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Study of lithium/polypyrrole secondary batteries with Lithium as cathode and polypyrrole anode

机译:以锂为正极,聚吡咯为负极的锂/聚吡咯二次电池的研究

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摘要

Lithium/polypyrrole (Li/PPy) batteries were fabricated using lithium sheet as cathode, PPy as anode, micropor-ous membrane polypropylene/polyethylene/polypropylene (PP/PE/PP) composite as separator and LiPF_6/ethylene carbonate-dimethyl carbonate-methyl ethyl carbonate (EC-DMC-EMC) as electrolyte. Polypyrrole was prepared by chemical polymerization. Certain fundamental electrochemical performances were investigated. Properties of the batteries were characterized and tested by SEM, galvanostatic charge/discharge tests, cyclic voltammetry (CV), and a.c. impedance spectroscopy. The influences of separator, morphology, and conductivity of PPy anode, cold-molded pressure, and electric current on the performances of the batteries were studied. Using PP/PE/PP membranes as separator, the battery showed good storage stability and cycling property. The conductivity of materials rather than morphology affected the behavior of the battery. The higher the conductivity, the better performances the cells had. Proper cold-molded pressure 20 MPa of the anode pellet would make the properties of the cells good and the fitted charge/discharge current was 0.1 mA. The cells showed excellent performance with 97%-100% coulombic efficiency. The highest discharge capacity of 95.2 mAh/g was obtained.
机译:锂/聚吡咯(Li / PPy)电池以锂片为正极,PPy为阳极,微孔膜聚丙烯/聚乙烯/聚丙烯(PP / PE / PP)复合材料为隔膜,LiPF_6 /碳酸亚乙酯-碳酸二甲酯-甲基碳酸乙酯(EC-DMC-EMC)作为电解质。通过化学聚合制备聚吡咯。研究了某些基本的电化学性能。通过SEM,恒电流充电/放电测试,循环伏安法(CV)和交流电对电池的性能进行表征和测试。阻抗谱。研究了隔膜,PPy阳极的形貌和电导率,冷成型压力和电流对电池性能的影响。使用PP / PE / PP膜作为隔膜,该电池显示出良好的储存稳定性和循环性能。材料的导电性而不是形态会影响电池的性能。电导率越高,电池的性能越好。适当的冷成型压力20 MPa的阳极片将使电池性能良好,并且合适的充电/放电电流为0.1 mA。电池表现出优异的性能,库仑效率为97%-100%。获得的最高放电容量为95.2 mAh / g。

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