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Development of a PEO-based lithium ion conductive epoxy resin polymer electrolyte

机译:一种基于PEO的锂离子导电环氧树脂聚合物电解质的研制

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摘要

Epoxy resins have a newly found role as polymer hosts in solid and gel polymer electrolyte systems. Originally sought for their mechanical properties, advantages also include high atom economy and minimal waste stream in their preparation. This report details solid state polymer electrolytes prepared with PEO-based epoxy resins cured with 4,4'-methylenebis(cyclohexylamine) and doped with a solution of lithium salts in PC. The resulting solid state polymer electrolyte has room temperature conductivity nearing 10(-3) S cm(-1) and notable mechanical strength (up to 970 kPa ultimate tensile strength and 2.6 MPa ultimate compressive strength). Chemical and thermal analyses give insight into the molecular structure and curing behavior of the solid state polymer electrolyte relative to lithium salt concentration as well as over time. The effects of salt solubility on composition and conductivity of the electrolyte are further elucidated through computational studies of ion behavior in a PEO membrane.
机译:环氧树脂具有新发现的作用,作为固体和凝胶聚合物电解质系统中的聚合物宿主。最初寻求其机械性能,优势还包括高原子经济和其准备中最小的废物流。该报告详细说明了用PEO的环氧树脂制备的固态聚合物电解质用4,4'-亚甲基甲基(环己胺)固化并掺杂有锂盐的溶液。得到的固态聚合物电解质具有靠近10(-3)厘米(-1)的室温电导率和值得注意的机械强度(高达970kPa的极限拉伸强度和2.6MPa的最终抗压强度)。化学和热分析能够深入了解固态聚合物电解质相对于锂盐浓度以及随时间的分子结构和固化行为。通过对PEO膜中的离子行为的计算研究,进一步阐明了盐溶解度对电解质组成和电导率的影响。

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