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Impedance and ionic transport properties of proton-conducting electrolytes based on polyethylene oxide/methylcellulose blend polymers

机译:基于聚环氧丙烷/甲基纤维素混合物聚合物的质子传导电解质的阻抗和离子传输性能

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Proton-conducting polymer electrolyte films were prepared by dissolving NH4I salt in polyethylene oxide/methylcellulose (PEO/MC) blend polymers using the solution cast technique. The semi-crystalline nature of the sample was identified from the X-ray diffraction (XRD) pattern. The surface morphology on the electrical conductivity was analyzed by scanning electron microscopy (SEM). The highest ionic conductivity of7.62×10?5S/cmwas achieved at room temperature for the sample containing 30?wt. % of NH4I. The temperature dependence of the Jonscher's exponent shows that the conduction mechanism can be well represented by the overlapping large polaron tunneling (OLPT) model. The electrical conductivity enhancement was analyzed by the Rice and Roth model, which showed that the increase in the salt concentration caused an increment in the mobility and the diffusion coefficient of the ions. For all prepared samples, the highest value of conductivity was associated with the minimum value of activation energy. The dielectric data were analyzed for the highest ionic conducting sample at various temperatures to clarify an important factor of the ion conduction. The non-Debye behavior of the samples can be expressed from the electric modulus formalism and the dielectric properties of the electrolytes that have been proven by the incomplete semicircular arc of the Argand plots.
机译:使用溶液浇铸技术将聚环氧乙烷/甲基纤维素(PEO / MC)共混聚合物溶解NH4I盐来制备质子传导聚合物电解质膜。从X射线衍射(XRD)图案中鉴定样品的半结晶性质。通过扫描电子显微镜(SEM)分析了导电性的表面形态。在室温下在室温下实现的最高离子电导率为7.62×10?5S / cmwas,用于含有30μl的样品。 NH4i%。 Jonscher的指数的温度依赖性表明导通机构可以通过重叠的大型偏振子隧道(OLPT)模型来良好地表示。水稻和罗斯模型分析了电导率增强,表明盐浓度的增加导致离子的迁移率和扩散系数增加。对于所有制备的样品,电导率的最高值与激活能量的最小值相关。分析介电数据以在各种温度下进行最高离子导电样品,以阐明离子传导的重要因素。样品的非去脱德行为可以从电模型形式主义和通过仲裁图的不完全半圆形弧被证明的电解质的电解质的介电性能表达。

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