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Towards an Improved Understanding of Electrochemical Oxygen Exchange Reactions on Mixed Conducting Oxides

机译:朝着改善对混合导电氧化物的电化学氧交换反应的理解

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In solid oxide fuel cells or electrolysis cells with ionic and electronic conducting electrodes, the electrochemical reactions take place at the gas/solid interface of the mixed conducting electrode. This is in contrast to the situation met in aqueous electrolytes, where the reactions occur at the electrode/electrolyte interface. Thus, modified concepts are required to describe the reaction rates of such reactions on mixed conducting oxides. Here, it is discussed how overpotential and gas partial pressure affect reaction rates. A rate equation is suggested that also includes defects and the meaning of the empirical reaction orders is illustrated. Three experiments are presented that emphasize different aspects required for a mechanistic understanding of such reactions: A simultaneous variation of overpotential and partial pressure reveals the role of defects in oxygen evolution on (La, Sr)FeO_(3-δ) electrodes. Bias dependent impedance measurements with an analysis of the chemical capacitance gives information on the concentration of minority defects in Sr(Ti, Fe)O_(3-δ). Modification of (La, Sr)CoO_(3-δ) thin film surfaces by Sr or Co and impedance measurements in the pulsed laser deposition chamber help understanding catalytically active sites.
机译:在具有离子和电子传导电极的固体氧化物燃料电池或电解细胞中,电化学反应在混合导电电极的气/固体界面处发生。这与在水电解质中满足的情况形成对比,其中反应发生在电极/电解质界面处。因此,需要修饰的概念来描述这种反应的混合传导氧化物的反应速率。在此,讨论了如何对反应率的过电和气体压力影响。提出了一种速率方程,其还包括缺陷,并且示出了经验反应顺序的含义。提出了三个实验,以强调机械理解所需的不同方面的这种反应:过电位和部分压力的同时变化揭示了缺氧在(LA,SR)FeO_(3-δ)电极上的作用。偏置依赖性阻抗测量与化学电容的分析提供有关SR(Ti,Fe)O_(3-Δ)中少数缺陷浓度的信息。通过SR或CO和脉冲激光沉积室中的CO和阻抗测量的修改(LA,SR)COO_(3-δ)薄膜表面有助于了解催化活性位点。

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