Armoring the cathode with starch gel enables Shuttle-Free Zinc-Iodine batteries

淀粉 材料科学 阴极 化学工程 法拉第效率 电池(电) 碳纤维 电化学 吸附 纳米技术 复合材料 化学 冶金 电极 生物化学 工程类 有机化学 物理化学 功率(物理) 物理 量子力学 复合数
作者
Na Wang,Yuanyuan Ma,Yunzhen Chang,Liping Feng,Huichao Liu,Boqiong Li,Wanxi Li,Yanyun Liu,Gaoyi Han
出处
期刊:Journal of Colloid and Interface Science [Elsevier]
卷期号:665: 491-499
标识
DOI:10.1016/j.jcis.2024.03.149
摘要

Zinc-iodine batteries (ZIBs) have been recognized as a promising energy storage device due to their high energy density, low cost and environmental friendliness. However, the development of ZIBs is hindered by the shuttle effect of polyiodides which results in capacity degradation and poor cycling performance. Inspired by the ability of starch to form inclusion compounds with iodine, we propose to use a starch gel on the cathode to suppress the shuttle of polyiodides. Herein, porous carbon is utilized as a host for iodine species and provides an excellent conductive network, while starch gel is used as another host to suppress polyiodides shuttle, resulting in improved battery performance. The test results demonstrate that the conversion between I-/I2/I3- in the cathode and the effective inclusion role of starch suppress the shuttle of polyiodides during the charging process. Meanwhile, based on the electrochemical tests and theoretical DFT calculations, it is found that starch has a stronger ability to adsorb polyiodides compared to carbon materials, which enables effective confinement of polyiodides. The ZIBs used the cathode with starch gel exhibit high coulombic efficiency (>95 % at 0.2 A/g) and low self-discharge (86.8 % after resting for 24 h). This strategy is characterized by its simplicity, low cost and high applicability, making it significant for the advancement of high-performance ZIBs.
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