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环保型高性能对称全共价有机框架/石墨烯水系锌离子电池

Eco-Friendly High-Performance Symmetric All-COF/Graphene Aqueous Zinc-Ion Batteries.

作者信息

Yi Pengshu, Li Zhiheng, Ma Longli, Feng Bingjian, Liu Zhu, Liu Yongshuai, Lu Wenyi, Cao Shaochong, Fang Huayi, Ye Mingxin, Shen Jianfeng

机构信息

Institute of Special Materials and Technology, Fudan University, Shanghai, 200433, P. R. China.

Department of Materials Science, Fudan University, Shanghai, 200433, P. R. China.

出版信息

Adv Mater. 2024 Dec;36(52):e2414379. doi: 10.1002/adma.202414379. Epub 2024 Nov 15.

DOI:10.1002/adma.202414379
PMID:39544151
Abstract

Developing high-performance aqueous symmetric all-organic batteries (SAOBs) by replacing metal-based batteries or batteries with organic electrolytes is highly attractive to achieve a greener rechargeable world. However, such a new energy storage system still exhibits unsatisfactory rate capability and cycling stability due to the limitations in electrode materials screening. Here, a novel covalent organic framework (COF) containing abundant CN and CO for the electrode material is designed, which is combined with graphene and assembled into all-COF/graphene batteries for the first time. Moreover, the co-storage of Zn and H in COF can be achieved in a mild aqueous electrolyte. Impressively, benefiting from the extended porous structure of COF, plentiful active reaction sites, more extensive electron delocalization from CO modification at molecular level, as well as enhanced fast H storage capacity of graphene and CO in COF, this kind of SAOBs show excellent cycle life and high rate performance (over 15000 cycles with a capacity of 80 mAh g at a high current density of 5 A g in pouch cell). This work will open a new window for the design of high-performance aqueous organic batteries, further moving toward a more eco-friendly electrochemical world.

摘要

通过取代金属基电池或使用有机电解质的电池来开发高性能水系对称全有机电池(SAOB),对于实现更绿色的可充电世界极具吸引力。然而,由于电极材料筛选方面的限制,这种新型储能系统的倍率性能和循环稳定性仍不尽人意。在此,设计了一种含有丰富CN和CO的新型共价有机框架(COF)作为电极材料,首次将其与石墨烯结合并组装成全COF/石墨烯电池。此外,在温和的水系电解质中可实现COF对Zn和H的共存储。令人印象深刻的是,受益于COF的扩展多孔结构、丰富的活性反应位点、分子水平上CO修饰带来的更广泛电子离域,以及石墨烯和COF中CO增强的快速储氢能力,这种SAOB表现出优异的循环寿命和高倍率性能(软包电池在5 A g的高电流密度下容量为80 mAh g时循环超过15000次)。这项工作将为高性能水系有机电池的设计打开一扇新窗口,进一步迈向更环保的电化学世界。

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