材料科学
金属
阳极
冶金
化学工程
纳米技术
工程类
化学
电极
物理化学
作者
Canbin DENG,Yang Li,Sijing Liu,Jinglei Yang,Baoling Huang,Jiapeng Liu,Jiaqiang Huang
出处
期刊:Social Science Research Network
[Social Science Electronic Publishing]
日期:2023-01-01
摘要
Aqueous zinc-ion batteries (ZIBs) emerge as a potential candidate for large-scale energy storage applications, due to their low cost, eco-friendliness, and high safety. However, nowadays, ZIBs still suffer from poor cycling stability, owing largely to the severe dendrite growth, corrosion, and hydrogen evolution at the electrolyte/anode interface. Herein, inspired by the biomoleculeassisted cationic transport mechanism in nature, we apply humic acid (HA, a natural ingredient of soil) on the Zn surface for stabilizing the anode/electrolyte interface. Density functional theory calculations indicate that the tuned interactions between Zn2+ and the segments of HA, possibly facilitating the desolvation of Zn2+. The theoretical results are supported by the electrochemical analyses, where the HA-induced interfacial layer promotes the reversible Zn deposition kinetics and suppresses the corrosion and hydrogen evolution. The improved electrochemical performance is validated by Zn/MnO2 coin and pouch cells. These findings not only provide insights into engineering electrolyte/electrode interface but also suggest a broader family of materials in nature for more sustainable batteries.
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