电解质
电池(电)
阳极
材料科学
化学工程
碘
乙腈
溶解
降级(电信)
容量损失
化学
无机化学
电极
冶金
色谱法
电气工程
热力学
工程类
物理化学
功率(物理)
物理
作者
Chunlai Song,Zongshuai Gong,Chong Bai,Fengshi Cai,Zhihao Yuan,Xizheng Liu
出处
期刊:Nano Research
[Springer Science+Business Media]
日期:2021-10-23
卷期号:15 (4): 3170-3177
被引量:21
标识
DOI:10.1007/s12274-021-3884-z
摘要
Large scale applications of metal-iodine batteries working at sub-zero degree have been challenged by the limited capacity and performance degradation. Herein, we firstly propose a Zn-I2 battery working at low temperature with a carbon composite material/iodine (CCM-I2) cathode, a Zn anode and an environmentally tolerable Zn(ClO4)2-ACN electrolyte. The CCM framework with hierarchical porous structure endows a powerful iodine-anchoring to overcome undesirable dissolution of iodine in organic electrolyte, and the Zn(ClO4)2-ACN electrolyte with low freezing point and high ionic conductivity enhances the low temperature performance. The synergies enable an efficiently reversible conversion of Zn-I2 battery even at −40 °C. Therefore, the resultant Zn-I2 battery delivers a high specific capacity of 200 mAh·g−1, which is fairly approximate to the theoretical capacity of l2 (211 mAh·g−1) and a superior cycling stability with minimal capacity fading of 0.00043% per cycle over 7,000 times under 2C at −20 °C. Furthermore, even at −40 °C, this Zn-I2 battery still exhibits a good capacity retention of 68.7% compared to the capacity at 25 °C and a rapid capacity-recover ability with elevating temperature change. Our results distinctly indicate this Zn-I2 battery can be competent for the practical application under low temperature operation.
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