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Natural flake graphite modified by mild oxidation and carbon coating treatment as anode material for lithium ion batteries

机译:通过温和的氧化和碳涂层处理改性天然片状石墨作为锂离子电池的阳极材料

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In this paper, natural flake graphite was treated by mild oxidation and carbon coating techniques. The effects of modification on the crystal structure, morphology and electrochemical performance were investigated. The results indicate that the interlayer distance of flake graphite increases, and shape operation of graphite particle occurs after modification. Electrochemical measurements show that the initial columbic efficiency of graphite anode material increases from 73.4% to 89.7% after mild oxidation treatment, and the reversible capacity of composite that coated with pyrolytic carbon is about 359.7mAhg"1, and its cycling performance is improved. The modification results in a decrease of electrochemical polarization of graphite anode and an increase of the diffusion coefficient of lithium in graphite. Thus, the rate capacity is improved.
机译:本文通过温和的氧化和碳涂层技术处理天然片石墨。研究了改性对晶体结构,形态和电化学性能的影响。结果表明,剥落石墨的层间距离增加,改性后,将发生石墨颗粒的形状操作。电化学测量表明,温和氧化处理后石墨阳极材料的初始牙牙效率从73.4%增加到89.7%,涂有热解碳的复合材料的可逆能力为约359.7mAhg“1,其循环性能得到改善。该改性导致石墨阳极电化学偏振的降低和石墨中锂扩散系数的增加。因此,提高了速率容量。

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