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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Interface investigations of a commercial lithium ion battery graphite anode material by sputter depth profile X-ray photoelectron spectroscopy
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Interface investigations of a commercial lithium ion battery graphite anode material by sputter depth profile X-ray photoelectron spectroscopy

机译:商用锂离子电池石墨负极材料的溅射深度分布X射线光电子能谱研究

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摘要

Here we provide a detailed X-ray photoelectron spectroscopy (XPS) study of the electrode/electrolyte interface of a graphite anode from commercial NMC/graphite cells by intense sputter depth profiling using a polyatomic ion gun. The uniqueness of this method lies in the approach using 13-step sputter depth profiling (SDP) to obtain a detailed model of the film structure, which forms at the electrode/electrolyte interface often noted as the solid electrolyte interphase (SEI). In addition to the 13-step SDP, several reference experiments of the untreated anode before formation with and without electrolyte were carried out to support the interpretation. Within this work, it is shown that through charging effects during X-ray beam exposure chemical components cannot be determined by the binding energy (BE) values only, and in addition, that quantification by sputter rates is complicated for composite electrodes. A rough estimation of the SEI thickness was carried out by using the LiF and graphite signals as internal references.
机译:在这里,我们提供了详细的X射线光电子能谱(XPS)研究,该研究使用多原子离子枪通过强溅射深度剖析对来自商用NMC /石墨电池的石墨阳极的电极/电解质界面进行了研究。该方法的独特之处在于使用13步溅射深度轮廓分析(SDP)来获得薄膜结构的详细模型的方法,该模型在通常被称为固体电解质中间相(SEI)的电极/电解质界面处形成。除了13步SDP,还进行了有和没有电解质形成前未处理阳极的一些参考实验,以支持这一解释。在这项工作中,显示出在X射线束曝光期间通过电荷效应,化学成分不能仅由结合能(BE)值确定,此外,对于复合电极,通过溅射速率进行的定量分析非常复杂。通过使用LiF和石墨信号作为内部参考,对SEI厚度进行了粗略的估算。

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