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Electrochemical Characteristics of Glycerolized PEO-Based Polymer Electrolytes

机译:甘油化PEO基聚合物电解质的电化学特性

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摘要

In this article, poly(ethylene oxide)-based polymer electrolyte films doped with ammonium iodide (NH I) and plasticized with glycerol were provided by a solution casting method. In the unplasticized system, the maximum ionic conductivity of S cm was achieved by the electrolyte comprised of 70 wt. % PEO:30 wt. % NH I. The conductivity was further enhanced up to S cm ) for the plasticized system when 10 wt. % glycerol was added to the highest conducting unplasticized one at ambient temperature. The films were characterized by various techniques to evaluate their electrochemical performance. The results of impedance spectroscopy revealed that bulk resistance (R ) considerably decreased for the highest plasticized polymer electrolyte. The dielectric properties and electric modulus parameters were studied in detail. The LSV analysis verified that the plasticized system can be used in energy storage devices with electrochemical stability up to 1.09 V and the TNM data elucidated that the ions were the main charge carrier. The values of the ion transference number (t ) and electron transfer number (t ) were calculated. The nonappearance of any redox peaks in the cyclic voltammograms indicated that the chemical reaction had not occurred at the electrode/electrolyte interface.
机译:在本文中,通过溶液流延法提供了掺杂有碘化铵(NH I)并用甘油增塑的聚环氧乙烷基聚合物电解质膜。在未增塑的系统中,S cm的最大离子电导率是由70 wt。 PEO%:30重量%。当10wt。%NH 2时,对于增塑体系,电导率进一步提高至S cm)。在环境温度下,将%甘油加入到导电性最高的未增塑的甘油中。通过各种技术对薄膜进行表征,以评估其电化学性能。阻抗谱的结果表明,对于最高增塑的聚合物电解质,体电阻(R)大大降低。详细研究了介电性能和电模量参数。 LSV分析证实,该增塑体系可用于电化学稳定性高达1.09 V的储能设备中,而TNM数据表明离子是主要的电荷载体。计算离子转移数(t)和电子转移数(t)的值。循环伏安图中未出现任何氧化还原峰,表明在电极/电解质界面未发生化学反应。

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