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首页> 外文期刊>Angewandte Chemie >Enhancing Electrochemical Water-Splitting Kinetics by Polarization-Driven Formation of Near-Surface Iron(0): An In Situ XPS Study on Perovskite-Type Electrodes
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Enhancing Electrochemical Water-Splitting Kinetics by Polarization-Driven Formation of Near-Surface Iron(0): An In Situ XPS Study on Perovskite-Type Electrodes

机译:通过极化驱动近表面铁(0)的形成增强电化学水分解动力学:钙钛矿型电极的原位XPS研究

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摘要

In the search for optimized cathode materials for high-temperature electrolysis, mixed conducting oxides are highly promising candidates. This study deals with fundamentally novel insights into the relation between surface chemistry and electrocatalytic activity of lanthanum ferrite based electrolysis cathodes. For this means, near-ambient-pressure X-ray photoelectron spectroscopy (NAP-XPS) and impedance spectroscopy experiments were performed simultaneously on electrochemically polarized La0.6Sr0.4FeO3- (LSF) thin film electrodes. Under cathodic polarization the formation of Fe-0 on the LSF surface could be observed, which was accompanied by a strong improvement of the electrochemical water splitting activity of the electrodes. This correlation suggests a fundamentally different water splitting mechanism in presence of the metallic iron species and may open novel paths in the search for electrodes with increased water splitting activity.
机译:在寻找用于高温电解的优化阴极材料时,混合导电氧化物是非常有前途的候选材料。这项研究从根本上研究了基于镧铁氧体的电解阴极的表面化学与电催化活性之间的关系。为此,在电化学极化的La0.6Sr0.4FeO3-(LSF)薄膜电极上同时进行了近环境X射线光电子能谱(NAP-XPS)和阻抗能谱实验。在阴极极化下,可以观察到在LSF表面上形成Fe-0,这伴随着电极的电化学水分解活性的极大提高。这种相关性表明,在金属铁物种存在下,水分解机理根本不同,并且可能在寻找具有增加的水分解活性的电极方面开辟新的途径。

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