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EFFECTS OF GRAPHITE PARTICLE SIZE ON IRREVERSIBLE CAPACITY LOSS FOR LI-ION BATTERIES

机译:石墨粒径对锂离子电池不可逆容量损耗的影响

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Electrolyte decomposition and irreversible capacity loss (ICL) occur on carbon electrodes in Li-ion cells. The nature of the surface sites and their role in the amount of electrolyte decomposition on carbon electrodes is not fully understood. Therefore, a study was undertaken to analyze the relationship between the ICL and the active sites on natural graphite of prismatic structure. The ICL was measured on natural graphite of predominantly two-dimensional platelets of average particle size varying from 2 to 40 μm. The fraction of edge and basal plane sites was determined for ideal prismatic structures of different particle size and used as a model for the natural graphite particles. This analysis permitted an analysis of the relationship between the electrolyte decomposition and the distribution of surface sites. From this analysis we conclude that these sites play an important role in the magnitude of the irreversible capacity loss on natural graphite.
机译:电解质分解和不可逆的容量损失(ICL)发生在锂离子电池中的碳电极上。表面位点的性质及其在碳电极上的电解质分解量中的作用是完全理解的。因此,采取了一项研究,分析了ICL与活性位点与棱柱结构天然石墨之间的关系。在平均粒度的主要二维血小板的天然石墨上测量ICL,其平均粒度不同于2至40μm。确定边缘和基底平面位点的分数,用于不同粒径的理想棱柱结构,并用作天然石墨颗粒的模型。该分析允许分析电解质分解与表面位点分布之间的关系。从这个分析来看,我们得出结论,这些网站在天然石墨上不可逆产能损失的大小起着重要作用。

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