He Xiaofeng, Qian Yongchao, Wu Yadong, Yan Zidi, Lin Xiangbin, Kong Xiang-Yu, Zhao Yong, Jiang Lei, Wen Liping
Key Laboratory of Bio-inspired Materials and Interfacial Science, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing, 100190, P. R., China.
University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.
Angew Chem Int Ed Engl. 2024 Dec 9;63(50):e202411563. doi: 10.1002/anie.202411563. Epub 2024 Oct 25.
Zinc (Zn) metal batteries could be the technology of choice for sustainable battery chemistries owing to its better safety and cost advantage. However, their cycle life and Coulombic efficiency (CE) are strongly limited by the dendritic growth and side reactions of Zn anodes. Herein, we proposed an in situ construction of a metal-phosphonate-organic network (MPON) with three-dimensional interconnected networks on Zn metal, which can act as an ion enrichment layer for Zn anodes in Zn-metal batteries. This MPON with abundant porous structure and phosphate sites possesses ion enriching properties and high Zn transference number (0.83), which is beneficial for enhancing Zn migration and self-concentrating kinetics. Meanwhile, MPON offers hydrophobicity to effectively inhibit the water-induced Zn anode corrosion. As a result, the Zn electrode exhibits superior Zn/Zn reversibility of over 4 months at 3 mA cm and a high CE of 99.6 %. Moreover, the Zn/NaVO ⋅ 1.5HO and Zn/MnO full cells using ultrathin Zn anodes (10 μm) exhibit high-capacity retention of 81 % and 78 % after 1400 and 1000 cycles, respectively. This work provides a unique promise to design high-performance anode for practical Zn-metal-based batteries.
锌(Zn)金属电池因其更好的安全性和成本优势,可能成为可持续电池化学的首选技术。然而,它们的循环寿命和库仑效率(CE)受到锌阳极枝晶生长和副反应的严重限制。在此,我们提出在锌金属上原位构建具有三维互连网络的金属膦酸盐有机网络(MPON),它可以作为锌金属电池中锌阳极的离子富集层。这种具有丰富多孔结构和磷酸盐位点的MPON具有离子富集特性和高锌迁移数(0.83),有利于增强锌的迁移和自浓缩动力学。同时,MPON具有疏水性,可有效抑制水诱导的锌阳极腐蚀。结果,锌电极在3 mA cm下表现出超过4个月的优异锌/锌可逆性和99.6%的高CE。此外,使用超薄锌阳极(10μm)的锌/NaVO₃·1.5H₂O和锌/MnO₂全电池在1400次和1000次循环后分别表现出81%和78%的高容量保持率。这项工作为设计实用的锌基金属电池高性能阳极提供了独特的前景。