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Temperature-dependent ionic conductivity and transport properties of LiClO4-doped PVA/modified cellulose composites

机译:LiClO4掺杂的PVA /改性纤维素复合材料的温度依赖性离子电导率和传输性能

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This paper presents the investigation on physicochemical properties and ionic conductivity of LiClO4-doped poly(vinyl alcohol) (PVA)/modified cellulose composites. The percolative behaviour of LiClO4 with de conductivity (sigma(dc)) for different LiClO4 weight fractions (p) related to transport dimensionality was also focused. The highest ionic conductivity of 9.79 x 10(-6) cm(-1) was observed for 20 wt% LiClO4 doping level at room temperature. The activation energies (E-g) were estimated using temperature-dependent conductivity, which follows the Arrhenius and Vogel-Tammann-Fulcher (VTF) relation. The dynamic fragility (f) and activation energy (E-g) vs. T-g, of polymer composites using equivalence of the both Williams-Landel-Ferry (WLF) and VTF equations were also correlated. Transport properties such as travel time of ions between sites (tau(0)), mobility (mu), diffusion coefficient (D) and number of transitions per unit time P(E) for normal cationic (Li+) hopping process of LiClO4-doped PVA/mCellulose composites have been investigated using the Rice and Roth model.
机译:本文介绍了掺LiClO4的聚乙烯醇/改性纤维素复合材料的理化性质和离子电导率的研究。还关注了LiClO4在不同的LiClO4重量分数(p)下与电导率相关的电导率(sigma(dc))的渗透行为。对于室温下20 wt%的LiClO4掺杂水平,观察到最高的离子电导率为9.79 x 10(-6)cm(-1)。活化能(E-g)使用与温度有关的电导率来估算,该电导率遵循Arrhenius和Vogel-Tammann-Fulcher(VTF)的关系。使用Williams-Landel-Ferry(WLF)和VTF方程的等价关系,聚合物复合材料的动态脆性(f)和活化能(E-g)与T-g也是相关的。掺杂LiClO4的常规阳离子(Li +)跳跃过程中的输运特性,例如离子在位点之间的传播时间(tau(0)),迁移率(mu),扩散系数(D)和每单位时间的跃迁数P(E)已使用莱斯和罗斯模型研究了PVA / m纤维素复合材料。

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