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Stabilizing polymer electrolytes in high-voltage lithium batteries

机译:稳定高压锂电池中的聚合物电解质

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摘要

Electrochemical cells that utilize lithium and sodium anodes are under active study for their potential to enable high-energy batteries. Liquid and solid polymer electrolytes based on ether chemistry are among the most promising choices for rechargeable lithium and sodium batteries. However, uncontrolled anionic polymerization of these electrolytes at low anode potentials and oxidative degradation at working potentials of the most interesting cathode chemistries have led to a quite concession in the field that solid-state or flexible batteries based on polymer electrolytes can only be achieved in cells based on low- or moderate-voltage cathodes. Here, we show that cationic chain transfer agents can prevent degradation of ether electrolytes by arresting uncontrolled polymer growth at the anode. We also report that cathode electrolyte interphases composed of preformed anionic polymers and supramolecules provide a fundamental strategy for extending the high voltage stability of ether-based electrolytes to potentials well above conventionally accepted limits.
机译:目前正在积极研究利用锂和钠阳极的电化学电池,以实现高能电池的潜力。基于醚化学的液体和固体聚合物电解质是可再充电锂和钠电池最有希望的选择之一。然而,这些电解质在低阳极电势下的不受控制的阴离子聚合和在最有趣的阴极化学方法的工作电势下的氧化降解导致在该领域相当大的让步,即基于聚合物电解质的固态或柔性电池只能在电池中实现基于低压或中压阴极。在这里,我们表明阳离子链转移剂可以通过阻止阳极上不受控制的聚合物生长来防止醚电解质降解。我们还报告说,由预先形成的阴离子聚合物和超分子组成的阴极电解质中间相为将基于醚的电解质的高电压稳定性扩展到远高于常规可接受极限的电势提供了基本策略。

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