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Abstract
Self-charging zinc batteries that combine energy harvesting technology with batteries are candidates for reliable self-charging power systems. However, the lack of rational materials design results in unsatisfactory self-charging performance. Here, a covalent organic framework containing pyrene-4,5,9,10-tetraone groups (COF-PTO) is reported as a cathode material for aqueous self-charging zinc batteries. The ordered channel structure of the COF-PTO provides excellent capacity retention of 98% after 18 000 cycles at 10 A g−1 and ultra-fast ion transfer. To visually assess the self-charging performance, two parameters, namely self-charging efficiency (self-charging discharge capacity/galvanostatic discharge capacity, η) and average self-charging rate (total discharge capacity after cyclic self-charging/total cyclic self-charging time, ν), are proposed for performance evaluation. COF-PTO achieves an impressive η of 96.9% and an ν of 30 mAh g−1 self-charge capacity per hour in 100 self-charging cycles, surpassing the previous reports. Mechanism studies reveal the co-insertion of Zn2+ and H+ double ions in COF-PTO of self-charging zinc batteries. In addition, the C═N and C═O (on the benzene) in COF-PTO are ortho structures to each other, which can easily form metal heterocycles with Zn ions, thereby driving the forward progress of the self-charging reaction and enhancing the self-charging performance. © 2024 Wiley-VCH GmbH.
| Original language | English |
|---|---|
| Article number | 2314050 |
| Journal | Advanced Materials |
| Volume | 36 |
| Issue number | 27 |
| Online published | 21 Feb 2024 |
| DOIs | |
| Publication status | Published - 4 Jul 2024 |
Funding
This research was supported by the Guangdong Basic and Applied Basic Research Foundation (grant number: 2020A1515110896), the Research Grants Council of the Hong Kong Special Administrative Region, China (R5019-22) the National Natural Science Foundation of China (22371054, 22308062), Yan'an municipal key industrial chain projects (No. 2022SLZDCY-013).
Research Keywords
- aqueous batteries
- covalent organic frameworks
- metal heterocyclic
- self-charging
- zinc ion batteries
RGC Funding Information
- RGC-funded
Fingerprint
Dive into the research topics of 'Self-Charging Aqueous Zn//COF Battery with UltraHigh Self-Charging Efficiency and Rate'. Together they form a unique fingerprint.Projects
- 1 Finished
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RIF-ExtU-Lead: Flexible and Stretchable Batteries for Wearable Applications
ZHENG, Z. (Main Project Coordinator [External]) & ZHI, C. (Principal Investigator / Project Coordinator)
16/06/23 → 4/07/25
Project: Research
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