Rational design and prospects for advanced aqueous Zn–organic batteries enabled by multielectron redox reactions

投稿的翻译标题: 合理设计多电子转移机制实现更好的水系锌-有机电池

Kovan Khasraw Abdalla, Yueyang Wang, Kozhi Khasraw Abdalla, Jiawei Xiong, Qi Li, Bin Wang, Xiaoming Sun, Yi Zhao*

*此作品的通讯作者

科研成果: 期刊稿件文献综述同行评审

摘要

Due to their environmental compatibility, customizable molecular structures, and abundant organic host resources, aqueous Zn–organic batteries (AZOBs) are essential in constructing next-generation energy storage devices. Nevertheless, the current limitations of AZOBs of suboptimal energy density, inadequate rate capability, capacity decay caused by single redox groups, poor conductivity, and high solubility of organic hosts highlight the need for advancement. Therefore, organic cathode materials with multiredox centers and stable skeletons are continuously being pursued in developing high-performance AZOBs. These multifunctional organic compounds can cooperatively trigger multielectron redox reactions with facilitated H+/Zn2+ costorage, thereby significantly boosting the battery performance of organic cathode hosts. Furthermore, an imperative aspect of this study involves investigating the structure–function relationship between molecular structures and redox reaction mechanisms within multifunctional organic electrodes, particularly in the context of Zn–organic full-battery systems. This review outlines the challenges and strategies to enhance the redox potential, active capacity, redox kinetics, and cyclability of multifunctional organic cathode materials, providing a valuable foundation for future advanced AZOBs. (Figure presented.)

投稿的翻译标题合理设计多电子转移机制实现更好的水系锌-有机电池
源语言英语
页(从-至)1367-1378
页数12
期刊Science China Materials
67
5
DOI
出版状态已出版 - 5月 2024

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