Tannin acid induced anticorrosive film toward stable Zn-ion batteries

阳极 材料科学 电化学 腐蚀 电解质 化学工程 水溶液 金属 无机化学 冶金 电极 有机化学 化学 工程类 物理化学
作者
Peng-Fang Zhang,Zhenzhen Wu,Shaojian Zhang,Lingyang Liu,Yuhui Tian,Yuhai Dou,Zhan Lin,Shanqing Zhang
出处
期刊:Nano Energy [Elsevier]
卷期号:102: 107721-107721 被引量:36
标识
DOI:10.1016/j.nanoen.2022.107721
摘要

Aqueous Zn-ion batteries (AZIBs) have been regarded as a promising next-generation energy storage system. However, the poor reversibility of Zn anodes with serious dendrite growth and parasitic reactions degrades the battery performance. Inspired by the anticorrosion strategy for metal protection, an extremely simple and cost-effective method of soaking Zn plate in tannin acid (TA) solution is applied to design ZnTA anticorrosive film on Zn anodes. Robust chemical interaction between Zn and phenolic hydroxyl groups in TA molecules endows ZnTA with the excellent film-forming capacity of ensuring uniform surface and desirable coverage on Zn anodes. A remarkable suppression of parasitic hydrogen evolution during Zn plating is available by [email protected] anodes, evidenced by in-situ electrochemical gas chromatography (EC-GC). The Symmetric cells with [email protected] anodes show long-term stability of over 4500 cycles under an ultra-high current density of 30 mA cm−2, verifying the excellent reversibility [email protected] anodes. Besides, ZnTA anticorrosive film also demonstrates significant capacity to suppress the Zn corrosion resulted from shuttling polyiodide. Consequently, highly-reversible Zn-I2 batteries with excellent rate performance and ultra-long lifespan (20,000 cycles at 6 A g−1) are achieved with [email protected] anodes. This finding emphasizes the protective mechanism of anticorrosive films against electrolyte/polyiodide corrosion which contributes to the highly-reversible Zn anodes.
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