首页> 外文期刊>Journal of Applied Polymer Science >EFFECTS OF POLYMER MATRIX AND SALT CONCENTRATION ON THE IONIC CONDUCTIVITY OF PLASTICIZED POLYMER ELECTROLYTES
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EFFECTS OF POLYMER MATRIX AND SALT CONCENTRATION ON THE IONIC CONDUCTIVITY OF PLASTICIZED POLYMER ELECTROLYTES

机译:聚合物基体和盐浓度对高分子聚合物电解质离子电导率的影响

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摘要

Two polar polymers with different dielectric constants, poly(vinylidene fluoride) (PVDF) and poly (ethylene oxide) (PEG), were each blended with a chlorine-terminated poly(ethylene ether) (PEG) and one of the two salts, LiBF4 and LiCF3CO2, to form PEC-plasticized polymer electrolytes. The room-temperature ionic conductivity of the PEC-plasticized polymer electrolytes reached a value as high as 10(-4) S/cm. The room-temperature ionic conductivity of the PVDF-based polymer electrolytes displayed a stronger dependence on the PEC content than did the PEG-based polymer electrolytes. In PVDF/PEC/LiBF4 polymer electrolytes, the dynamic ionic conductivity was less dependent on temperature and more dependent on the PEC content than it was in PEO/PEC/LiBF4 polymer electrolytes. The highly plasticized PVDF-based polymer electrolyte film with a PEC content greater than CF4 (CF4 defined as the molar ratio of the repeat units of PEC to those of PVDF equal to 4) was self-supported and nonsticky, while the corresponding PEG-based polymer electrolyte film was sticky. In these highly plasticized PVDF-based polymer elec trolytes, the curves of the room-temperature ionic conductivity vs. the salt concentration were convex because the number of carrier ions and the chain rigidity both increased with increase of the salt content. The maximum ionic conductivity at 30 degrees C was independent of the PEC content, but it depended on the anion species of the lithium salts in these highly plasticized polymer electrolytes. (C) 1995 John Wiley and Sons, Inc. [References: 19]
机译:将两种具有不同介电常数的极性聚合物,聚偏二氟乙烯(PVDF)和聚环氧乙烷(PEG),分别与氯封端的聚(乙烯醚)(PEG)和两种盐之一LiBF4混合和LiCF3CO2,形成PEC增塑的聚合物电解质。 PEC增塑的聚合物电解质的室温离子电导率达到高达10(-4)S / cm的值。与基于PEG的聚合物电解质相比,基于PVDF的聚合物电解质的室温离子电导率显示出对PEC含量的更强的依赖性。与在PEO / PEC / LiBF4聚合物电解质中相比,在PVDF / PEC / LiBF4聚合物电解质中,动态离子电导率对温度的依赖性较小,而对PEC含量的依赖性更大。 PEC含量大于CF4(CF4定义为PEC重复单元与PVDF重复单元的摩尔比等于4)的高度增塑的PVDF基聚合物电解质膜是自支撑的,不粘,而相应的PEG基聚合物电解质膜发粘。在这些高度增塑的基于PVDF的聚合物电解质中,室温离子电导率与盐浓度的关系曲线呈凸形,因为随着盐含量的增加,载流子离子的数量和链的刚性均增加。 30摄氏度时的最大离子电导率与PEC含量无关,但取决于这些高度增塑的聚合物电解质中锂盐的阴离子种类。 (C)1995 John Wiley and Sons,Inc. [参考:19]

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