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Отображение результатов 1 до 17 из 17
Дата публикацииНазваниеАвторы
2017Analysis of characteristics of a 5 kw power plant based on solid oxide fuel cells in four modesVolkova, J.; Munts, V.; Plotnikov, N.; Munts, J.
2017Analysis Of Characteristics Of A 5 Kw Power Plant Based On Solid Oxide Fuel Cells In Four ModesVolkova, J.; Munts, V.; Plotnikov, N.; Munts, J.
2022Design of Materials for Solid Oxide Fuel Cells, Permselective Membranes, and Catalysts for Biofuel Transformation into Syngas and Hydrogen Based on Fundamental Studies of Their Real Structure, Transport Properties, and Surface ReactivitySadykov, V. A.; Eremeev, N. F.; Sadovskaya, E. M.; Shlyakhtina, A. V.; Pikalova, E. Y.; Osinkin, D. A.; Yaremchenko, A. A.
2023Design of Mixed Ionic-Electronic Materials for Permselective Membranes and Solid Oxide Fuel Cells Based on Their Oxygen and Hydrogen MobilitySadykov, V.; Pikalova, E.; Sadovskaya, E.; Shlyakhtina, A.; Filonova, E.; Eremeev, N.
2022Development of La1.7Ca0.3Ni1−yCuyO4+δ Materials for Oxygen Permeation Membranes and Cathodes for Intermediate-Temperature Solid Oxide Fuel CellsFilonova, E.; Gilev, A.; Maksimchuk, T.; Pikalova, N.; Zakharchuk, K.; Pikalov, S.; Yaremchenko, A.; Pikalova, E.
2023Implications of Cation Interdiffusion between Double Perovskite Cathode and Proton-Conducting Electrolyte for Performance of Solid Oxide Fuel CellsTsvetkova, N. S.; Malyshkin, D. A.; Ivanov, I. L.; Tsvetkov, D. S.; Zuev, A. Y.
2020Novel materials for solid oxide fuel cells cathodes and oxygen separation membranes: Fundamentals of oxygen transport and performanceSadykov, V. A.; Sadovskaya, E. M.; Eremeev, N. F.; Yu. , Pikalova, E.; Bogdanovich, N. M.; Filonova, E. A.; Krieger, T. A.; Fedorova, Y. E.; Krasnov, A. V.; Skriabin, P. I.; Lukashevich, A. I.; Steinberger-Wilckens, R.; Vinke, I. C.
2014Oxygen tracer diffusion and surface exchange kinetics in Ba0.5Sr0.5Co0.8Fe0.2O3 - δBerenov, A.; Atkinson, A.; Kilner, J.; Ananyev, M.; Eremin, V.; Porotnikova, N.; Farlenkov, A.; Kurumchin, E.; Bouwmeester, H. J. M.; Bucher, E.; Sitte, W.
2023Performance Enhancement of Ce0.8Sm0.2O1.9-Supported SOFC by Electrophoretic Formation of Modifying BaCe0.8Sm0.2O3 and Ce0.8Sm0.1Pr0.1O1.9 LayersPikalova, E.; Kalinina, E.
2019PrBaCo 2 O 6−δ -Ce 0.8 Sm 0.2 O 1.9 composite cathodes for intermediate-temperature solid oxide fuel cells: Stability and cation interdiffusionTsvetkov, D.; Tsvetkova, N.; Ivanov, I.; Malyshkin, D.; Sereda, V.; Zuev, A.
2022Recent Progress in the Design, Characterisation and Application of LaAlO3-and LaGaO3-Based Solid Oxide Fuel Cell ElectrolytesFilonova, E.; Medvedev, D.
2023Short review on recent studies and prospects of application of rare-earth-doped La2NiO4+δ as air electrodes for solid-oxide electrochemical cellsPikalova, E. Yu.; Guseva, E. M.; Filonova, E. A.
2018Solid oxide fuel cells power unit reformer/burner/heat-exchanger module experimental studyMunts, V. A.; Volkova, Y. V.; Ershov, M. I.; Tuponogov, V. G.; Plotnikov, N. S.
2019Synthesis, crystal structure and properties of complex oxides with the perovskite structure based on neodymium, alkaline earth and 3d-transition metals : dissertation for the degree of candidate of chemical sciences : 02.00.04Hossain, A.
2016Газогенератор для газификации угля для твердооксидного топливного элементаНосов, А. А.; Тупоногов, В. Г.; Nosov, A. A.; Tuponogov, V. G.
2021Кристаллическая структура и физико-химические свойства сложнооксидных фаз Nd1.6Ca0.4Ni1-yCuyO4+δ : магистерская диссертацияМаксимчук, Т. Ю.; Maksimchuk, T. Yu.
2017Моделирование режимов работы эжектора для рециркуляции анодных газовErshov, M. I.; Volkova, Yu. V.; Munts, V. A.; Ершов, М. И.; Волкова, Ю. В.; Мунц, В. А.