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首页> 外文期刊>Electrochimica Acta >Effect of the capacity design of activated carbon cathode on the electrochemical performance of lithium-ion capacitors
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Effect of the capacity design of activated carbon cathode on the electrochemical performance of lithium-ion capacitors

机译:活性炭正极容量设计对锂离子电容器电化学性能的影响

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摘要

Lithium-ion capacitors (LICs) are assembled with activated carbon (AC) cathode and pre-lithiated mesocarbon microbeads (MCMB) anode. The effect of AC cathode capacity design on the electrochemical performance of LIC is investigated by the galvanostatic charging-discharging and electrochemical impedance tests. As the designed capacity of AC positive electrode is lower than 50 mAhg(-1), the working potential of negative electrode is always in the low and stable plateau, which is conductive to the sufficient utilization and the working potential stability of positive electrode. When the designed capacity of positive electrode is higher than 50 mAhg(-1), the instability of negative electrode directly causes the reduced utilization and shortened working potential range of the positive electrode, which is responsible for the capacity attenuation and cycle performance deterioration of LIC. The positive electrode capacity design can realize the optimization of electrochemical performance of LIC. LIC50 exhibits the optimal electrochemical performance, high energy density up to 92.3 Whkg(-1) and power density as high as 5.5 kWkg(-1) (based on active material mass of two electrodes), excellent capacity retention of 97.0% after 1000 cycles. The power density and cycle performance of LIC can be further improved by reducing the AC positive electrode designed capacity. (C) 2014 Elsevier Ltd. All rights reserved.
机译:锂离子电容器(LIC)与活性炭(AC)阴极和预锂化的中间碳微珠(MCMB)阳极组装在一起。通过恒电流充放电和电化学阻抗测试研究了交流阴极容量设计对LIC电化学性能的影响。当交流正极的设计容量低于50 mAhg(-1)时,负极的工作电位始终处于较低的稳定水平,这有利于正极的充分利用和工作电位的稳定性。当正极的设计容量高于50 mAhg(-1)时,负极的不稳定性直接导致正极的利用率降低和工作电位范围缩短,这是LIC的容量衰减和循环性能下降的原因。 。正极容量设计可以实现LIC电化学性能的优化。 LIC50表现出最佳的电化学性能,高达92.3 Whkg(-1)的高能量密度和高达5.5 kWkg(-1)的功率密度(基于两个电极的活性材料质量),1000次循环后的出色的容量保持率为97.0% 。通过降低交流正极的设计容量,可以进一步提高LIC的功率密度和循环性能。 (C)2014 Elsevier Ltd.保留所有权利。

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