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[PEI-SiO _2]:[LiTFSI]nanocompositepolymerelectrolytes: Ion conductionandopticalproperties

机译:[PEI-SiO _2]:[l ITF SI]nano composite polymer electrolytes: ion conduction and optical properties

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摘要

Ion conductivity and optical properties were investigated for polymer electrolytes based on poly (ethyleneimine) and lithium bis(trifluoromethylsulfonyl)imide and also containing up to 9 wt.% of 7-nm-diameter SiO _2 nanoparticles. The [N]:[Li] molar ratio was kept constant at 50:1. Impedance measurements were performed in the frequency range 10 ~(-2)10 ~7 Hz and between the temperatures 20 and 70°C with an applied ac voltage of 1 V. Spectrophotometric data of total and diffuse transmittance were taken between the wavelengths 300 and 2500 nm. The bulk impedance was fitted to a conductive Havriliak-Negami circuit model. The ion conductivity increased monotonically for increasing SiO _2 contents; specifically its room temperature value went from 8.5×10 ~7 S/cm without nanoparticles to 3.8×10 ~5 S/cm for 8 wt.% of SiO _2 while the diffuse transmittance remained at ~1% so that optical clarity prevailed.
机译:研究了基于聚(乙烯亚胺)和双(三氟甲基磺酰基)酰亚胺锂的聚合物电解质的离子电导率和光学性能,该电解质还包含高达9 wt。%的直径为7 nm的SiO _2纳米颗粒。 [N]:[Li]摩尔比保持恒定在50∶1。在10〜(-2)10〜7 Hz的频率范围内,在20至70°C的温度范围内,施加1 V交流电压,进行阻抗测量。在波长300与波长之间获取总透射率和漫透射率的分光光度数据。 2500纳米体阻抗适合于导电的Havriliak-Negami电路模型。随着SiO _2含量的增加,离子电导率单调增加。具体来说,其室温值从不含纳米粒子的8.5×10〜7 S / cm上升到8 wt。%SiO _2的3.8×10〜5 S / cm,而漫透射率保持在〜1%,因此光学透明性占优势。

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