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Effect of High Ammonium Salt Concentration and Temperature on the Structure Morphology and Ionic Conductivity of Proton-Conductor Solid Polymer Electrolytes Based PVA

机译:高铵盐浓度和温度对质子导体固体聚合物电解质PVA结构形貌和离子电导率的影响

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摘要

Polyvinyl alcohol (PVA) based proton-conducting solid polymer electrolyte was prepared with a high salt concentration of ammonium nitrate (NH4NO3) by the technique of solvent casting. From the X-ray diffraction studies, the semicrystalline nature of PVA with the inclusion of NH4NO3 was studied. XRD analysis indicates that the highest ion conductive sample exhibits the minimum crystalline nature. The decreasing trend of Jonscher-exponent with temperature rise reveals that the present system is insured by the correlated barrier hopping (CBH) model. The maximum room temperature conductivity was found to be 5.17 × 10−5 S/cm for PVA loaded 30 wt.% of NH4NO3. The ionic transport of the proton-conducting solid polymer electrolyte was studied at the temperature range of 303–353 K. The conductivity-temperature relationship of the systems was analyzed using both the Arrhenius and Vogel–Tammann–Fulcher (VTF) models to explain the ionic hopping mechanism for the system.
机译:通过溶剂浇铸技术,用高盐浓度(NH 4 NO 3)制备基于聚乙烯醇(PVA)的质子传导固体聚合物电解质。从X射线衍射研究中,研究了包含NH 4 NO 3的PVA的半结晶性质。 XRD分析表明最高离子导电样品表现出最小的结晶性质。追随温度升高的Jonscher-exconent的趋势揭示了本系统由相关的屏障跳跃(CBH)模型的保险。最高室温导电性被发现为PVA为5.17×10-5 s / cm,用于30重量%的pVA。占NH4NO3的%。在303-353k的温度范围内研究了质子传导固体聚合物电解质的离子传输。使用Arrhenius和Vogel-Tammann-Futcher(VTF)模型来分析系统的电导率 - 温度关系来解释系统的离子跳跃机制。

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