首页> 外文期刊>Macromolecular Chemistry and Physics >A Facile Approach to Fabricate Self-Standing Gel-Polymer Electrolytes for Flexible Lithium-Ion Batteries by Exploitation of UV-Cured Trivalent/Monovalent Acrylate Polymer Matrices
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A Facile Approach to Fabricate Self-Standing Gel-Polymer Electrolytes for Flexible Lithium-Ion Batteries by Exploitation of UV-Cured Trivalent/Monovalent Acrylate Polymer Matrices

机译:通过利用紫外线固化的三价/单价丙烯酸酯聚合物基质制造柔性锂离子电池自立式凝胶聚合物电解质的简便方法

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摘要

A facile approach to fabricate a self-standing GPE for flexible lithium-ion batteries is demonstrated using a UV-cured trivalent/monovalent acrylate polymer matrix and a liquid electrolyte. The polymer matrix is successfully synthesized with the co-presence of the liquid electrolyte by UV polymerization of ETPTA, which has trivalent vinyl groups, and EGMEA, which contains monovalent vinyl groups, with the ETPTA/EGMEA ratio fixed at 90/10 (wt%/wt%). The ETPTA/EGMEA matrix shows a lower Tg than the ETPTA matrix alone, which helps improve the mechanical flexibility and ionic transport of the resulting GPE. These features of the ETPTA/EGMEA-based GPE, together with its superior interfacial compatibility towards electrodes, play crucial roles in obtaining a better cell performance compared to the ETPTA-based GPE.
机译:使用紫外线固化的三价/单价丙烯酸酯聚合物基体和液体电解质,证明了一种用于制造柔性锂离子电池自立式GPE的简便方法。通过液体电解质的共存,通过具有三价乙烯基的ETPTA和含有单价乙烯基的EGMEA的紫外光聚合成功地合成了聚合物基体,其中ETPTA / EGMEA之比固定为90/10(wt% / wt%)。 ETPTA / EGMEA基质比单独的ETPTA基质具有更低的T g ,这有助于改善所得GPE的机械柔韧性和离子迁移。与基于ETPTA的GPE相比,基于ETPTA / EGMEA的GPE的这些功能,以及与电极的优异界面兼容性,在获得更好的电池性能方面起着至关重要的作用。

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