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Thermal, electrical and optical studies on the poly(vinyl alcohol) based polymer electrolytes

机译:聚乙烯醇基聚合物电解质的热,电和光学研究

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Solid polymer proton conductors comprising of poly(vinyl alcohol), ammonium acetate and water have been prepared by solution cast method for different NH_4~+/OH~- ratios. The XRD spectra for the electrolyte indicate that the amorphous nature of PVA increases with the concentration of ammonium acetate. The DSC curves show the low glass transition temperature for the ratio (NH_4~+/OH~-) = 0.25 which relates to higher conductivity of the sample. The ionic conductivity at room temperature depends strongly on NH_4~+/OH~- ratios. The variation of electrical conductivity with temperature showed two regions of activation above and below glass transition temperature. The optical absorption studies show the similar trend for pure PVA and salt-doped PVA with different absorption intensity. The direct and indirect band gap energy is observed to be constant for pure PVA and salt-doped PVA samples and found to be 5.4 eV and 4.8 eV, respectively. The dc polarization measurement shows that the conductivity is mainly due to ions.
机译:针对不同的NH_4〜+ / OH〜-比例,采用溶液流延法制备了由聚乙烯醇,醋酸铵和水组成的固体聚合物质子导体。电解质的XRD光谱表明,PVA的无定形性质随乙酸铵的浓度而增加。 DSC曲线显示出较低的玻璃化转变温度,比率(NH_4〜+ / OH〜-)= 0.25,这与样品的较高电导率有关。室温下的离子电导率在很大程度上取决于NH_4〜+ / OH〜-的比率。电导率随温度的变化显示出在玻璃化转变温度之上和之下的两个激活区域。光学吸收研究表明,具有不同吸收强度的纯PVA和盐掺杂PVA的趋势相似。对于纯PVA和盐掺杂PVA样品,观察到的直接和间接带隙能量是恒定的,分别为5.4 eV和4.8 eV。直流极化测量表明,电导率主要归因于离子。

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