Chen Huige, Wang Huashan, Li Jiashuai, Fei Bin, Wang Ziqi
Department of Materials Science and Engineering, College of Chemistry and Materials Science, Jinan University, Guangzhou 511443, P. R. China.
Research Institute for Intelligent Wearable Systems, School of Fashion and Textiles, Hong Kong Polytechnic University, Hunghom, Kowloon, Hong Kong 999077, P. R. China.
ACS Appl Mater Interfaces. 2023 Mar 22;15(11):14415-14423. doi: 10.1021/acsami.3c00274. Epub 2023 Mar 13.
Aqueous zinc batteries are appealing devices for cost-effective and environmentally sustainable energy storage. However, the critical issues of uncontrolled dendrite propagation and side reactions with Zn anodes have hindered their practical applications. Inspired by the functions of the rosin flux in soldering, an abietic acid (ABA) layer is fabricated on the surface of Zn anodes (ABA@Zn). The ABA layer protects the Zn anode from corrosion and the concomitant hydrogen evolution reaction. It also facilitates fast interfacial charge transfer and horizontal growth of the deposited Zn by reducing the surface tension of the Zn anode. Consequently, promoted redox kinetics and reversibility are simultaneously achieved by the ABA@Zn. It demonstrates stable Zn plating/stripping cycling over 5100 h and a high critical current of 8.0 mA cm. Moreover, the assembled ABA@Zn|(NH)VO full cell delivers outstanding long-term cycling stability with an 89% capacity retention after 3000 cycles. This work provides a straightforward yet effective solution to the key issues of aqueous zinc batteries.
水系锌电池是用于具有成本效益和环境可持续性储能的有吸引力的装置。然而,锌枝晶不受控制的生长以及与锌负极的副反应等关键问题阻碍了它们的实际应用。受松香助焊剂在焊接中功能的启发,在锌负极(ABA@Zn)表面制备了一层松香酸(ABA)。ABA层保护锌负极免受腐蚀及随之而来的析氢反应。它还通过降低锌负极的表面张力促进了界面电荷的快速转移以及沉积锌的横向生长。因此,ABA@Zn同时实现了促进的氧化还原动力学和可逆性。它展示了超过5100小时的稳定锌电镀/剥离循环以及8.0 mA cm的高临界电流。此外,组装的ABA@Zn|(NH)VO全电池具有出色的长期循环稳定性,在3000次循环后容量保持率为89%。这项工作为水系锌电池的关键问题提供了一种直接而有效的解决方案。