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Effect of functionalized montmorillonite addition on the thermal properties and ionic conductivity of PVDF-PEG polymer electrolyte

机译:功能化蒙脱土添加对PVDF-PEG聚合物电解质的热性能和离子电导率的影响

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摘要

Composite microporous polymer electrolyte membranes comprising poly(vinylidene fluoride), PVDF, poly(ethylene glycol), PEG, and l-ethyl-3-methylimidazolium tetrafluorobo-rate functionalized montmorillonite (EMIm-MMT) were prepared by a phase inversion method. The EMIm-MMT was subjected to FTIR, WXRD, TGA and element analysis in order to better understand the intercalation of imidazolium cations in sodium montmorillonite (Na-MMT) through exchange with intermellar sodium ions and improved thermal stability compared to organic-montmorillonite (O-MMT). The studies of porosity, weight uptake, and ionic conductivity of composite microporous membrane were performed as a function of EMIm-MMT content. The addition of EMIm-MMT can greatly enhance the thermal stability of the polymer electrolyte membrane. The maximum conductivity at 25 ℃ was found to be 7.77 mS cm~(-1) for PVDF-PEG/6wt% EMIm-MMT.
机译:通过相转化法制备了包含聚偏二氟乙烯,PVDF,聚乙二醇,PEG和1-乙基-3-甲基咪唑四氟硼酸酯官能化蒙脱土(EMIm-MMT)的复合微孔聚合物电解质膜。对EMIm-MMT进行了FTIR,WXRD,TGA和元素分析,以更好地了解与有机蒙脱石(O-蒙脱土(O -MMT)。研究了复合微孔膜的孔隙率,重量吸收和离子电导率随EMIm-MMT含量的变化。 EMIm-MMT的加入可以大大提高聚合物电解质膜的热稳定性。发现PVDF-PEG / 6wt%EMIm-MMT在25℃时的最大电导率为7.77 mS cm〜(-1)。

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