Просмотр коллекции по группе - По автору Pikalova, E.

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Отображение результатов 1 до 19 из 19
Дата публикацииНазваниеАвторы
2021Challenges of Formation of Thin-film Solid Electrolyte Layers on Non-Conductive Substrates by Electrophoretic DepositionKalinina, E.; Pikalova, E.; Ermakova, L.; Bogdanovich, N.
2019Comparative study of electrophoretic deposition of doped BaCeO3-based films on La2NiO4+δ and La1.7Ba0.3NiO4+δ cathode substratesKalinina, E.; Pikalova, E.; Kolchugin, A.; Pikalova, N.; Farlenkov, A.
2023Correction to: Overview of Approaches to Increase the Electrochemical Activity of Conventional Perovskite Air Electrodes (Materials, (2023), 16, 14, (4967), 10.3390/ma16144967)Filonova, E.; Pikalova, E.
2021Correlation between structural and transport properties of ca-doped la nickelates and their electrochemical performancePikalova, E.; Sadykov, V.; Sadovskaya, E.; Yeremeev, N.; Kolchugin, A.; Shmakov, A.; Vinokurov, Z.; Mishchenko, D.; Filonova, E.; Belyaev, V.
2019Design of materials for solid oxide fuel cells cathodes and oxygen separation membranes based on fundamental studies of their oxygen mobility and surface reactivitySadykov, V.; Sadovskaya, E.; Eremeev, N.; Pikalova, E.; Bogdanovich, N.; Filonova, E.; Fedorova, Y.; Krasnov, A.; Skriabin, P.; Lukashevich, 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.
2022Direct Electrophoretic Deposition and Characterization of Thin‐film Membranes Based on Doped BaCeO3 and CeO2 for Anode‐supported Solid Oxide Fuel CellsPikalova, E.; Osinkin, D.; Kalinina, E.
2023Electrophoretic Deposition and Characterization of Er-Doped Bi2O3 Cathode Barrier Coatings on Non-Conductive Ce0.8Sm0.2O1.9 Electrolyte SubstratesKalinina, E.; Ermakova, L.; Pikalova, E.
2022Electrophoretic Deposition and Characterization of the Doped BaCeO3 Barrier Layers on a Supporting Ce0.8Sm0.2O1.9 Solid‐State ElectrolyteKalinina, E.; Shubin, K.; Pikalova, E.
2020Features of electrophoretic deposition of a ba-containing thin-film proton-conducting electrolyte on a porous cathode substrateKalinina, E.; Kolchugin, A.; Shubin, K.; Farlenkov, A.; Pikalova, E.
2022High-Temperature Behavior, Oxygen Transport Properties, and Electrochemical Performance of Cu-Substituted Nd1.6Ca0.4NiO4+δ Electrode MaterialsMaksimchuk, T.; Filonova, E.; Mishchenko, D.; Eremeev, N.; Sadovskaya, E.; Bobrikov, I.; Fetisov, A.; Pikalova, N.; Kolchugin, A.; Shmakov, A.; Sadykov, V.; Pikalova, E.
2019Implementation of circular economy principles in regional solid municipal waste management: The case of Sverdlovskaya Oblast (Russian Federation)Plastinina, I.; Teslyuk, L.; Dukmasova, N.; Pikalova, E.
2021Mixed ionic-electronic conductivity, phase stability and electrochemical activity of Gd-substituted La2NiO4+δ as oxygen electrode material for solid oxide fuel/electrolysis cellsPikalova, E.; Kolchugin, A.; Zakharchuk, K.; Boiba, D.; Tsvinkinberg, V.; Filonova, E.; Khrustov, A.; Yaremchenko, A.
2021Opportunities, Challenges and Prospects for Electrodeposition of Thin-Film Functional Layers in Solid Oxide Fuel Cell TechnologyKalinina, E.; Pikalova, E.
2023Overview of Approaches to Increase the Electrochemical Activity of Conventional Perovskite Air ElectrodesFilonova, E.; Pikalova, E.
2020Oxygen transport in Pr nickelates: Elucidation of atomic-scale featuresSadykov, V.; Pikalova, E.; Eremeev, N.; Shubin, A.; Zilberberg, I.; Prosvirin, I.; Sadovskaya, E.; Bukhtiyarov, A.
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.
2022Unusual Lattice Parameters Behavior for La1.9Ca0.1NiO4+δ at the Temperatures below Oxygen LossMishchenko, D.; Vinokurov, Z.; Gerasimov, E.; Filonova, E.; Shmakov, A.; Pikalova, E.