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Gel Polymer Electrolytes Containing Anion-Trapping Boron Moieties for Lithium-Ion Battery Applications

机译:锂离子电池应用中含有阴离子陷阱硼部分的凝胶聚合物电解质

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摘要

Gel polymer electrolytes (GPEs) based on semi-interpenetrating polymer network (IPN) structure for lithium-ion batteries were prepared by mixing boron-containing cross-linker (BC) composed of ethylene oxide (EO) chains, cross-linkable methacrylate group, and anion-trapping boron moiety with poly(vinylidene fluoride) (PVDF) followed by ultraviolet light-induced curing process. Various physical and electrochemical properties of the GPEs were systematically investigated by varying the EO chain length and boron content. Dimensional stability at high temperature without thermal shrinkage, if any, was observed due to the presence of thermally stable PVDF in the GPEs. GPE having 80 wt % of BC and 20 wt % of PVDF exhibited an ionic conductivity of 4.2 mS cm(-1) at 30 degrees C which is 1 order of magnitude larger than that of the liquid electrolyte system containing the commercial Celgard separator (0.4 mS cm(-1)) owing to the facile electrolyte uptake ability of EO chain and anion-trapping ability of the boron moiety. As a result, the lithium-ion battery cell prepared using the GPE with BC showed an excellent cycle performance at 1.0 C maintaining 87% of capacity during 100 cycles.
机译:通过混合由环氧乙烷(EO)链,可交联的甲基丙烯酸酯基团组成的含硼交联剂(BC),制备用于锂离子电池的基于半互穿聚合物网络(IPN)结构的凝胶聚合物电解质(GPE),用聚偏二氟乙烯(PVDF)捕获阴离子的硼部分,然后进行紫外线诱导的固化过程。通过改变EO链长和硼含量,系统地研究了GPE的各种物理和电化学性质。由于在GPE中存在热稳定的PVDF,因此观察到了高温下的尺寸稳定性而没有热收缩(如果有的话)。具有30 wt%的BC和20 wt%的PVDF的GPE在30摄氏度时显示出4.2 mS cm(-1)的离子电导率,该电导率比包含市售Celgard隔膜(0.4 mS cm(-1))归因于EO链的电解质吸收能力和硼部分的阴离子捕获能力。结果,使用具有BC的GPE制备的锂离子电池单元在1.0C下表现出优异的循环性能,在100次循环中保持87%的容量。

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