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Tuning the Properties of a UV-Polymerized Cross-Linked Solid Polymer Electrolyte for Lithium Batteries

机译:调整用于锂电池的UV聚合交联固体聚合物电解质的性能

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摘要

Lithium metal anodes have been pursued for decades as a way to significantly increase the energy density of lithium-ion batteries. However, safety risks caused by flammable liquid electrolytes and short circuits due to lithium dendrite formation during cell cycling have so far prevented the use of lithium metal in commercial batteries. Solid polymer electrolytes (SPEs) offer a potential solution if their mechanical properties and ionic conductivity can be simultaneously engineered. Here, we introduce a family of SPEs that are scalable and easy to prepare with a photopolymerization process, synthesized from amphiphilic acrylic polymer conetworks based on poly(ethylene glycol), 2-hydroxy-ethylacrylate, norbornyl acrylate, and either lithium bis (trifluoromethanesulfonyl) imide (LiTFSI) or a single-ion polymethacrylate as lithium-ion source. Several conetworks were synthesized and cycled, and their ionic conductivity, mechanical properties, and lithium transference number were characterized. A single-ion-conducting polymer electrolyte shows the best compromise between the different properties and extends the calendar life of the cell.
机译:锂金属阳极已经被追求了数十年,作为一种显着提高锂离子电池能量密度的方法。然而,迄今为止,由于在电池循环期间由于易燃的液体电解质和锂枝晶形成而引起的短路而造成的安全隐患阻止了锂金属在商用电池中的使用。如果可以同时设计其机械性能和离子电导率,则固态聚合物电解质(SPE)可以提供潜在的解决方案。在这里,我们介绍了一系列可扩展且易于通过光聚合工艺制备的SPE,它们是由基于聚乙二醇,2-羟基乙基丙烯酸酯,丙烯酸降冰片酯和双锂(三氟甲磺酰基)的两亲丙烯酸聚合物共网络合成的酰亚胺(LiTFSI)或单离子聚甲基丙烯酸酯作为锂离子源。合成并循环了多个共网络,并表征了其离子电导率,机械性能和锂转移数。单离子导电聚合物电解质在不同性能之间表现出最佳折衷,并延长了电池的寿命。

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