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Morphology, thermal, electrical and electrochemical stability of nano aluminium-oxide-filled polyvinyl alcohol composite gel electrolyte

机译:纳米氧化铝填充聚乙烯醇复合凝胶电解质的形貌,热,电和电化学稳定性

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In the present work, an attempt has been made to develop nano aluminium oxide (Al2O3)-filled polyvinyl alcohol (PVA) composite gel electrolytes. Surface morphological studies, thermal behaviour, electrochemical stability and electrical characterization of these composite gel electrolytes have been performed. An increase in the concentration of Al2O3 in composite gel electrolytes increases the amorphous characteristics of pure PVA. Bulk conductivity of composite gel electrolytes increases by an order of magnitude on addition of a nano filler. Maximum conductivity of 5·81 × 10−2 S/cm is observed for 6 wt% Al2O3-filled polymer gel composite electrolytes. Temperature dependence of electrical conductivity shows a combination of Arrhenius and Vogel-Tamman-Fulcher (VTF) nature. Maximum current stability during oxidation and reduction cycle is noticed for 6 wt% Al2O3-filled PVA composite electrolyte, viz. ±1·65 V.
机译:在目前的工作中,已经尝试开发填充纳米氧化铝(Al 2 O 3 )的聚乙烯醇(PVA)复合凝胶电解质。这些复合凝胶电解质的表面形态学研究,热行为,电化学稳定性和电学特性已得到执行。复合凝胶电解质中Al 2 O 3 的浓度增加会增加纯PVA的非晶态特性。添加纳米填料后,复合凝胶电解质的体积电导率增加一个数量级。填充6 wt%Al 2 O 3 的聚合物凝胶复合电解质的最大电导率为5·81×10 −2 S / cm 。电导率的温度依赖性显示出阿伦尼乌斯(Arrhenius)和Vogel-Tamman-Fulcher(VTF)性质的结合。氧化和还原循环期间最大电流稳定性在6 wt%的Al 2 O 3 填充的PVA复合电解质中表现出来,即。 ±1·65V。

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