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Phase-separated polymer electrolyte based on poly(vinyl chloride)/poly(ethyl methacrylate) blend

机译:基于聚氯乙烯/聚甲基丙烯酸乙酯共混物的相分离聚合物电解质

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摘要

The characteristics of polymer electrolytes based on a poly(vinyl chloride) (PVC)/poly(ethyl methacrylate) (PEMA) blend are reported. The PVC/PEMA based polymer electrolyte consists of an electrolyte-rich phase that acts as a conducting channel and a polymer-rich phase that provides mechanical strength. The dual phase was simply developed by a single-step coating process. The mechanical strength of the PVC/PEMA based polymer electrolyte was found to be much higher than that of a previously reported PVC/PMMA-based polymer electrolyte (poly(methyl methacrylate), PMMA) at the same PVC content, and even comparable with that of the PVC-based polymer electrolyte. The blended polymer electrolytes showed ionic conductivity of higher than 10~(-3) S cm~(-1) and electrochemical stability up to at least 4.3 V. A prototype battery, which consists of a LiCoO_2 cathode, a MCMB anode, and PVC/PEMA-based polymer electrolyte, gives 92% of the initial capacity at 100 cycles upon repeated charge-discharge at the 1 C rate.
机译:报道了基于聚(氯乙烯)(PVC)/聚(甲基丙烯酸乙酯)(PEMA)共混物的聚合物电解质的特性。基于PVC / PEMA的聚合物电解质由充当导电通道的富电解质相和提供机械强度的富聚合物相组成。双相仅通过一步涂覆工艺即可开发。发现在相同的PVC含量下,基于PVC / PEMA的聚合物电解质的机械强度比以前报道的基于PVC / PMMA的聚合物电解质(聚甲基丙烯酸甲酯,PMMA)的机械强度高得多,甚至与之相当。 PVC基聚合物电解质。共混聚合物电解质的离子电导率高于10〜(-3)S cm〜(-1),电化学稳定性至少为4.3V。原型电池由LiCoO_2阴极,MCMB阳极和PVC组成基于/ PEMA的聚合物电解质在1 C速率下反复充放电时,在100个循环中可提供92%的初始容量。

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