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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Methodology for the study of mixed transport properties of a Zn-doped SrZr0.9Y0.1O3-delta electrolyte under reducing conditions
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Methodology for the study of mixed transport properties of a Zn-doped SrZr0.9Y0.1O3-delta electrolyte under reducing conditions

机译:还原条件下掺锌SrZr0.9Y0.1O3-δ电解质混合输运特性的研究方法

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摘要

The mixed ionic-electronic transport properties of the protonic ceramic electrolyser material SrZr0.9Y0.1O3-delta, with the addition of 4 mol% ZnO as a sintering additive, are analysed under reducing conditions. The study is performed by means of an active-load modification of the classical electromotive-force method to account for the non-negligible effect of the electrodes on the obtained electrical-transport numbers. The methodology is developed in detail in order to link the electrochemical criteria to simulated equivalent circuits. The observed electromotive force of the system is considerably affected by the introduction of the polarisation resistance of the electrodes in the corresponding analysis, resulting in a high deviation between the present results and those obtained by a classical analysis without attending to electrode effects. Under wet reducing conditions (pH(2) approximate to 0.05 atm, pH(2)O approximate to 3 x 10(-3)-10(-2) atm), the oxide-ionic transport number is negligible in the range of 600-900 degrees C, whereas pure protonic conductivity is observed for temperatures <= 700 degrees C and pH(2)O >= 5.6 x 10(-3) atm. For higher temperatures and/or lower pH(2)O, mixed protonic-electronic conduction is exhibited. The electronic contribution under reducing conditions is consistent with n-type electronic behaviour.
机译:在还原条件下,分析了质子陶瓷电解材料SrZr0.9Y0.1O3-δ的混合离子电子输运性能,其中添加了4 mol%的ZnO作为烧结添加剂。该研究是通过对经典电动势方法进行的有功修改来解决的,以说明电极对所获得的电传输数的不可忽略的影响。详细开发了该方法,以便将电化学标准链接到模拟等效电路。在相应的分析中,电极的极化电阻的引入会极大地影响系统的观测电动势,从而导致当前结果与通过经典分析获得的结果之间存在较大偏差,而没有考虑电极效应。在湿还原条件下(pH(2)大约为0.05 atm,pH(2)O大约为3 x 10(-3)-10(-2)atm),氧化物离子迁移数在600范围内可忽略不计-900摄氏度,而在温度<= 700摄氏度和pH(2)O> = 5.6 x 10(-3)atm的情况下,观察到纯质子传导性。对于更高的温度和/或更低的pH(2)O,表现出混合的质子电子传导。还原条件下的电子贡献与n型电子行为一致。

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