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Binding Energy Referencing for XPS in Alkali Metal-Based Battery Materials Research (II): Application to Complex Composite Electrodes

机译:基于碱金属电池材料研究的XPS的结合能量研究(ii):在复合复合电极的应用

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摘要

X-ray photoelectron spectroscopy (XPS) is a key method for studying (electro-)chemical changes in metal-ion battery electrode materials. In a recent publication, we pointed out a conflict in binding energy (BE) scale referencing at alkali metal samples, which is manifested in systematic deviations of the BEs up to several eV due to a specific interaction between the highly reactive alkali metal in contact with non-conducting surrounding species. The consequences of this phenomenon for XPS data interpretation are discussed in the present manuscript. Investigations of phenomena at surface-electrolyte interphase regions for a wide range of materials for both lithium and sodium-based applications are explained, ranging from oxide-based cathode materials via alloys and carbon-based anodes including appropriate reference chemicals. Depending on material class and alkaline content, specific solutions are proposed for choosing the correct reference BE to accurately define the BE scale. In conclusion, the different approaches for the use of reference elements, such as aliphatic carbon, implanted noble gas or surface metals, partially lack practicability and can lead to misinterpretation for application in battery materials. Thus, this manuscript provides exemplary alternative solutions.
机译:X射线光电子体光谱(XPS)是金属离子电池电极材料中研究(电 - 电)化学变化的关键方法。在最近的出版物中,我们指出了在碱金属样品中引用的结合能量(BE)的冲突,这表明由于高反应性碱金属与与所述高度反应性碱金属之间的特异性相互作用而在多于几个EV的系统偏差中。非导通周围物种。在本手稿中讨论了这种现象对XPS数据解释的后果。解释用于锂和钠应用的各种材料的表面电解质界面的现象的研究,从基于氧化物的阴极材料通过合金和基于碳的阳极来说,包括适当的参考化学品。根据材料类和碱性含量,提出了用于选择正确的参考的特定解决方案是准确地定义大规模。总之,使用参考元件的不同方法,例如脂族碳,植入的惰性气体或表面金属,部分缺乏实用性,并且可以导致在电池材料中应用误解。因此,该稿件提供了示例性替代解决方案。

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