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首页> 外文期刊>Journal of Materials Science >Characterization, microstructure, and gas sensitive response behavior of PEG/lithium salt polymer electrolyte films
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Characterization, microstructure, and gas sensitive response behavior of PEG/lithium salt polymer electrolyte films

机译:PEG /锂盐聚合物电解质膜的表征,微结构和气敏响应行为

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A composite polymer electrolyte film was prepared by dissolving polyethylene glycol (PEG) with different molecular weight in acetonitrile, and vapor-induced response behavior was investigated upon exposure to various chemical environments. The effect of lithium concentrations on ionic conductivity and response was discussed. The surface microporous structures and vapor sensitive conductivity of the films in the case of poly(vinylidene fluoride) (PVDF) were examined with the PVDF content changed. The crystalline and micro-phase isolation behavior were characterized by a differential scanning calorimeter, an environmental scanning electron microscope, a polarization microscope and a wide-angle X-ray diffraction. The experimental results indicated that PEG/Li+ salt composite films exhibited preferential responsive characteristics. The responsivities to ethanoic acid, chloroform, and acetone vapors were enhanced with molecular weight of PEG increased. The conductivity was increased at a higher lithium salt concentration, and also enhanced with PEG content increased, while the responsivities decreased. The formation of microporous structures on the surface of the mixed PEG/PVDF composite films enlarged their specific area and strikingly improved the responsive performances. The changes in conduction behavior were explained from the viewpoint of the swelling and free volume theories as well as a hydrogen bond interaction, combined with the structural and morphological analyses. The introduction of an ionogenic matter also has an important effect on ionic conductivity and responsiveness.
机译:通过将不同分子量的聚乙二醇(PEG)溶解在乙腈中制备复合高分子电解质膜,并在暴露于各种化学环境的情况下研究了蒸汽诱导的响应行为。讨论了锂浓度对离子电导率和响应的影响。在改变聚偏二氟乙烯(PVDF)的情况下,检查了薄膜的表面微孔结构和蒸气敏感性电导率。通过差示扫描量热仪,环境扫描电子显微镜,偏振显微镜和广角X射线衍射对结晶和微相的分离行为进行了表征。实验结果表明,PEG / Li + 盐复合膜表现出优先的响应特性。随着PEG分子量的增加,对乙酸,氯仿和丙酮蒸气的反应性增强。在较高的锂盐浓度下,电导率增加,并且随着PEG含量的增加,电导率也增加,而电导率下降。混合的PEG / PVDF复合膜表面微孔结构的形成扩大了其比表面积,并显着提高了响应性能。从溶胀和自由体积理论以及氢键相互作用的角度,结合结构和形态分析,解释了导电行为的变化。引入离子源物质也对离子电导率和响应度有重要影响。

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