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Non-stoichiometry, structure and properties of proton-conducting perovskite oxides

机译:质子传导钙钛矿氧化物的非化学计量,结构和性质

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The demand for clean and sustainable energy has garnered great interest in new energy materials. Among them, high temperature proton-conducting perovskite oxides are, or can be widely used in clean energy applications (including fuel cells, electrochemical reactors, solid-state separators and supports of catalytic components via various reduction and oxidation reactions) in the intermediate temperature range. The control of defect chemistry is the main strategy to fine tune properties for these applications. This review provides a critical discussion about non-stoichiometry-structure-property relation in terms of structure distortions by intrinsic octahedral titling and extrinsic acceptor doping, chemical stability, hydration behavior, transport properties, and catalytic effects in some typical classes of proton conducting perovskites and perovskite-related derivatives. A good understanding of A-site and B-site non-stoichiometry is also given to allow the perovskite structure with desired properties.
机译:对清洁和可持续能源的需求引起了人们对新能源材料的极大兴趣。其中,高温质子导电钙钛矿氧化物是或可以广泛应用于中温范围内的清洁能源应用(包括燃料电池、电化学反应器、固态分离器和通过各种还原和氧化反应的催化组件载体)。控制缺陷化学是微调这些应用性能的主要策略。本文从本征八面体滴定和外源受主掺杂引起的结构畸变、化学稳定性、水化行为、输运性质以及一些典型的质子导电钙钛矿和钙钛矿相关衍生物中的催化效应等方面,对非化学计量结构-性质关系进行了批判性讨论。对A位和B位的非化学计量也有很好的理解,以使钙钛矿结构具有所需的性能。

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