欧姆接触
阳极
材料科学
法拉第效率
电镀(地质)
氧化物
枝晶(数学)
锌
原子层沉积
化学工程
金属
图层(电子)
纳米技术
冶金
电极
化学
地质学
工程类
数学
物理化学
地球物理学
几何学
作者
Huanyan Liu,Jian‐Gan Wang,Wei Hua,Huanhuan Sun,Yu Huyan,Shan Tian,Zhidong Hou,Junchang Yang,Chunguang Wei,Feiyu Kang
标识
DOI:10.1002/advs.202102612
摘要
Zn metal holds grand promise as the anodes of aqueous batteries for grid-scale energy storage. However, the rampant zinc dendrite growth and severe surface side reactions significantly impede the commercial implementation. Herein, a universal Zn-metal oxide Ohmic contact interface model is demonstrated for effectively improving Zn plating/stripping reversibility. The high work function difference between Zn and metal oxides enables the building of an interfacial anti-blocking layer for dendrite-free Zn deposition. Moreover, the metal oxide layer can function as a physical barrier to suppress the pernicious side reactions. Consequently, the proof-of-concept CeO2 -modified Zn anode delivers ultrastable durability of over 1300 h at 0.5-5 mA cm-2 and improved Coulombic efficiency, the feasibility of which is also evidenced in MoS2 //Zn full cells. This study enriches the fundamental comprehension of Ohmic contact interfaces on the Zn deposition, which may shed light on the development of other metal battery anodes.
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