氧化锆的导电机理及影响因素
首发时间:2023-04-23
摘要:在第三代燃料电池的发展中,氧化锆作为出色的电解质材料,因为其高效、环境友好的特点,在过去几十年里一直主导着固体氧化物燃料电池工业。然而,随着第一性原理、机器学习等计算物理的发展,原有的对导电机理的解释已相对落后。本文简述了氧化锆的结构和理化性质,综述了从机器学习、第一性原理等计算物理角度分析氧化锆导电性的最新文献,并结合实验验证,从氧空位浓度、扩散势垒以及杂质相的阻力三个方面分析了其导电性的影响因素。
关键词: 无机非金属材料 氧化锆 导电性 氧空位 扩散势垒 杂质相
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Conductive mechanism and influencing factors of zirconia
Abstract:In the development of third-generation fuel cells, zirconia has dominated the solid oxide fuel cell industry over the past few decades as an outstanding electrolyte material because of its high efficiency and environmentally friendly characteristics. However, with the development of computational physics such as first principles and machine learning, the original explanation of conductive mechanism has been relatively backward. In this paper, the physical and chemical properties of zirconia are briefly described, and the latest literatures on the analysis of the electrical conductivity of zirconia from the computational physics perspectives of machine learning and first-principles are reviewed. Combined with experimental verification, the influential factors on the electrical conductivity of zirconia are analyzed from three aspects: oxygen vacancy concentration, diffusion barrier and resistance of impurity phase.
Keywords: inorganic non-metallic materials zirconia electrical conductivity oxygen vacancy diffusion barrier mpurity phase
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