材料科学
法拉第效率
电解质
阳极
化学工程
枝晶(数学)
图层(电子)
锌
电镀(地质)
电偶阳极
涂层
复合材料
冶金
阴极保护
化学
物理化学
几何学
工程类
地质学
数学
电极
地球物理学
作者
Jingjing Dong,Huili Peng,Jing Wang,Chenggang Wang,Dongdong Wang,Nana Wang,Weiliu Fan,Xuchuan Jiang,Jian Yang,Yitai Qian
标识
DOI:10.1016/j.ensm.2022.11.026
摘要
As one of most prospective anode materials of aqueous batteries, Zn metal faces severe electrolyte corrosion and fatal dendrite growth. To address these issues, the electrolyte/Zn interface needs to be carefully engineered. Here, a dense and robust layer of polysilane functionalized by -NH2 is coated on Zn in a new way. In this layer, -NH2 provides adequate alkalinity and important interaction with Zn2+, enhancing the hydrolysis and regulating the Zn2+ flux. Propyl groups increase the flexibility to buffer inevitable strain/stress and the hydrophobicity to reduce the permeation of water. Si-O-Zn enables the durable interface between Zn and this layer. These results lead to superior mechanical property, suppressed side reactions and uniform plating/stripping. Hence, it shows excellent electrochemical performance, ∼300 hours at 20 mA cm-2 for 10 mAh cm-2 (Depth of Discharge ∼57%) in symmetrical cells, and average Coulombic efficiency of 99.8% during 800 cycles for 3 mAh cm-2 in asymmetrical cells. Even at a high loading of MnO2, a small N/P ratio and a limited electrolyte, the full cells coupled still display a capacity of ∼2.93 mAh cm-2 after 100 cycles at 0.5 C.
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