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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Investigation of the Electrode/Electrolyte Interface of Fe2O3 Composite Electrodes: Li vs Na Batteries
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Investigation of the Electrode/Electrolyte Interface of Fe2O3 Composite Electrodes: Li vs Na Batteries

机译:Fe2O3复合电极的电极/电解质界面的研究:锂电池与钠电池

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摘要

We have investigated the properties of the electrode/electrolyte interfaces of composite electrodes based on nanostructured iron oxide cycled in Li- and Na-half cells containing analogous electrolytes (i.e., LiC1O4 or NaC1O4 in ethylene carbonate:diethyl carbonate (EC:DEC)). A meticulous nondestructive step-by-step analysis of the first discharge/charge cycle has been conducted via soft X-ray photoelectron spectroscopy using synchrotron radiation. In this way, different depths were probed by varying the photon energy (hv) for both electrochemical systems. The results of this thoroueh studv clearly highlight the differences and the similarities of their respective solid electrolyte interface (SEl) layers in terms of formation, composition, structure, or thickness, as well as their conversion mechanisms. We specifically point out that the SEI coverage is more pronounced, and a homogeneous distribution rich in inorganic species exists in the case of Na, compared to the organic/inorganic layered structure observed for the Li system. The SEI formation gradually occurs during the first discharge in both Li- and Na-half cells. For Na, a predeposit layer is formed directly by simple contact of the electrode with the electrolyte. Despite using similar electrolytes, the nature of the cation (Li~= or Na~+) has significant impact on the overall composition/structure of the resulting SEI.
机译:我们已经研究了基于纳米结构的氧化铁的复合电极的电极/电解质界面的特性,该氧化铁在包含类似电解质(即碳酸亚乙酯:碳酸二乙酯(EC:DEC)中的LiClO4或NaClO4)的Li和Na半电池中循环。已经通过使用同步加速器辐射的软X射线光电子能谱对第一放电/充电周期进行了细致的无损分步分析。通过这种方式,通过改变两个电化学系统的光子能量(hv)来探测不同的深度。该理论研究的结果清楚地突出了它们各自的固体电解质界面(SEl)层在形成,组成,结构或厚度以及它们的转化机理方面的差异和相似性。我们特别指出,与Li系统中观察到的有机/无机层状结构相比,Na的情况下SEI的覆盖范围更为显着,并且富含无机物的分布均匀。 SEI的形成在Li和Na半电池首次放电期间逐渐发生。对于Na,通过电极与电解质的简单接触直接形成预沉积层。尽管使用了类似的电解质,但阳离子的性质(Li〜=或Na〜+)对所得SEI的总体组成/结构有重大影响。

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