Strategies for solving hydrogen precipitation problems in aqueous zinc ion batteries

Hanxiao Fan
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Abstract

Aqueous zinc ion batteries have revealed many problems while solving the safety problems of conventional batteries, among which the narrow electrochemical stability window of water causes the battery to be prone to hydrogen precipitation reactions. In this paper, we summarize two strategies to solve the problem. From the electrolyte side, firstly, we use a mixture of salt-in-water electrolyte  to lower the starting potential of hydrogen precipitation reaction, so that the hydrogen precipitation reaction can be inhibited. The second strategy is to use intermolecular forces to configure a high concentration electrolyte to change the presence of ions in the solution, thus reducing the free water content and the activity of water to inhibit the hydrogen precipitation reaction.
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解决锌离子水电池中氢沉淀问题的策略
锌离子水电池在解决传统电池安全问题的同时,也暴露出许多问题,其中水的电化学稳定性窗口较窄,导致电池容易发生氢沉淀反应。本文总结了两种解决问题的策略。从电解液方面来看,首先,我们使用水包盐混合电解液来降低析氢反应的起始电位,从而抑制析氢反应。第二种策略是利用分子间作用力配置高浓度电解质,改变溶液中离子的存在状态,从而降低自由水含量,降低水的活性,达到抑制析氢反应的目的。
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