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LiClO _4 salt concentration effect on the properties of PVC-modified low molecular weight LENR50-based solid polymer electrolyte

机译:LiClO _4盐浓度对PVC改性低分子量LENR50基固体聚合物电解质性能的影响

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A work was carried out on a solid polymeric electrolyte system comprising blends of poly (vinyl chloride) and liquid 50% epoxidized natural rubber (LENR50) as a polymer host with LiClO _4 as a salt and prepared by solution casting technique. In this paper, the main study was the effect of LiClO _4 salt concentration on the electrolyte properties. The effect of the salt on the electrolyte properties was characterized and analyzed with impedance spectroscopy (EIS), X-ray diffraction (XRD), differential scanning calorimeter (DSC), and scanning electron microscopy (SEM). The EIS result showed that highest ionic conductivity was obtained at 30 wt % salt with a value of 2.3 × 10 ~(-8) S cm ~(-1). The XRD results revealed that the LiClO _4 salt was fully complexed within the polymer host as no sharp peaks were observed. However, above 30 wt % of salt, some sharp peaks were observed. This phenomenon was caused by the association of ions. Meanwhile, DSC analysis showed that T _g increased as the salt content increased. This implied that LiClO _4 salt had interaction with polymer host by forming coordination bond. The morphologies' studies showed that good homogeneity and compatibility of the electrolyte were achieved. Upon the addition of the salt, formation of micropores occurred. It was noted that micropores which aid in mobility of ions in the electrolyte system has increased the ionic conductivity.
机译:在固体聚合物电解质体系上进行了工作,该体系包括聚氯乙烯和液态50%环氧化天然橡胶(LENR50)的共混物,并以LiClO_4为盐,并通过溶液流延技术制备。本文主要研究的是LiClO_4盐浓度对电解质性能的影响。用阻抗谱(EIS),X射线衍射(XRD),差示扫描量热仪(DSC)和扫描电子显微镜(SEM)表征并分析了盐对电解质性能的影响。 EIS结果表明,在30 wt%的盐溶液中,离子电导率最高,值为2.3×10〜(-8)S cm〜(-1)。 XRD结果表明,LiClO_4盐在聚合物主体内完全络合,因为未观察到尖峰。然而,在盐的30重量%以上,观察到一些尖峰。这种现象是由离子缔合引起的。同时,DSC分析表明,T _g随着盐含量的增加而增加。这表明LiClO_4盐通过形成配位键与聚合物主体发生相互作用。形态研究表明,电解质具有良好的均质性和相容性。加入盐后,形成微孔。注意到,有助于离子在电解质系统中迁移的微孔增加了离子电导率。

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