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揭示水系锌离子电池中的有机电极材料:从结构设计到电化学性能

Unveiling Organic Electrode Materials in Aqueous Zinc-Ion Batteries: From Structural Design to Electrochemical Performance.

作者信息

Li Dujuan, Guo Yuxuan, Zhang Chenxing, Chen Xianhe, Zhang Weisheng, Mei Shilin, Yao Chang-Jiang

机构信息

State Key Laboratory of Explosion Science and Safety Protection, School of Mechatronical Engineering, Beijing Institute of Technology, Beijing, 100081, People's Republic of China.

出版信息

Nanomicro Lett. 2024 May 14;16(1):194. doi: 10.1007/s40820-024-01404-6.

Abstract

Aqueous zinc-ion batteries (AZIBs) are one of the most compelling alternatives of lithium-ion batteries due to their inherent safety and economics viability. In response to the growing demand for green and sustainable energy storage solutions, organic electrodes with the scalability from inexpensive starting materials and potential for biodegradation after use have become a prominent choice for AZIBs. Despite gratifying progresses of organic molecules with electrochemical performance in AZIBs, the research is still in infancy and hampered by certain issues due to the underlying complex electrochemistry. Strategies for designing organic electrode materials for AZIBs with high specific capacity and long cycling life are discussed in detail in this review. Specifically, we put emphasis on the unique electrochemistry of different redox-active structures to provide in-depth understanding of their working mechanisms. In addition, we highlight the importance of molecular size/dimension regarding their profound impact on electrochemical performances. Finally, challenges and perspectives are discussed from the developing point of view for future AZIBs. We hope to provide a valuable evaluation on organic electrode materials for AZIBs in our context and give inspiration for the rational design of high-performance AZIBs.

摘要

水系锌离子电池(AZIBs)因其固有的安全性和经济可行性,成为锂离子电池最具吸引力的替代方案之一。为响应绿色可持续储能解决方案日益增长的需求,由廉价起始材料可规模化制备且使用后具有生物降解潜力的有机电极,已成为水系锌离子电池的突出选择。尽管在水系锌离子电池中具有电化学性能的有机分子取得了令人满意的进展,但由于其潜在的复杂电化学过程,该研究仍处于起步阶段,并受到某些问题的阻碍。本综述详细讨论了设计具有高比容量和长循环寿命的水系锌离子电池有机电极材料的策略。具体而言,我们着重于不同氧化还原活性结构的独特电化学性质,以深入了解其工作机制。此外,我们强调了分子尺寸/维度对其电化学性能的深远影响。最后,从未来水系锌离子电池发展的角度讨论了挑战和前景。我们希望在本文中对水系锌离子电池的有机电极材料提供有价值的评估,并为高性能水系锌离子电池的合理设计提供灵感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc74/11093963/cd4ee910703b/40820_2024_1404_Fig1_HTML.jpg

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