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首页> 外文期刊>Surface and Interface Analysis: SIA: An International Journal Devoted to the Development and Application of Techniques for the Analysis of Surfaces, Interfaces and Thin Films >Surface analysis of the solid electrolyte interface formed by additives on graphite electrodes in Li-ion batteries using XPS, FEAES, and XHR-SEM techniques
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Surface analysis of the solid electrolyte interface formed by additives on graphite electrodes in Li-ion batteries using XPS, FEAES, and XHR-SEM techniques

机译:使用XPS,FEAES和XHR-SEM技术对锂离子电池中石墨电极上的添加剂形成的固体电解质界面进行表面分析

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摘要

We investigate the formation and distribution of the solid electrolyte interface (SEI) layer on a graphite anode with two additives [vinylethylene carbonate (VEC) and vinylene carbonate (VC)] in a formation process using XPS, field emission AES, and extreme high-resolution SEM (XHR-SEM) techniques, and we studied what factors play an important role in determining the formation of the SEI layer. The VEC-derived SEI behaviors (morphology, thickness, compound, and balance over electrode position) on a graphite anode largely depend on the elevated temperature. The VC-derived SEI layer is mostly formed in the initial charging step, showing simple growth (formation) behavior. It is suggested that the properties of the additives are important for SEI bonding configurations at the nanoscale film surface, and to achieve the stable SEI layer, there appears to be an effective formation process for the additive properties. This research highlights the challenges of developing a stable SEI layer with additives in the formation process for electric vehicle batteries and would make a contribution to the understanding of how formation conditions affect an SEI layer with respect to additive properties.
机译:我们在使用XPS,场发射AES和极高碳氢化合物的形成过程中,研究了石墨阳极上固体电解质界面(SEI)层的形成和分布,其中有两种添加剂[碳酸乙烯基亚乙酯(VEC)和碳酸亚乙烯酯(VC)]。分辨率SEM(XHR-SEM)技术,我们研究了哪些因素在确定SEI层的形成中起着重要作用。 VEC衍生的石墨阳极上的SEI行为(形态,厚度,化合物和电极位置上的平衡)在很大程度上取决于高温。 VC衍生的SEI层主要在初始充电步骤中形成,显示出简单的生长(形成)行为。建议添加剂的性质对于纳米级膜表面上的SEI键合构型是重要的,并且为了获得稳定的SEI层,似乎存在有效的添加剂性质形成过程。这项研究突出了在电动汽车电池的形成过程中开发具有添加剂的稳定SEI层所面临的挑战,并将有助于理解形成条件如何影响SEI层的添加剂性能。

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