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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >How To Get Mechanistic Information from Partial Pressure-Dependent Current-Voltage Measurements of Oxygen Exchange on Mixed Conducting Electrodes
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How To Get Mechanistic Information from Partial Pressure-Dependent Current-Voltage Measurements of Oxygen Exchange on Mixed Conducting Electrodes

机译:如何从混合电极上的氧气交换的部分压力相关电流 - 电压测量获得机械信息

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摘要

The oxygen incorporation and evolution reaction on mixed conducting electrodes of solid oxide fuel or electrolysis cells involves gas molecules as well as ionic and electronic point defects in the electrode. The defect concentrations depend on the gas phase and can be modified by the overpotential. These interrelationships make a mechanistic analysis of partial pressure-dependent. current-voltage experiments challenging. In this contribution it is described how to exploit this complex situation to unravel the kinetic roles of surface adsorbates and electrode point defects. Essential is a counterbalancing of oxygen partial pressure and dc electrode polarization such that the point defect concentrations in the electrode remain constant despite varying the oxygen partial pressure. It is exemplarily shown for La0.6Sr0.4FeO3-delta (LSF) thin film electrodes on yttria-stabilized zirconia how mechanistically relevant reaction orders can be obtained from current-voltage curves, measured in a three-electrode setup. This analysis strongly suggests electron holes as the limiting defect species for the oxygen evolution on LSF and reveals the dependence of the oxygen incorporation rate on the oxygen vacancy concentration. A virtual independence of the reaction rate from the oxygen partial pressure was empirically found for moderate oxygen pressures. This effect, however, arises from a counterbalancing of defect and adsorbate concentration changes.
机译:固体氧化物燃料或电解细胞混合电极上的氧气掺入和进化反应涉及气体分子以及电极中的离子和电子点缺陷。缺陷浓度取决于气相,可以通过过电位修改。这些相互关系取决于部分压力依赖性的机械分析。电流电压实验具有挑战性。在本贡献中,描述了如何利用这种复杂的情况来解开表面吸附和电极点缺陷的动力学作用。对于氧分压和DC电极偏振的抵消,使得尽管改变氧分压,但电极中的点缺陷浓度保持恒定。在ytTria稳定的氧化锆上的La0.6SR0.4FeO3-Delta(LSF)薄膜电极示例性地示出了机械主义相关的反作用订单可以从电流 - 电压曲线获得,在三电极设置中测量。该分析强烈建议电子孔作为LSF上氧气进化的限制缺陷物种,并揭示了氧气掺入率对氧空位浓度的依赖性。凭经验发现来自氧分压的反应速率的虚拟独立性,用于中等氧气压力。然而,这种效果来自缺陷和吸附浓度变化的抵抗性。

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