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首页> 外文期刊>Ionics >Structural, vibrational, thermal, and conductivity studies on proton-conducting polymer electrolyte based on poly (N-vinylpyrrolidone)
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Structural, vibrational, thermal, and conductivity studies on proton-conducting polymer electrolyte based on poly (N-vinylpyrrolidone)

机译:基于聚(N-乙烯基吡咯烷酮)的质子传导聚合物电解质的结构,振动,热和电导率研究

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摘要

The proton-conducting polymer electrolytes based on poly (N-vinylpyrrolidone) (PVP), doped with ammonium chloride (NH4C1) in different molar ratios, have been prepared by solution-casting technique using distilled water as solvent. The increase in amorphous nature of the polymer electrolytes has been confirmed by XRD analysis. The FTIR analysis confirms the complex formation of the polymer with the salt. A shift in glass transition temperature (Tg) of the PVP/NH4Cl electrolytes has been observed from the DSC thermograms which indicates the interaction between the polymer and the salt. From the AC impedance spectroscopic analysis, the ionic conductivity of 15 mol% NR4Cl-doped PVP polymer complex has been found to be maximum of the order of 2.51x 10~(-5)Son~(-1) at room temperature. The dependence of T_g and conductivity upon salt concentration has been discussed. The linear variation of the proton conductivity of the polymer electrolytes with increasing temperature suggests the Arrhenius type thermally activated process. The activation energy calculated from the Arrhenius plot for all compositions of PVP doped with NH4C1 has been found to vary from 0.49 to 0.92 eV. The dielectric loss curves for the sample 85 mol% PVP: 15 mol% NH4Cl reveal the low-frequency |3 relaxation peak pronounced at high temperature, and it may be caused by side group dipoles. The relaxation parameters of the electrolytes have been obtained by the study of TanS as a function of frequency.
机译:以蒸馏水为溶剂,采用溶液流延法制备了以不同摩尔比掺杂氯化铵(NH4Cl)的聚(N-乙烯基吡咯烷酮)(PVP)质子导电聚合物电解质。通过XRD分析已经证实了聚合物电解质的无定形性质的增加。 FTIR分析证实了聚合物与盐的复杂形成。从DSC热分析图中已经观察到PVP / NH 4 Cl电解质的玻璃化转变温度(Tg)的变化,表明聚合物与盐之间的相互作用。通过交流阻抗谱分析,发现在室温下,15 mol%NR4Cl掺杂的PVP聚合物配合物的离子电导率最大值约为2.51x 10〜(-5)Son〜(-1)。已经讨论了T_g和电导率对盐浓度的依赖性。聚合物电解质的质子电导率随温度升高而线性变化表明Arrhenius型热活化过程。已发现从Arrhenius图计算出的所有掺杂NH4Cl的PVP成分的活化能在0.49至0.92 eV之间。 85摩尔%PVP:15摩尔%NH4Cl的样品的介电损耗曲线显示了在高温下明显的低频| 3弛豫峰,这可能是由侧基偶极子引起的。通过研究TanS作为频率的函数已经获得了电解质的弛豫参数。

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