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Nanocomposite Polymer Electrolytes: Effect of Nanosize Fumed Silica and Plasticizers on Conductivity Behavior

机译:纳米复合聚合物电解质:气相法二氧化硅和增塑剂对电导行为的影响

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Nanocomposite polymer electrolytes have been synthesized by dispersing fumed silica (with average particle size 7 nm) to polyethylene oxide (PEO) based polymer electrolytes containing ammonium bifluoride (NH_4HF_2). Although the addition of plasticizers viz. propylene carbonate (PC) and dimethyl carbonate (DMC) results in conductivity enhancement, it also leads to deterioration in mechanical properties of polymer electrolytes. However, the addition of nano size fumed silica to plasticized polymer electrolytes has been found to result in conductivity enhancement, along with better mechanical properties, and maximum conductivity of 1.55 x 10~(-4) S/cm (at 25 °C) has been observed, which is two orders of magnitude higher than for PEO-NH_4HF_2 (5.96 x 10~(-6) S/cm). The increase in free ion concentration and amorphous content with the addition of plasticizer has been studied by FTIR and XRD. The dependence of conductivity on the concentration of plasticizer, fumed silica and temperature has also been studied.
机译:纳米复合聚合物电解质是通过将气相二氧化硅(平均粒径为7 nm)分散到含有氟化氢铵(NH_4HF_2)的聚环氧乙烷(PEO)基聚合物电解质中来合成的。虽然添加了增塑剂即。碳酸亚丙酯(PC)和碳酸二甲酯(DMC)导致电导率提高,也导致聚合物电解质的机械性能下降。然而,已发现将纳米级气相法二氧化硅添加到增塑的聚合物电解质中可提高电导率,并具有更好的机械性能,并且最大电导率为1.55 x 10〜(-4)S / cm(在25°C下)观察到,它比PEO-NH_4HF_2高出两个数量级(5.96 x 10〜(-6)S / cm)。 FTIR和XRD研究了添加增塑剂后自由离子浓度和无定形含量的增加。还研究了电导率对增塑剂,气相二氧化硅和温度的依赖性。

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