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Effect of Al2O3 on structural and dielectric properties of PVP-CH3COONa based solid polymer electrolyte films for energy storage devices

机译:Al2O3对基于PVP-CH3COONa的储能器件固体聚合物电解质膜结构和介电性能的影响

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摘要

Nanocomposite polymer (NCP) films were prepared by doping sodium acetate (CH COONa) in polymer of polyvinyl pyrrolidone (PVP) by complete dispersion of aluminum oxide (Al O ) with different wt% proportions using solution cast method. The acquired NCP films were systematically characterized. The crystalline structure of the prepared NCP films was confirmed by XRD. The little agglomeration and grain sizes involved in the films were analyzed by SEM. The chemical bond formation and interchange reaction between the host, dopant salt and the nanofiller were confirmed by FTIR and Raman. The lowest energy bandgap values were observed to be 3.0 eV for the synthesized film with wt% ratio of PVP + CH COONa:Al O (80:20:1%). The highest ionic conductivity was found to be 1.05 × 10 S/cm for the prepared film with wt% ratio of PVP + CH COONa:Al O (80:20:1%). From the charge discharge characteristics it was concluded that the film with wt% ratio of PVP + CH COONa:Al O (80:20:1%) possesses long durability when compared to the other prepared films.
机译:通过使用溶液流延法将不同重量百分比的氧化铝(Al O)完全分散在聚乙烯吡咯烷酮(PVP)的聚合物中并掺入乙酸钠(CH COONa),从而制备纳米复合聚合物(NCP)薄膜。对获得的NCP膜进行了系统表征。制备的NCP膜的晶体结构通过XRD确认。用SEM分析了薄膜中的少量团聚和晶粒尺寸。 FTIR和拉曼光谱证实了主体,掺杂剂盐和纳米填料之间的化学键形成和交换反应。对于具有PVP + CH COONa:Al O(80:20:1%)的重量%比率的合成膜,观察到的最低能带隙值为3.0 eV。对于具有PVP + CH COONa∶Al O(80∶20∶1%)的重量%比例的所制备的膜,发现最高的离子电导率为1.05×10 S / cm。从电荷放电特性可以得出结论,与其他制备的薄膜相比,具有PVP + CH COONa:Al O(80:20:1%)的重量百分比的薄膜具有长的耐久性。

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