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PVDF-PEO/ZSM-5 based composite microporous polymer electrolyte with novel pore configuration and ionic conductivity

机译:基于PVDF-PEO / ZSM-5的复合微孔聚合物电解质,具有新颖的孔构型和离子电导率

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摘要

A novel composite microporous polymer electrolyte based on poly(vinylidene fluoride), poly(ethylene oxide), and microporous molecular sieves ZSM-5 (denoted as PVDF-PEO/ZSM-5) was prepared by a simple phase inversion technique. PEO can obviously improve the pore configuration, such as pore size, porosity, and pore connectivity of PVDF-based microporous membranes, results in a high room temperature ionic conductivity. Microporous molecular sieves ZSM-5 can further improve the mechanical strength of PVDF-PEO blends and form special conducting pathway in PVDF-PEO matrix by absorb liquid electrolyte in its two-dimensional interconnect channels. The high room temperature ionic conductivity combined with good mechanical strength implies that PVDF-PEO/ZSM-5 based composite microporous polymer electrolyte can be used as candidate electrolyte and/or separator material for high-performance rechargeable lithium batteries. (c) 2006 Elsevier B.V. All rights reserved.
机译:通过简单的相转化技术制备了一种新型的基于聚偏二氟乙烯,聚环氧乙烷和微孔分子筛ZSM-5(称为PVDF-PEO / ZSM-5)的复合微孔聚合物电解质。 PEO可以明显改善PVDF基微孔膜的孔构型,例如孔径,孔隙率和孔连通性,从而导致较高的室温离子电导率。 ZSM-5微孔分子筛可通过在二维互连通道中吸收液体电解质,进一步提高PVDF-PEO共混物的机械强度,并在PVDF-PEO基体中形成特殊的导电路径。高室温离子电导率与良好的机械强度相结合,意味着基于PVDF-PEO / ZSM-5的复合微孔聚合物电解质可用作高性能可再充电锂电池的候选电解质和/或隔板材料。 (c)2006 Elsevier B.V.保留所有权利。

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