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Enhancement of the rate capability and cyclability of an Mg-C composite electrode for Li secondary batteries

机译:增强锂二次电池Mg-C复合电极的倍率能力和循环能力

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An Mg-C composite, prepared by high energy mechanical milling, was investigated as an anode material for lithium-ion batteries. Electrochemical tests demonstrated that the first charge and discharge capacities were 1810 and 1433 mA h g~(-1), respectively, with a coulombic efficiency for the first cycle of 80 percent. Ex situ XRD analyses combined with a differential capacity plot of the Mg-C composite electrode showed the phase changes during the electrochemical Li-Mg alloying/dealloying reaction. Significantly enhanced rate capability and reversibility of the electrochemical reaction of Mg with lithium were observed and the improvement in the electrochemical properties of the composite electrode was attributed to the high energy mechanical milling of Mg with carbon on the surface of the Mg-C composite.
机译:研究了通过高能机械研磨制备的Mg-C复合材料作为锂离子电池的负极材料。电化学测试表明,第一次充放电容量分别为1810和1433 mA h g〜(-1),第一循环的库仑效率为80%。异位XRD分析结合Mg-C复合电极的微分电容图显示了电化学Li-Mg合金化/脱合金反应过程中的相变。观察到Mg与锂的电化学反应的速率能力和可逆性显着提高,并且复合电极的电化学性能的改善归因于Mg-C复合材料表面上Mg与碳的高能机械研磨。

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