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首页> 外文期刊>Electrochimica Acta >Effect of ball-milling on the rate and cycle-life performance of graphite as negative electrodes in lithium-ion capacitors
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Effect of ball-milling on the rate and cycle-life performance of graphite as negative electrodes in lithium-ion capacitors

机译:球磨对锂离子电容器中石墨作为负极的速率和循环寿命性能的影响

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摘要

A commercial graphite is ball-milled and the pristine and ball-milled graphites are characterised for use as negative electrodes in lithium-ion capacitors (LICs). Ball milling graphite results in a decrease in discharge capacity when the charge rate is relatively slow, whereas, it leads to an increase in discharge capacity when the charge rate is high. When charged at 0.1 C, the discharge capacities of pristine, 3 h, 10 h and 30 h-milled materials at 6 C are 75, 69, 67 and 66% of theoretical capacity, respectively; however, when charged at 60 C, the discharge capacities of pristine, 3 h, 10 h and 30 h-milled materials, at 60 C, fall to 0.9, 13, 23 and 24% of theoretical capacity, respectively (theoretical capacity: 372 mAh g~(-1), for LiC_6 stoichiometry). This difference in the discharge rate capability behaviour of the pristine and ball-milled graphites with charge rate is attributed to the interplay of two different charge storage mechanisms: Li-ion intercalation and Li-ion adsorption that co-exist; but the later becomes more significant for milled samples. In terms of cycle-life performance, pristine and ball-milled graphites follow similar trends observed for their rate capability behaviour.
机译:商业石墨经过球磨,原始和球磨的石墨的特征是用作锂离子电容器(LIC)的负极。球磨石墨在充电速率相对较慢时导致放电容量降低,而在充电速率高时导致放电容量增加。当在0.1 C下充电时,在6 C下原始磨料,3 h,10 h和30 h研磨材料的放电容量分别为理论容量的75%,69%,67%和66%。但是,在60°C充电时,原始的3 h,10 h和30 h研磨材料在60°C时的放电容量分别降至理论容量的0.9%,13%,23%和24%(理论容量:372% mAh g〜(-1),用于LiC_6化学计量。原始石墨和球磨石墨的放电速率能力行为与电荷速率的这种差异归因于两种不同的电荷存储机制的相互作用:锂离子插层和锂离子吸附共存;但是对于研磨样品而言,后者变得更加重要。就循环寿命性能而言,原始石墨和球磨石墨的速率能力行为遵循相似的趋势。

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