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Effects of the aspect ratio of the conductive agent on the kinetic properties of lithium ion batteries

机译:导电剂纵横比对锂离子电池动力学性能的影响

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We fabricated lithium-ion batteries (LIBs) using the Super P and carbon nanotubes (CNTs) as conductive agents to investigate the effect of the aspect ratio of conductive agent on the kinetic properties of LIB. The electrode fabricated with CNTs, which have a high aspect ratio (length: 200 mu m), exhibited outstanding rate capability at 30C despite of their low concentration, while the electrode fabricated with the carbon black showed poor rate capability. These results indicate that the aspect ratio of conductive agent influence the diffusion coefficient of lithium ions, which is calculated from the galvanostatic intermittent titration technique analysis, and that conductive agent should have high aspect ratio to improve the kinetic properties of LIBs. This study provides insights that are useful for designing high-performance LIBs by reducing the amount of conductive agent, leading to increased loading of active material.
机译:我们使用超级P和碳纳米管(CNT)作为导电剂制造锂离子电池(LIBS),以研究导电剂对LIB动力学性质的纵横比的效果。 用CNT制造的电极具有高纵横比(长度:200μm),尽管浓度低,但在30℃下表现出优异的速率能力,而用炭黑制造的电极表现出差的速率能力。 这些结果表明,导电剂的纵横比对锂离子的扩散系数影响,这是由电流间歇性滴定技术分析计算的,并且该导电剂应具有高纵横比以改善Libs的动力学性质。 本研究提供了用于通过减少导电剂的量来设计高性能libs的见解,从而导致活性材料的负载增加。

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    《RSC Advances》 |2019年第70期|共4页
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  • 正文语种 eng
  • 中图分类 化学;
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