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首页> 外文期刊>Bulletin of Materials Science >SU-8 photoresist-derived electrospun carbon nanofibres as high-capacity anode material for lithium ion battery
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SU-8 photoresist-derived electrospun carbon nanofibres as high-capacity anode material for lithium ion battery

机译:SU-8光致抗蚀剂衍生的电纺碳纳米纤维作为锂离子电池的高容量阳极材料

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摘要

A binder-free carbon nanofibres web over stainless-steel wafer current collector was fabricated by controlled pyrolysis of electrospun SU-8 photoresist nanofibres. Electrochemical performance of the as-prepared carbon nanofibres web was investigated by performing charge-discharge experiments at different current densities. At low current density (37.2 0.1C), SU-8-derived carbon nanofabric showed a large initial discharge capacity (1417 with sufficiently higher initial coulombic efficiency (55%). More importantly, this carbon nanofibres web also exhibited excellent rate performance with considerably higher specific capacities at higher current densities (358 at 1C). This superior electrochemical performance, in particular at high current rates, can be attributed to small lithium ion diffusion length and resilience in entangled carbon nanofibres to accommodate volume changes during charging and discharging.
机译:通过防纺SU-8光致抗蚀剂纳米纤维的控制热解制,通过不锈钢晶片集电器制造不锈钢晶片集电器的粘合剂的碳纳米纤维。 通过在不同电流密度下进行电荷放电实验来研究AS制备的碳纳米纤维网的电化学性能。 在低电流密度(37.2 0.1c),SU-8衍生的碳纳米谱显示出大的初始放电容量(具有足够高的初始库仑效率(55%)。更重要的是,这种碳纳米纤维网也具有很好的速率性能 在较高电流密度(1C时358处的较高的特定容量。这种卓越的电化学性能,特别是在高电流速率下,可以归因于小的锂离子扩散长度和缠绕碳纳米纤维的弹性,以适应充电和放电期间的体积变化。

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