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首页> 外文期刊>Journal of Materials Science >Preparation, structure, and electrochemical performance of anodes from artificial graphite scrap for lithium ion batteries
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Preparation, structure, and electrochemical performance of anodes from artificial graphite scrap for lithium ion batteries

机译:锂离子电池人造石墨废料的制备,结构及电化学性能

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摘要

Artificial graphite scrap prepared from petroleum coke with low degree of graphitization was further graphitized under various conditions. Different categories of coke were also treated with the optimum technology. The prepared samples were characterized with X-ray diffraction, ash content determination, morphology observation, and galvanostatic charge and discharge. It was shown in the experiments that the heat treatment temperature should be increased to 2800 °C to remove impurities. Slow heating rate and evacuation technology were beneficial to the growth of graphite crystallite and the improvement of discharge capacity. And the latter condition possessed the larger influences, especially on the growth of crystallite dimension in the b axis direction, degree of graphitization, and discharge capacity. The sample D-3000 prepared from pure needle coke possessed the maximum discharge capacity of 342.1 mAhg~(-1) among all prepared samples. The linear regression equations between the volume of graphite crystallite and discharge capacity were established.
机译:将低石墨化度的石油焦制得的人造石墨废料在各种条件下进一步石墨化。还使用最佳技术处理了不同种类的焦炭。通过X射线衍射,灰分测定,形态观察和恒电流充放电对制备的样品进行表征。实验表明,热处理温度应提高到2800°C以除去杂质。缓慢的加热速度和抽真空技术有利于石墨微晶的生长和放电容量的提高。后一种条件的影响较大,特别是对b轴方向晶粒尺寸的增长,石墨化程度和放电容量的影响。在所有制备的样品中,由纯针状焦制备的样品D-3000的最大放电容量为342.1 mAhg〜(-1)。建立了石墨微晶体积与放电容量之间的线性回归方程。

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