Liu Liyang, Wang Xinyi, Hu Zewei, Wang Xin, Zheng Qingqing, Han Chao, Xu Jiantie, Xu Xun, Liu Hua-Kun, Dou Shi-Xue, Li Weijie
State Key Laboratory for Powder Metallurgy, Central South University, Changsha, 410083, China.
Institute for Superconducting and Electronic Materials, Australian Institute for Innovative Materials, University of Wollongong, Wollongong, 2522, Australia.
Angew Chem Int Ed Engl. 2024 Jul 22;63(30):e202405209. doi: 10.1002/anie.202405209. Epub 2024 Jun 17.
Regulating the electric double layer (EDL) structure of the zinc metal anode by using electrolyte additives is an efficient way to suppress interface side reactions and facilitate uniform zinc deposition. Nevertheless, there are no reports investigating the proactive design of EDL-regulating additives before the start of experiments. Herein, a functional group assembly strategy is proposed to design electrolyte additives for modulating the EDL, thereby realizing a long-lasting zinc metal anode. Specifically, by screening ten common functional groups, N, N-dimethyl-1H-imidazole-1-sulfonamide (IS) is designed by assembling an imidazole group, characterized by its high adsorption capability on the zinc anode, and a sulfone group, which exhibits strong binding with Zn ions. Benefiting from the adsorption functionalization of the imidazole group, the IS molecules occupy the position of HO in the inner Helmholtz layer of the EDL, forming a molecular protective layer to inhibit HO-induced side reactions. Meanwhile, the sulfone group in IS, acting as a binding site to Zn, promotes the de-solvation of Zn ions, facilitating compact zinc deposition. Consequently, the utilization of IS significantly extending the cycling stability of Zn||Zn and Zn||NaVO ⋅ 1.5HO full cell. This study offers an innovative approach to the design of EDL regulators for high-performance zinc metal batteries.
通过使用电解质添加剂来调控锌金属负极的双电层(EDL)结构,是抑制界面副反应并促进锌均匀沉积的有效方法。然而,在实验开始之前,尚无关于双电层调控添加剂前瞻性设计的报道。在此,我们提出一种官能团组装策略来设计用于调节双电层的电解质添加剂,从而实现长效的锌金属负极。具体而言,通过筛选十种常见的官能团,通过组装具有在锌负极上高吸附能力的咪唑基团和与锌离子具有强结合力的砜基团,设计出了N,N - 二甲基 - 1H - 咪唑 - 1 - 磺酰胺(IS)。受益于咪唑基团的吸附功能化,IS分子占据了双电层内亥姆霍兹层中HO的位置,形成分子保护层以抑制HO诱导的副反应。同时,IS中的砜基团作为锌的结合位点,促进锌离子的去溶剂化,有利于致密的锌沉积。因此,IS的使用显著延长了Zn||Zn和Zn||NaVO₃·1.5H₂O全电池的循环稳定性。本研究为高性能锌金属电池的双电层调节剂设计提供了一种创新方法。