Wang Yahui, Zhao Ran, Yang Jingjing, Zou Jiawen, Zhang Anqi, Han Xiaomin, Hu Zhifan, Lv Mengge, Wang Xinran, Wu Chuan, Bai Ying
Beijing Key Laboratory of Environmental Science and Engineering School of Materials Science & Engineering, Beijing Institute of Technology, Beijing, 100081, China.
Yangtze Delta Region Academy of Beijing Institute of Technology, Jiaxing, 314019, China.
Small. 2024 Dec;20(50):e2406871. doi: 10.1002/smll.202406871. Epub 2024 Oct 4.
Aqueous zinc-ion batteries (AZIBs) with slightly acidic electrolytes process advantages such as high safety, competitive cost, and satisfactory electrochemical performance. However, the failure behaviors of both electrodes, regarding zinc dendrite growth, interfacial parasitic reactions, and the collapse of cathode materials hinder the practical application of ZIBs. To alleviate the issues of both anode and cathode at the same time, D-xylose (DX) is introduced to the electrolyte as a multifunctional additive. As a result, the side reaction of the anode is suppressed and the metallic deposition behavior is regulated due to the hydrogen bonding network reconstruction and preferential surface adsorption of DX; for the MnO cathode, the DX adsorption can help the interfacial charge transfer and increase the reactive sites. Benefiting from these merits, DX-optimized Zn//Zn battery displays reveal a prolonged lifespan of 6912 h and an ultra-high cumulative capacity of 17.28 Ah cm at 5 mA cm. With the function of water reactivity suppression, the Coulombic efficiency reaches 99.91% at 2 mA cm; the Zn||MnO full batteries exhibit excellent cyclability over 2000 cycles at 5C with an increased capacity of 118.9 mAh g, indicating the dual functions to both of the electrodes for AZIBs.
具有微酸性电解质的水系锌离子电池(AZIBs)具有高安全性、成本竞争力和令人满意的电化学性能等优点。然而,电极的失效行为,包括锌枝晶生长、界面寄生反应和阴极材料的坍塌,阻碍了水系锌离子电池的实际应用。为了同时缓解阳极和阴极的问题,将D-木糖(DX)作为多功能添加剂引入到电解质中。结果,阳极的副反应得到抑制,由于DX的氢键网络重构和优先表面吸附,金属沉积行为得到调控;对于MnO阴极,DX吸附有助于界面电荷转移并增加反应位点。受益于这些优点,DX优化的Zn//Zn电池显示出在5 mA cm下延长的6912小时寿命和17.28 Ah cm的超高累积容量。具有抑制水反应性的功能,在2 mA cm下库仑效率达到99.91%;Zn||MnO全电池在5C下超过2000次循环表现出优异的循环稳定性,容量增加118.9 mAh g,表明其对水系锌离子电池的两个电极都具有双重功能。