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Li(CF_3SO_2)_2N as an electrolytic salt for rechargeable lithium batteries with graphitized mesocarbon microbeads anodes

机译:Li(CF_3SO_2)_2N作为电解盐,用于带石墨化中碳微珠阳极的可充电锂电池

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摘要

The suitability of Li (CF_3SO_2)_ 2N, lithium bistrifluoromethylsulfonyl imide, as an electrolytic salt for a graphitized mesocarbon microbeads (MCMBs) anode is investigated via charge/discharge cycling tests and a.c. impedance spectroscopy. The application of Li(CF_3SO_2)_2N resulted in excellent discharge (corresponding to the de-intercalation of lithium ion from MCMBs) capacity and stable charge/discharge cycleability of the anode in a 1:1 mixture (by volume) of ethylene carbonate with dimethyl carbonate or diethyl carbonate. According to the a.c. impedance analysis, the Li (CF_3SO_2)_2N electrolyte systems maintained a stable interfacial resistance between the anode and the electrolytes during charging of the anode.
机译:通过充放电循环试验和交流电研究了Li(CF_3SO_2)_2N双三氟甲基磺酰锂锂作为石墨化中间碳微珠(MCMBs)阳极的电解质盐的适用性。阻抗谱。 Li(CF_3SO_2)_2N的应用导致了碳酸亚乙酯与二甲基丙烯酸1:1混合物(按体积计)中优异的放电容量(对应于MCMB中锂离子的脱嵌)和稳定的阳极充电/放电循环性。碳酸盐或碳酸二乙酯。根据交流在阻抗分析中,Li(CF_3SO_2)_2N电解质体系在阳极充电期间在阳极和电解质之间保持稳定的界面电阻。

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