Comprehensive Understandings of Hydrogen Bond Chemistry in Aqueous Batteries

ADVANCED MATERIALS(2024)

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摘要
Aqueous batteries are emerging as highly promising contenders for large-scale grid energy storage because of uncomplicated assembly, exceptional safety, and cost-effectiveness. The unique aqueous electrolyte with a rich hydrogen bond (HB) environment inevitably has a significant impact on the electrode materials and electrochemical processes. While numerous reviews have focused on the materials design and assembly of aqueous batteries, the utilization of HB chemistry is overlooked. Herein, instead of merely compiling recent advancements, this review presents a comprehensive summary and analysis of the profound implication exerted by HB on all components of the aqueous batteries. Intricate links between the novel HB chemistry and various aqueous batteries are ingeniously constructed within the critical aspects, such as self-discharge, structural stability of electrode materials, pulverization, solvation structures, charge carrier diffusion, corrosion reactions, pH sensitivity, water splitting, polysulfides shuttle, and H2S evolution. By adopting a vantage point that encompasses material design, binder and separator functionalization, electrolyte regulation, and HB optimization, a critical examination of the key factors that impede electrochemical performance in diverse aqueous batteries is conducted. Finally, insights are rendered properly based on HB chemistry, with the aim of propelling the advancement of state-of-the-art aqueous batteries. A comprehensive review is provided on the application and key factors of hydrogen bond chemistry in various aqueous batteries, encompassing electrode materials, electrolytes, separators, and binders. Accurate insights are presented to utilize hydrogen bond chemistry in order to address a range of key factors that hinder electrochemical performance, aiming to drive the progress of state-of-the-art aqueous batteries.image
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关键词
anode protection,aqueous batteries,binders and separators functionalization,electrolyte optimization,hydrogen bond
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