摘要
Efficient energy storage at low temperatures starves for competent battery techniques. Herein, inherent advantages of zinc–air batteries on low-temperature electrochemical energy storage are discovered. The electrode reactions are resistive against low temperatures to render feasible working zinc–air batteries under sub-zero temperatures. The relatively reduced ionic conductivity of electrolyte is identified as the main limiting factor, which can be addressed by employing a CsOH-based electrolyte through regulating the solvation structures. Accordingly, 500 cycles with a stable voltage gap of 0.8 V at 5.0 mA cm−2 is achieved at −10 °C. This work reveals the promising potential of zinc–air batteries for low-temperature electrochemical energy storage and inspires advanced battery systems under extreme working conditions.
源语言 | 英语 |
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页(从-至) | 15281-15285 |
页数 | 5 |
期刊 | Angewandte Chemie - International Edition |
卷 | 60 |
期 | 28 |
DOI | |
出版状态 | 已出版 - 5 7月 2021 |