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UV-Induced Radical Photo-Polymerization: A Smart Tool for Preparing Polymer Electrolyte Membranes for Energy Storage Devices

机译:紫外线诱导的自由基光聚合:一种智能工具用于准备储能装置的聚合物电解质膜

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摘要

In the present work, the preparation and characterization of quasi-solid polymer electrolyte membranes based on methacrylic monomers and oligomers, with the addition of organic plasticizers and lithium salt, are described. Noticeable improvements in the mechanical properties by reinforcement with natural cellulose hand-sheets or nanoscale microfibrillated cellulose fibers are also demonstrated. The ionic conductivity of the various prepared membranes is very high, with average values approaching 10-3 S cm-1 at ambient temperature. The electrochemical stability window is wide (anodic breakdown voltages > 4.5 V vs. Li in all the cases) along with good cyclability in lithium cells at ambient temperature. The galvanostatic cycling tests are conducted by constructing laboratory-scale lithium cells using LiFePO4 as cathode and lithium metal as anode with the selected polymer electrolyte membrane as the electrolyte separator. The results obtained demonstrate that UV induced radical photo-polymerization is a well suited method for an easy and rapid preparation of easy tunable quasi-solid polymer electrolyte membranes for energy storage devices.
机译:在本工作中,描述了基于甲基丙烯酸单体和低聚物并添加有机增塑剂和锂盐的准固体聚合物电解质膜的制备和表征。还证明了通过用天然纤维素手抄纸或纳米级微纤化纤维素纤维增强机械性能的显着改善。制备的各种膜的离子电导率非常高,在环境温度下其平均值接近10 -3 S cm -1 。电化学稳定性窗口宽(在所有情况下,阳极击穿电压均大于4.5 V vs. Li),并且在室温下在锂电池中具有良好的可循环性。恒电流循环测试是通过使用LiFePO4作为阴极,锂金属作为阳极,以选定的聚合物电解质膜作为电解质隔板构建实验室规模的锂电池来进行的。所获得的结果表明,UV诱导的自由基光聚合是一种简便,快速制备易调谐的准固态聚合物电解质膜的理想方法,该电解质膜用于储能装置。

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