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Electrochemical performance of modified synthetic graphite for lithium ion batteries

机译:锂离子电池改性合成石墨的电化学性能

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The carbon-coated composite ha's been manufactured and investigated as the negative electrode for Li-ion batteries. The carbon-coated composite powders are prepared by a simple mixing of two types of synthetic graphite particles (SFG6 and SFG44) with polyvinylchloride powders and heating to a temperature between 800 and 1100degreesC under an argon gas flow.As a result of the carbon-coating treatment, the flake particles of the original graphites changed into a bulky shape of carbon-coated composite with a largely increased particle size due to aggregation through the treatment. It is shown that carbon-coated composite electrodes for the two types of graphite have much lower irreversible loss than the original graphites and coulombic efficiency of similar to91% in the first cycle in a PC-based electrolyte. The carbon coating treatment improves the cycling performance. Despite their coarse morphology due to aggregation, carbon-coated composite electrodes show the enhanced high rate capabilities.(C) 2005 Springer Science + Business Media, Inc.
机译:已经制造出碳包覆的复合材料,并将其用作锂离子电池的负极。通过将两种类型的合成石墨颗粒(SFG6和SFG44)与聚氯乙烯粉末简单混合并在氩气流下加热至800至1100摄氏度的温度来制备碳包覆的复合粉末。通过处理,原始石墨的薄片状颗粒变为大块形状的碳涂层复合材料,由于处理过程中的聚集,其粒径大大增加。结果表明,用于两种类型石墨的碳包覆复合电极具有比原始石墨低得多的不可逆损耗,并且在基于PC的电解质中的第一个循环中库仑效率接近91%。碳涂层处理改善了循环性能。尽管由于聚集而形貌粗糙,但碳涂层复合电极仍显示出更高的高倍率能力。(C)2005 Springer Science + Business Media,Inc.

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