Liu Junnan, Luo Qiuyang, Xia Shu, Yang Xingfu, Lei Jie, Sun Qi, Chen Xiaohu, Shao Jiaojing, Tang Xiaoning, Zhou Guangmin
School of Materials and Metallurgy, Guizhou University, Guiyang 550025, P. R. China.
School of Materials and Metallurgy, Guizhou University, Guiyang 550025, P. R. China.
J Colloid Interface Sci. 2024 Jul;665:163-171. doi: 10.1016/j.jcis.2024.03.126. Epub 2024 Mar 20.
Structuring a stable artificial coating to mitigate dendrite growth and side reactions is an effective strategy for protecting the Zn metal anode. Herein, a Cu-Ag double-layer metal coating is constructed on the Zn anode (Zn@Cu-Ag) by simple and in-situ displacement reactions. The Cu layer enhances the bond between the Ag layer and Zn substrate by acting as an intermediary, preventing the Ag coating from detachment. Concurrently, the Ag layer serves to improve the corrosion resistance of Cu metal. During plating, the initial Cu sheets and Ag particles on the surface of Zn@Cu-Ag electrode gradually transform into a flat and smooth layer, resulting in the formation of AgZn, AgZn, and (Ag, Cu)Zn alloys. Alloys play a multifunctional role in inhibiting dendrite growth and side reactions due to decreased resistance, low nucleation barrier, enhanced zincophilicity, and strong corrosion resistance. Consequently, the Zn@Cu-Ag symmetric cell exhibits continuous stable performance for 3750 h at 1 mA cm. Furthermore, the Zn@Cu-Ag||ZnVO full cell achieves an initial capacity of 293.4 mAh g and realizes long cycling stability over 1200 cycles. This work provides new insight into the engineering of an efficient artificial interface for highly stable and reversible Zn metal anodes.
构建稳定的人工涂层以减轻枝晶生长和副反应是保护锌金属负极的有效策略。在此,通过简单的原位置换反应在锌负极(Zn@Cu-Ag)上构建了Cu-Ag双层金属涂层。铜层作为中间层增强了银层与锌基底之间的结合力,防止银涂层脱落。同时,银层有助于提高铜金属的耐腐蚀性。在电镀过程中,Zn@Cu-Ag电极表面的初始铜片和银颗粒逐渐转变为平整光滑的层,形成AgZn、AgZn和(Ag,Cu)Zn合金。由于电阻降低、形核势垒低、亲锌性增强和强耐腐蚀性,合金在抑制枝晶生长和副反应方面发挥着多功能作用。因此,Zn@Cu-Ag对称电池在1 mA cm下表现出3750 h的连续稳定性能。此外,Zn@Cu-Ag||ZnVO全电池实现了293.4 mAh g的初始容量,并在1200次循环中实现了长循环稳定性。这项工作为高效人工界面工程提供了新的见解,以实现高度稳定和可逆的锌金属负极。