Heterovalent and isovalent doping of bilayer proton-conducting perovskite SrLa2Sc2O7

N. Tarasova
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Abstract

Perovskite or perovskite-related structural materials are widely studied for their many functional properties. They can be used as components of energy sources such as solid oxide fuel cells. Along with classical perovskites, layered perovskites can also carry out high-temperature proton transport and are promising materials for use in electrochemical power engineering. In this paper, the possibility of heterovalent and isovalent doping of La and Sc sublattices of bilayer perovskite SrLa2Sc2O7 was made for the first time. It was shown that electrical conductivity increases in the row of bilayer perovskites SrLa2ScInO7 – SrLa2Sc2O7 – BaLa2In2O7 – BaNd2In2O7.
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双层质子导电钙钛矿SrLa2Sc2O7的异价和等价掺杂
钙钛矿或钙钛矿相关结构材料因其许多功能特性而被广泛研究。它们可以用作固体氧化物燃料电池等能源的组成部分。与传统的钙钛矿一样,层状钙钛矿也可以进行高温质子输运,是电化学动力工程中很有前途的材料。本文首次提出了La和Sc亚晶格在双层钙钛矿SrLa2Sc2O7中异价和等价掺杂的可能性。结果表明:SrLa2ScInO7 - SrLa2Sc2O7 - BaLa2In2O7 - BaNd2In2O7双层钙钛矿排列后电导率提高。
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Influence of caprolactam on the tin electrodeposition on a dispersed carbon support and preparation of Pt/(SnO2/C) catalysts Heterovalent and isovalent doping of bilayer proton-conducting perovskite SrLa2Sc2O7 Fitting the pair potentials for molten salts: A review in brief H/D exchange studies of methane activation mechanisms in heterogeneous catalysis Preface by the rector of the Ural Federal University Viktor A. Koksharov
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