f materials for cell components. MRS Communications, 2023, Vol. 13. P. 378 384. https://doi.org/10.1557/s43579-023-00371-0. 3. Tarutin A. P., Filonova E. A., Ricote S., Medvedev D. A., Shao Z. Chemical design o f oxygen electrodes for solid oxide electrochemical cells: A guide. Sustainable Energy Technologies and Assessments, 2023, Vol. 57, pp. 1030185. https://doi.org/10.1016/j.seta.2023.103185. 4. Hussain S., Yangping L. Review o f solid oxide fuel cell materials: cathode, anode, and electrolyte. Energy Transitions, 2020, Vol. 4, № . 2. pp. 113-126. https://doi.org/10.1007/s41825-020-00029-8. 5. Istomin S. Ya., Lyskov N. V., Mazo G. N., Antipov E. V. Elektrodnye materialy na osnove slozhnyh oksidov d-metallov dlya simmetrichnyh tvyordooksidnyh toplivnyh elementov [Electrode materials based on complex d-metal oxides for symmetrical solid oxide fuel cells]. Uspekhi himii [Russian Chemical Reviews], 2021, Vol. 9, № . 6, pp. 644-676. https://doi.org/10.1070/RCR4979. © Журавлева Я. Ю., 2024 169
Made with FlippingBook
RkJQdWJsaXNoZXIy MTUzNzYz