Janus Binder Chemistry for Synchronous Enhancement of Iodine Species Adsorption and Redox Kinetics toward Sustainable Aqueous Zn–I 2 Batteries
作者:Jialin Yang, Han‐Hao Liu, Xin-Xin Zhao, Xinyi Zhang, Kai-Yang Zhang, Mingyang Ma, Zhen‐Yi Gu, Junming Cao, Xing‐Long Wu · 发表于:Journal of the American Chemical Society · 年份:2024 · DOI:10.1021/jacs.3c12638 · 被引用次数:237 · 研究领域:Advanced battery technologies research、Advanced Battery Materials and Technologies、Supercapacitor Materials and Fabrication
Currently, the desired research focus in energy storage technique innovation has been gradually shifted to next-generation aqueous batteries holding both high performance and sustainability. However, aqueous Zn–I 2 batteries have been deemed to have great sustainable potential, owing to the merits of cost-effective and eco-friendly nature. However, their commercial application is hindered by the serious shuttle effect of polyiodides during reversible operations. In this work, a Janus functional binder based on chitosan (CTS) molecules was designed and prepared; the polar terminational groups impart excellent mechanical robustness to hybrid binders; meanwhile, it can also deliver isochronous enhancement on physical adsorption and redox kinetics toward I 2 species. By feat of highly effective remission to shuttle effect, the CTS cell exhibits superb electrochemical storage capacities with long-term robustness, specifically, 144.1 mAh g –1, at a current density of 0.2 mA g –1 after 1500 cycles. Simultaneously, the undesired self-discharging issue could be also well-addressed; the Coulombic efficiency could remain at 98.8 % after resting for 24 h. More importantly, CTS molecules endow good biodegradability and reusable properties; after iodine species were reloaded, the recycled devices could also deliver specific capacities of 73.3 mAh g –1, over 1000 cycles. This Janus binder provides a potential synchronous solution to realize high comprehensive performance with high iodine ut...