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使用共价有机框架稳定用于高效可充电电池的金属阳极的最新进展

Recent Progress in Using Covalent Organic Frameworks to Stabilize Metal Anodes for Highly-Efficient Rechargeable Batteries.

作者信息

Sun Jianlu, Kang Fangyuan, Yan Dongbo, Ding Tangjing, Wang Yulong, Zhou Xiaosi, Zhang Qichun

机构信息

School of Chemistry and Materials Science, Nanjing Normal University, Nanjing, 210023, China.

Department of Materials Science and Engineering, City University of Hong Kong, Kowloon, Hong Kong, SAR 999077, China.

出版信息

Angew Chem Int Ed Engl. 2024 Jul 8;63(28):e202406511. doi: 10.1002/anie.202406511. Epub 2024 Jun 11.

Abstract

Alkali metals (e.g. Li, Na, and K) and multivalent metals (e.g. Zn, Mg, Ca, and Al) have become star anodes for developing high-energy-density rechargeable batteries due to their high theoretical capacity and excellent conductivity. However, the inevitable dendrites and unstable interfaces of metal anodes pose challenges to the safety and stability of batteries. To address these issues, covalent organic frameworks (COFs), as emerging materials, have been widely investigated due to their regular porous structure, flexible molecular design, and high specific surface area. In this minireview, we summarize the research progress of COFs in stabilizing metal anodes. First, we present the research origins of metal anodes and delve into their advantages and challenges as anodes based on the physical/chemical properties of alkali and multivalent metals. Then, special attention has been paid to the application of COFs in the host design of metal anodes, artificial solid electrolyte interfaces, electrolyte additives, solid-state electrolytes, and separator modifications. Finally, a new perspective is provided for the research of metal anodes from the molecular design, pore modulation, and synthesis of COFs.

摘要

碱金属(如锂、钠和钾)以及多价金属(如锌、镁、钙和铝)因其高理论容量和优异的导电性,已成为开发高能量密度可充电电池的明星负极材料。然而,金属负极不可避免地会出现枝晶和不稳定界面,这对电池的安全性和稳定性构成了挑战。为了解决这些问题,共价有机框架(COF)作为新兴材料,因其规则的多孔结构、灵活的分子设计和高比表面积而受到广泛研究。在这篇综述中,我们总结了COF在稳定金属负极方面的研究进展。首先,我们介绍了金属负极的研究起源,并基于碱金属和多价金属的物理/化学性质,深入探讨了它们作为负极的优势和挑战。然后,重点关注了COF在金属负极主体设计、人工固体电解质界面、电解质添加剂、固态电解质和隔膜改性方面的应用。最后,从COF的分子设计、孔道调控和合成方面,为金属负极的研究提供了新的视角。

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