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Ionic transport in P(VdF-HFP)-PEO based novel microporous polymer electrolytes

机译:P(VDF-HFP)离子传输 - 基于新型微孔聚合物电解质

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摘要

A novel microporous polymer electrolyte (MPE) comprising blends of poly(vinylidene fluoride-co-hexafluoropropylene) [P(VdF-HFP)] and polyethylene oxide (PEO) was prepared by phase inversion technique. It was observed that addition of PEO improved the pore configuration, such as pore size, pore connectivity and porosity of P(VdF-HFP) based membranes. The room temperature ionic conductivity was significantly enhanced. The highest porosity of about 65% and ionic conductivity of about 7 × 10~(-4)) S cm~(-1) was obtained when the weight ratio of PEO was 40%. The liquid electrolyte uptake was found to increase with increase in porosity and pore size. However, at higher weight ratio of PEO (>40%) porosity, pore size and ionic conductivity was decreased. This descending trend with further increase of PEO weight ratio was attributed to conglomeration effect of PEO at the pores.
机译:通过相转化技术制备包含聚(偏二氟乙烯 - 共六氟丙烯)[P(VDF-HFP)]和聚环氧乙烷(PEO)的共混物的新型微孔聚合物电解质电解质(MPE)。 观察到,添加PEO改善了基于孔径,孔径,孔径,孔隙连通性和基于P(VDF-HFP)的膜的孔隙率。 室温离子电导率显着提高。 当PEO的重量比为40%时,获得约65%和约7×10〜(-4))Scm〜(-1)的最高孔隙率。 发现液体电解质吸收随孔隙率和孔径的增加而增加。 然而,在PEO(> 40%)的较高重量比下,孔隙率和离子电导率降低。 这种下降趋势随着PEO重量比的进一步增加而归因于PEO在孔隙中的集团效应。

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