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Improve the Overall Performances of Lithium Ion Batteries by a Facile Method of Modifying the Surface of Cu Current Collector with Carbon

机译:通过碳修饰Cu集电器表面的简便方法提高锂离子电池的综合性能。

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摘要

We have developed a facile and mass-producible strategy named electric discharge method to successfully improve the surface properties of Cu foils with rough carbon layer. Electrochemical tests in half-cells demonstrate that the coated carbon layer can significantly reduce the polarization resistance and enhance the reversible capacity of graphite anode when utilizing the Cu foils as current collector for lithium ion batteries. More importantly, the developed carbon coated Cu anode current collector can also improve the overall performances of LiFePO4 full cells in terms of enhanced rate capability (from 887.9 to 946.3 mAh at 4C rate), reduced polarization voltage (11.7 mV lower at 4C rate), longer cycle life (about 650 increased cycles if taking 80 % capacity retention as the end of cycle life when used at 1 C rate) as well as improved low-temperature performance (capacity retention: 42.87% vs. 38.85% at -20 degrees C). (C) 2015 Published by Elsevier Ltd.
机译:我们已经开发出一种简便且可大量生产的策略,称为放电法,以成功改善具有粗糙碳层的Cu箔的表面性能。在半电池中的电化学测试表明,当将铜箔用作锂离子电池的集电器时,涂覆的碳层可以显着降低极化电阻并增强石墨阳极的可逆容量。更重要的是,已开发的碳涂层铜阳极集电器还可以提高LiFePO4全电池的整体性能,包括增强的倍率能力(4C速率下从887.9到946.3 mAh),极化电压降低(4C速率下降低11.7 mV),更长的循环寿命(如果在1 C速率下使用,如果将80%的容量保持作为循环寿命的终点,则大约增加650个循环),并改善低温性能(容量保持率:42.87%,而在-20摄氏度时为38.85% )。 (C)2015由Elsevier Ltd.出版

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