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Structural, thermal, electrical, and dielectric properties of synthesized nanocomposite solid polymer electrolytes

机译:合成的纳米复合固体聚合物电解质的结构,热,电和介电性能

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In the present article, polyvinyl alcohol (PVA) polymer, sodium iodide (Nal) salt, and fumed silica nanoparticles nanofiller have been used for the preparation of solid polymer electrolyte films. Fourier transform infrared spectroscopy has been performed to study the vibrational change due to the complexation among polymer, salt, and nanofiller. X-Ray diffraction has been carried out to study the structural changes in the PVA:Nal (60:40) polymer electrolyte films with fumed silica nanoparticles as dopant. Differential scanning calorimetry studies show decreasing trend in the glass transition temperature for nanocomposite polymer electrolyte films. Thermogravimetric analysis has been performed to study the thermal degradation of the sample. Determination of transference number using Wagner's polarization technique indicates that the ions are the dominant mobile species. Maximum conductivity of approximately 3.8 × 10~(-3) S cm~(-1) at room temperature has been estimated for PVA:Nal (60:40) film containing 0.5% fumed silica nanoparticles with low value of activation energy. Dielectric relaxation studies with temperature show shifts of the relaxation time toward higher value for samples of nanocomposite polymer electrolyte films.
机译:在本文中,聚乙烯醇(PVA)聚合物,碘化钠(Nal)盐和气相二氧化硅纳米颗粒纳米填料已用于制备固体聚合物电解质膜。已经进行了傅里叶变换红外光谱法来研究由于聚合物,盐和纳米填料之间的络合而引起的振动变化。已经进行了X射线衍射以研究以气相二氧化硅纳米颗粒为掺杂剂的PVA:Nal(60:40)聚合物电解质膜的结构变化。差示扫描量热法研究显示纳米复合聚合物电解质膜的玻璃化转变温度下降趋势。已经进行了热重分析以研究样品的热降解。使用瓦格纳(Wagner)极化技术确定转移数表明离子是主要的可移动物质。对于含有0.5%活化能值较低的气相二氧化硅纳米粒子的PVA:Nal(60:40)膜,估计室温下的最大电导率约为3.8×10〜(-3)S cm〜(-1)。随温度的介电弛豫研究表明,纳米复合聚合物电解质膜样品的弛豫时间向更高的值移动。

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