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Conductivity relaxation patterns of mixed conductor oxides under a chemical potential gradient

机译:化学势梯度下混合导体氧化物的电导率弛豫模式

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Chemical diffusivity of a mixed ionic-electronic conductor compound is often measured by monitoring the relaxation of electrical conductivity with time under a component's chemical potential gradient. Conductivity relaxations were systematically examined on undoped polycrystal BaTiO3, acceptor-doped polycrystal BaTiO3, donor-doped polycrystal BaTiO3, and undoped single crystal TiO2 upon oxidation and reduction, and on proton-conducting, acceptor-doped polycrystal SrCeO3 and BaCeO3 upon oxidation/reduction or hydration/dehydration at elevated temperatures. It has been found that there are three patterns of relaxation: single-fold (single relaxation time) monotonic, twofold (two relaxation times) monotonic and twofold non-monotonic relaxation. The inner working for each pattern is discussed and a general solution to the relaxations is presented in closed form, together with the chemical diffusivities as evaluated thereby.
机译:混合的离子电子导体化合物的化学扩散率通常是通过监控在组件的化学势梯度下电导率随时间的松弛来测量的。对未掺杂的多晶BaTiO3,受主掺杂的多晶BaTiO3,施主掺杂的多晶BaTiO3和未掺杂的单晶TiO2在氧化和还原后以及质子传导的,受主掺杂的多晶SrCeO3和BaCeO3在氧化/还原或还原后的电导率弛豫进行了研究在高温下水合/脱水。已经发现,存在三种松弛模式:单倍(单次松弛时间)单调,双倍(两次弛豫时间)单调和非单倍两次弛豫。讨论了每种图案的内部工作方式,并以封闭形式给出了松弛的一般解决方案,并由此评估了化学扩散性。

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