首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Preparation of Graphite/Nano-Powder Composite Particles and Applicability as Carbon Anode Material in a Lithium Ion Battery
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Preparation of Graphite/Nano-Powder Composite Particles and Applicability as Carbon Anode Material in a Lithium Ion Battery

机译:石墨/纳米粉复合粒子的制备及其作为锂离子电池中碳阳极材料的适用性

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摘要

Graphiteano-powder composite particles, which were prepared by coating nano-sized powder onto the surface of artificial mesophase graphite powder (MGP) in a mechanofusion system, were employed to modify the conventional carbon anode material in a lithium ion battery. The nano-size powder included nickel oxide (NiO) and ferric oxide (Fe2O3). The MGPano-powder composite particles were characterized using a scanning electron microscope, a laser particle size analyzer, a BET surface area analyzer and an X-ray powder diffractometer. The charge/discharge capacity of semi-batteries of lithium ion was measured using a battery charge and management system. The percentage of irreversible capacity decreased substantially from 7.98 (semi-battery with MGP carbon anode material) to 0.38% (semi-battery with MGPano-Fe2O3 composite particles carbon anode material) in the first round of charge/discharge tests. The maximum charge capacity increased from 288.07 (semi-battery with MGP carbon anode material) to 292.51 mA h/g (semi-battery with MGPano-Fe2O3 composite particles carbon anode material).
机译:通过在机械熔合系统中将纳米尺寸的粉末涂覆到人造中间相石墨粉末(MGP)的表面上而制备的石墨/纳米粉末复合颗粒被用于修饰锂离子电池中的常规碳阳极材料。纳米级粉末包括氧化镍(NiO)和氧化铁(Fe2O3)。使用扫描电子显微镜,激光粒度分析仪,BET表面积分析仪和X射线粉末衍射仪对MGP /纳米粉复合颗粒进行表征。使用电池充电和管理系统测量锂离子半电池的充电/放电容量。在第一轮充电/放电测试中,不可逆容量的百分比从7.98(带有MGP碳阳极材料的半电池)大幅降低至0.38%(带有MGP / nano-Fe2O3复合颗粒碳阳极材料的半电池)。最大充电容量从288.07(使用MGP碳负极材料的半电池)增加到292.51 mA h / g(使用MGP /纳米-Fe2O3复合颗粒碳负极材料的半电池)。

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