Li Juanyun, Wang Bin, Wang Siyuan, Li Wenqi, Chen Ding
College of Mechanical & Vehicle Engineering, Hunan University, Changsha, 410082, China.
ChemSusChem. 2025 Jan 14;18(2):e202401217. doi: 10.1002/cssc.202401217. Epub 2024 Oct 25.
Aqueous zinc-ion batteries (AZIBs) are garnering substantial research interest in electric vehicles, energy storage systems, and portable electronics, primarily for the reason that the inexpensive cost, high theoretical specific capacity, and environmental sustainability of zinc metal anodes, which are an essential component to their design. Nonetheless, the progress of AZIBs is hindered by significant obstacles, such as the occurrence of anodic side reactions (SR) and the formation of zinc dendrites. Metal-organic framework (MOF)-based materials are being explored as promising alternatives owing to homogeneous porous structure and large specific surface areas. There has been a rare overview and discussion on strategies for protecting anodes using MOF-based materials. This review specifically aims to investigate cutting-edge strategies for the design of highly stable MOF-based anodes in AZIBs. Firstly, the mechanisms of dendrites and SR are summarized. Secondly, the recent advances in MOF-based anodic protection including those of pristine MOFs, MOF composites, and MOF derivatives are reviewed. Furthermore, the strategies involving MOF-based materials for zinc anode stabilization are presented, including the engineering of surface coatings, three-dimensional zinc structures, artificial solid electrolyte interfaces, separators, and electrolytes. Finally, the ongoing challenges and prospective directions for further enhancement of MOF-based anodic protection technologies in AZIBs are highlighted.
水系锌离子电池(AZIBs)在电动汽车、储能系统和便携式电子产品领域正引发大量研究兴趣,主要原因在于锌金属负极成本低廉、理论比容量高且具有环境可持续性,而锌金属负极是其设计的关键组成部分。尽管如此,AZIBs的发展仍受到重大阻碍,例如阳极副反应(SR)的发生和锌枝晶的形成。基于金属有机框架(MOF)的材料因其均匀的多孔结构和大比表面积而被视为有前景的替代材料。目前对于使用基于MOF的材料保护负极的策略鲜有综述和讨论。本综述旨在专门研究在AZIBs中设计高度稳定的基于MOF的负极的前沿策略。首先,总结枝晶和SR的形成机制。其次,综述基于MOF的阳极保护的最新进展,包括原始MOF、MOF复合材料和MOF衍生物的进展。此外,介绍了涉及基于MOF的材料实现锌负极稳定化的策略,包括表面涂层、三维锌结构、人工固体电解质界面、隔膜和电解质的设计。最后,强调了在AZIBs中进一步增强基于MOF的阳极保护技术目前面临的挑战和未来的发展方向。