Abstract
Aqueous Zn-organic batteries (ZOBs) have emerged as a focal point due to their eco-sustainability and versatility. However, the origins of protons and their impact on electrochemical performance remain poorly understood and are subject to considerable debate. To address this gap, it is proposed to investigate model quinone-based electrodes, 3,5-Di-tert-butyl-o-benzoquinone (DBBQ), in mild-to-strong acidic conditions. The electrochemical features of DBBQ in Zn2+-based mild electrolyte are elaborated, proving its preferential coordination with protons over Zn2+ cations. Notably, proton-driven electrochemical reactivity exhibits superior stability and higher operating voltage, whereas the reactivity region of Zn2+ leads to significant capacity loss. To highlight the unique aspects of protons, an aqueous all-quinone proton battery is fabricated under acidic conditions. As a proof-of-concept demonstration, the proton rocking-chair cell exhibits satisfactory electrochemical performance, illustrating the feasibility of metal-free sustainable batteries. With an emphasis on the fundamental impacts of electrolyte composition and pH, the findings reveal that the manners of proton storage can be regulated via the regulation of solvation character of the anions, which provides new perspective to understand the mechanistic charge storage of organic electrodes in aqueous batteries.
© 2025 Wiley-VCH GmbH
© 2025 Wiley-VCH GmbH
| Original language | English |
|---|---|
| Article number | 2502591 |
| Journal | Small |
| Volume | 21 |
| Issue number | 27 |
| Online published | 16 May 2025 |
| DOIs | |
| Publication status | Published - 10 Jul 2025 |
Funding
T.S. and J.Y. contributed equally to this work. This work was supported by the National Natural Science Foundation of China (22305103), the China Postdoctoral Science Foundation (2024M761186), the Natural Science Foundation of Jiangsu Province (BK20230520), the Program for Jiangsu Specially-Appointed Professors (RC20240920), the General Program of Natural Science Foundation for Higher Education in Jiangsu Province (23KJB150006) and the Young Talent Support Fund from Jiangsu University.
Research Keywords
- aqueous rechargeable batteries
- organic electrode
- quinone
- reaction mechanism
- Zn-organic batteries
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