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Characteristics of carbon-coated graphite prepared from mixture of graphite and polyvinylchloride as anode materials

机译:以石墨和聚氯乙烯为负极材料制备的碳包覆石墨的特性

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A carbon-coated graphite is investigated as the negative electrode for Li-ion batteries. The carbon-coated graphite particles are prepared by simple heat-treatment of mixtures of graphite and poly(vinyl chloride), PVC, at 800-1000 deg. C in an argon flow. The carbon coating reduces significantly the initial irreversible capacity of the graphite in a propylene carbonate-based electrolyte, by suppressing the solvated lithium ion intercalation, and also improves the initial charge-discharge coulombic efficiency. By carbon coating, the specific surface area of graphite particles is greatly increased. These findings can be explained by assuming that a turbostratic structure of PVC-carbon resists irreversible side-reactions which are controlled predominantly by active, edge surface sites.
机译:研究了碳包覆石墨作为锂离子电池的负极。碳包覆的石墨颗粒是通过在800-1000度下对石墨和聚氯乙烯,PVC的混合物进行简单热处理而制得的。 C在氩气流中。碳涂层通过抑制溶剂化的锂离子嵌入,显着降低了碳酸亚丙酯基电解质中石墨的初始不可逆容量,并且还提高了初始充放电库仑效率。通过碳涂覆,石墨颗粒的比表面积大大增加。可以通过假设PVC-碳的涡轮层结构抵抗不可逆的副反应来解释这些发现,该副反应主要受活性边缘表面部位控制。

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