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High Performance Lithium-ion Battery Electrode: Silicon Coated on Vertically Aligned Carbon Nanofibers

机译:高性能锂离子电池电极:硅涂在垂直对齐的碳纳米纤维上

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This study reports a high-performance hybrid lithium-ion anode material using coaxially coated silicon shells on vertically aligned carbon nanofiber (VACNF) cores. The robust bush-like highly conductive VACNFs effectively connect high-capacity silicon shells for lithium-ion storage. Such architecture allows the Si shells to freely expand/contract in the radial direction during lithium-ion insertion/extraction. A high specific capacity of 3000-3650 mAh(g_(si))~(-1) was obtained at C/1 rate, comparable to the maximum value of amorphous Si, and ~89% of the capacity was retained after 100 charge-discharge cycles. The lithium-ion storage capacity remains nearly the same from C/10 to C/0.5 rates. The ability to obtain high capacity at significantly improved power rates while maintaining the extraordinary cycle stability demonstrates the utilization of the unique properties of such hybrid architecture for lithium-ion batteries.
机译:该研究在垂直取向碳纳米纤维(VACNF)芯上使用同轴涂覆的硅壳报告了高性能混合锂离子阳极材料。稳健的衬套高导电Vacnfs有效地连接用于锂离子储存的高容量硅壳。这种结构允许Si壳在锂离子插入/提取期间在径向方向上自由地扩展/收缩。在C / 1的速率下获得高比容量(G_(Si))〜(-1),与无定形Si的最大值相当,并且在100次充电之后保留〜89%的容量 - 排放循环。锂离子储存容量与C / 10至C / 0.5速率几乎相同。在保持非凡循环稳定性的同时以显着提高的功率率获得高容量的能力演示了利用这种混合架构进行锂离子电池的独特性质。

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