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Exploration on nano-composite fumed silica-based composite polymer electrolytes with doping of ionic liquid

机译:离子液体掺杂的纳米复合气相法二氧化硅基复合聚合物电解质的探索

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摘要

Fumed silica (SiO 2)-based composite polymer electrolytes were prepared by means of solution casing technique. Horizontal attenuated total reflectance-Fourier Transform Infrared (HATR-FTIR) study shows the complexation between polymer matrix and SiO_2. The highest ionic conductivity of (4.11 ± 0.01) × 10~(- 3) Scm - 1 is achieved upon inclusion of 8 wt.% of SiO_2. Three different regions have been observed in the frequency dependence-ionic conductivity study. The conductivity rises sharply with frequency at low frequency regime. It is followed by a frequency independent plateau region and sharp decrease in the conductivity at high frequency range. The dielectric permittivity (ε ') and dielectric loss (ε ") are decreased with increasing the frequency. This phenomenon is mainly attributed to the electrode polarization effect. The formation of electrical double layer has been proven in these dielectric permittivity studies. This indicates the non-Debye properties of the nano-composite polymer electrolytes.
机译:采用溶液包埋技术制备了气相法二氧化硅(SiO 2)基复合高分子电解质。水平衰减全反射傅里叶变换红外(HATR-FTIR)研究表明,聚合物基质与SiO_2之间存在络合作用。当包含8 wt。%的SiO_2时,可实现(4.11±0.01)×10〜(-3)Scm-1的最高离子电导率。在频率依赖性离子电导率研究中已观察到三个不同的区域。在低频状态下,电导率随频率急剧上升。紧随其后的是频率独立的平稳区域,并且在高频范围内电导率急剧下降。介电常数(ε')和介电损耗(ε”)随着频率的增加而减小,这主要归因于电极极化效应。在这些介电常数研究中已经证明了双电层的形成。纳米复合聚合物电解质的非德拜性质。

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