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水系电池电解质中的仿生工程综述。

Review of Biomimetic Engineering in the Electrolyte for Aqueous Batteries.

作者信息

Xu Haoshen, Yang Haoqi, Sha Dawei, Dong Xu

机构信息

Institute of Technology for Carbon Neutralization, College of Electrical, Energy and Power Engineering, Yangzhou University, Yangzhou 225127, China.

出版信息

Materials (Basel). 2025 Sep 18;18(18):4356. doi: 10.3390/ma18184356.

Abstract

Aqueous batteries, which replace flammable organic electrolytes with water, offer advantages such as intrinsic safety, low cost, and environmental friendliness, making them well-suited to the energy storage needs driven by the increasing proliferation of renewable energy. However, their widespread adoption is hampered by the narrow electrochemical stability window of water, dendrite growth on metal anodes, and various parasitic interfacial reactions. This review proposes a unified three-part framework for biomimetic electrolytes-SEI-mimetic, antifreeze-protein-mimetic, and ion-channel-mimetic-corresponding to three mechanistic strands-water activity regulation, interfacial mechanics, and sub-nanometer transport-to organize and compare various strategies. This paper systematically reviews and evaluates the latest advances in biomimetic electrolytes. It discusses these three biomimetic concepts and their applications in different battery chemistries (monovalent and multivalent metal systems, as well as aqueous redox-flow batteries). It also proposes a roadmap and engineering thresholds for both basic research and commercialization.

摘要

水系电池用水替代了易燃的有机电解质,具有本质安全、成本低和环境友好等优点,使其非常适合满足可再生能源日益普及所驱动的储能需求。然而,水的电化学稳定性窗口较窄、金属阳极上的枝晶生长以及各种寄生界面反应阻碍了它们的广泛应用。本综述提出了一个统一的三部分框架,用于仿生电解质——模拟固态电解质界面(SEI)、模拟抗冻蛋白和模拟离子通道——对应于三个机制方向——水活度调节、界面力学和亚纳米传输——以组织和比较各种策略。本文系统地回顾和评估了仿生电解质的最新进展。它讨论了这三个仿生概念及其在不同电池化学体系(单价和多价金属系统以及水系氧化还原液流电池)中的应用。它还提出了基础研究和商业化的路线图以及工程阈值。

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