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Lowering the operational temperature of all-solid-state lithium polymer cell with highly conductive and interfacially robust solid polymer electrolytes

机译:降低具有高导电性和界面牢固性的固态聚合物电解质的全固态锂聚合物电池的工作温度

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Novel solid polymer electrolytes (SPEs), comprising of comb polymer matrix grafted with soft and disordered polyether moieties (Jeffamine (R)) and lithium bis(fluorosulfonyl)imide (LiFSI) are investigated in all-solid-state lithium metal (Li degrees) polymer cells. The LiFSI/Jeffamine-based SPEs are fully amorphous at room temperature with glass transitions as low as ca. -55 degrees C. They show higher ionic conductivities than conventional poly(ethylene oxide) (PEO)-based SPEs at ambient temperature region, and good electrochemical compatibility with Li degrees electrode. These exceptional properties enable the operational temperature of Li degrees vertical bar LiFePO4 cells to be decreased from an elevated temperature (70 degrees C) to room temperature. Those results suggest that LiFSI/Jeffamine-based SPEs can be promising electrolyte candidates for developing safe and high performance all-solid-state Li degrees batteries.
机译:在全固态锂金属(Li度)中研究了新型固态聚合物电解质(SPE),该电解质由接枝有柔软无序的聚醚部分(Jeffamine(R))和双(氟磺酰基)酰亚胺锂(LiFSI)的梳状聚合物基质组成聚合物电池。基于LiFSI / Jeffamine的SPE在室温下是完全无定形的,玻璃化转变温度低至约。 -55°C。在环境温度范围内,它们显示出比常规聚环氧乙烷(PEO)基SPE高的离子电导率,并且与Li度电极具有良好的电化学兼容性。这些优异的性能使Li度垂直条状LiFePO4电池的工作温度从升高的温度(70摄氏度)降低到室温。这些结果表明,基于LiFSI / Jeffamine的SPE有望成为有望开发安全,高性能全固态Li度电池的电解质候选者。

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