Li Xinpeng, Wang Mingshan, Wang Hao, Gao Yang, Tang Zhicheng, Wang Jiaqi, Feng Yuanlong, Yang Zhenliang, Zhou Dan, Chen Junchen, Xie Haijiao, Huang Yun, Li Xing
School of New Energy and Materials, Southwest Petroleum University, Chengdu, Sichuan 610500, P. R. China.
Energy Storage Research Institute, Southwest Petroleum University, Chengdu, Sichuan 610500, P. R. China.
ACS Appl Mater Interfaces. 2022 Sep 28;14(38):43215-43225. doi: 10.1021/acsami.2c10565. Epub 2022 Sep 20.
A novel electroless plating technique is utilized by coating a polydopamine layer on zinc foil (Zn@PDA) to regulate the deposition and growth of zinc dendrites, as well as suppress the occurrence of hydrogen evolution and passivation products for aqueous zinc-ion batteries. Polydopamine (PDA) has a strong adsorption ability on Zn foil due to the formation of a bidentate bonding during the electroless plating. Further, it indicates that the abundant hydroxyl groups of PDA react as zinc-philic sites to adsorb Zn and further undergo redox by forming carbonyl groups to effectively induce the uniform deposition and growth of zinc dendrites. Meanwhile, the strong coordination of PDA and Zn will weaken the solvated structure between Zn and HO molecules, resulting in an enhanced ionization energy of HO and inhibited hydrogen evolution reaction. Thus, Zn@PDA can maintain stable cycling over 900 h at 0.2 mA cm, and a high coulombic efficiency of average 98.5% at 2 mA cm. Moreover, the validity of Zn@PDA has been verified using the Zn@PDA||self-standing VS@stainless steel (VS@SS) full battery, which displays an impressive capacity retention of 81.3% after 1000 cycles without sacrificing the rate performance. This work provides a simple, reliable, and harmless method to achieve high-performance aqueous zinc-ion batteries.
一种新颖的化学镀技术被用于在锌箔(Zn@PDA)上涂覆聚多巴胺层,以调节锌枝晶的沉积和生长,并抑制水系锌离子电池析氢和钝化产物的出现。聚多巴胺(PDA)在化学镀过程中由于形成双齿键而对锌箔具有很强的吸附能力。此外,这表明PDA丰富的羟基作为亲锌位点吸附锌,并通过形成羰基进一步发生氧化还原反应,从而有效地诱导锌枝晶的均匀沉积和生长。同时,PDA与锌的强配位作用会削弱锌与水分子之间的溶剂化结构,导致水分子的电离能增强,析氢反应受到抑制。因此,Zn@PDA在0.2 mA cm下可保持900小时以上的稳定循环,在2 mA cm下平均库仑效率高达98.5%。此外,使用Zn@PDA||自支撑VS@不锈钢(VS@SS)全电池验证了Zn@PDA的有效性,该全电池在1000次循环后显示出令人印象深刻的81.3%的容量保持率,且不牺牲倍率性能。这项工作提供了一种简单、可靠且无害的方法来实现高性能水系锌离子电池。