Просмотр коллекции по группе - По тематике PEROVSKITE

Перейти к: 0-9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
А Б В Г Д Е Ж З И Й К Л М Н О П Р С Т У Ф Х Ц Ч Ш Щ Ъ Ы Ь Э Ю Я
или введите несколько первых букв:  
Отображение результатов 1 до 20 из 77  дальше >
Дата публикацииНазваниеАвторы
2022Ab Initio Study of the Mechanism of Proton Migration in Perovskite LaScO3Galashev, A. Y.; Pavlov, D. S.; Zaikov, Y. P.; Rakhmanova, O. R.
2022Advanced Proton-Conducting Ceramics Based on Layered Perovskite BaLaInO4 for Energy Conversion Technologies and DevicesTarasova, N.; Bedarkova, A.
2023Correlated electronic structure, orbital-selective behavior, and magnetic correlations in double-layer La3Ni2 O7 under pressureShilenko, D. A.; Leonov, I. V.
2014Correlation effects and phonon modes softening with doping in Ba 1-xKxBiO3Korotin, D. M.; Novoselov, D.; Anisimov, V. I.
2021Crystal stabilization of α-FAPbI3perovskite by rapid annealing method in industrial scaleMurugadoss, G.; Arunachalam, P.; Panda, S. K.; Rajesh, Kumar, M.; Rajabathar, J. R.; Al-Lohedan, H.; Wasmiah, M. D.
2022Crystal Structure and Concentration-Driven Phase Transitions in Lu(1−x)ScxFeO3 (0 ≤ x ≤ 1) Prepared by the Sol–Gel MethodPakalniškis, A.; Alikin, D. O.; Turygin, A. P.; Zhaludkevich, A. L.; Silibin, M. V.; Zhaludkevich, D. V.; Niaura, G.; Zarkov, A.; Skaudžius, R.; Karpinsky, D. V.; Kareiva, A.
2013Crystal structure and oxygen content of the double perovskites GdBaCo 2-xFexO6-δTsvetkov, D. S.; Ivanov, I. L.; Zuev, A. Y.
2022Crystal Structure, Electrical Conductivity and Hydration of the Novel Oxygen-Deficient Perovskite La2 ScZnO5.5, Doped with MgO and CaOBelova, K.; Egorova, A.; Pachina, S.; Animitsa, I.
2020Densification, morphological and transport properties of functional La1–xBaxYbO3– δ ceramic materialsKasyanova, A. V.; Lyagaeva, J. G.; Farlenkov, A. S.; Vylkov, A. I.; Plaksin, S. V.; Medvedev, D. A.; Demin, A. K.
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.
2023Designing an efficient lead-free perovskite solar cell with green-synthesized CuCrO2 and CeO2 as carrier transport materialsBhattarai, S.; Borah, D.; Rout, J.; Pandey, R.; Madan, J.; Hossain, I.; Handique, P.; Ansari, M. Z.; Hossain, M. K.; Rahman, M. F.
2018Dielectric relaxation and phase transition behavior of (1–x)Pb(Zn1/3Nb2/3)O3-xBaTiO3 binary solid solutionsGao, Q.; Hu, Q.; Jin, L.; Gorev, M. V.; Chezganov, D. S.; Vlasov, E. O.; Zeng, H.; Zhao, L.; Cui, Y.; Xu, Z.; Wei, X.
2019Double perovskites REBaCo2-xMxO6-δ (RE=La, Pr, Nd, Eu, Gd, Y; M=Fe, Mn) as energy-related materials: An overviewTsvetkov, D. S.; Ivanov, I. L.; Malyshkin, D. A.; Sednev, A. L.; Sereda, V. V.; Zuev, A. Y.
2021Effect of cobalt content on the properties of quintuple perovskites Sm2Ba3Fe5-xCoxO15-δGolovachev, I. B.; Mychinko, M. Y.; Volkova, N. E.; Gavrilova, L. Y.; Raveau, B.; Maignan, A.; Cherepanov, V. A.
2013Effect of hydration on conductivity of Ba4La x Ca2-X Nb2O11 + 0.5x (x = 0.5, 1, 1.5, 2) phasesKorona, D. V.; Kutikov, I. M.; Neiman, A. Y.
мар-2023Effect of Sn doping on sinterability and electrical conductivity of strontium hafnateKhaliullina, A. S.; Meshcherskikh, A. N.; Dunyushkina, L. A.
мар-2021Effect of Zinc Doping on Electrical Properties of LaAlO3 PerovskiteEgorova, A. V.; Belova, K. G.; Animitsa, I. E.; Morkhova, Ye. A.; Kabanov, A. A.
2014Electrical and electrochemical properties of La2NiO4+δ-based cathodes in contact with Ce0.8Sm0.2O2-δ electrolytePikalova, E. Yu.; Bogdanovich, N. M.; Kolchugin, A. A.; Osinkin, D. A.; Bronin, D. I.
2013Electron transport in CaMnO3 - δ at elevated temperatures: A mobility analysisGoldyreva, E. I.; Leonidov, I. A.; Patrakeev, M. V.; Kozhevnikov, V. L.