Novel co-doped protonic conductors BaLa1.9Sr0.1In1.95M0.05O6.925 with layered perovskite structure

Q4 Materials Science
A. Bedarkova, N. Tarasova, I. Animitsa, E. Abakumova, I. Fedorova, P. Cheremisina, Evgenia Verinkina
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引用次数: 0

Abstract

Active development of electrochemical devices such as proton-conducting fuel cells and electrolyzers should ensure sustainable environmental development. An electrolyte material of a hydrogen-powered electrochemical device must satisfy a number of requirements, including high proton conductivity. Layered perovskites are a promising class of proton-conducting electrolytes. The cationic co-doping method has been successfully applied to well-known proton conductors with the classical perovskite structure ABO3. However, the data on the application of this method to layered perovskites are limited. In this work, the bilayer perovskites BaLa1.9Sr0.1In1.95M0.05O6.925 (M = Mg2+, Ca2+) were obtained and investigated for the first time. Cationic co-doping increases oxygen-ion and proton conductivity values.
层状钙钛矿结构的新型共掺杂质子导体BaLa1.9Sr0.1In1.95M0.05O6.925
积极发展质子传导燃料电池和电解槽等电化学设备,确保环境的可持续发展。氢动力电化学装置的电解质材料必须满足许多要求,包括高质子导电性。层状钙钛矿是一类很有前途的质子导电电解质。阳离子共掺杂方法已成功应用于具有经典钙钛矿结构ABO3的著名质子导体。然而,该方法在层状钙钛矿中的应用数据有限。本文首次制备并研究了双层钙钛矿BaLa1.9Sr0.1In1.95M0.05O6.925 (M = Mg2+, Ca2+)。阳离子共掺杂增加了氧离子和质子电导率值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Chimica Techno Acta
Chimica Techno Acta Chemical Engineering-Chemical Engineering (all)
CiteScore
1.00
自引率
0.00%
发文量
67
审稿时长
4 weeks
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