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基于金属有机框架材料的水系锌离子电池

Metal-Organic Framework-Based Materials in Aqueous Zinc-Ion Batteries.

机构信息

Shenzhen Key Laboratory of Advanced Energy Storage, Southern University of Science and Technology, Shenzhen 518055, China.

Department of Mechanical and Energy Engineering, Southern University of Science and Technology, Shenzhen 518055, China.

出版信息

Int J Mol Sci. 2023 Mar 23;24(7):6041. doi: 10.3390/ijms24076041.

Abstract

Aqueous zinc-ion batteries (AZIBs) are promising for large-scale energy storage systems due to their high safety, large capacity, cost-effectiveness, and environmental friendliness. However, their commercialization is currently hindered by several challenging issues, including cathode degradation and zinc dendrite growth. Recently, metal-organic frameworks (MOFs) and their derivatives have gained significant attention and are widely used in AZIBs due to their highly porous structures, large specific surface area, and ability to design frameworks for Zn shuttle. Based on preceding contributions, this review aims to generalize two design principles for MOF-based materials in AZIBs: cathode preparation and anode protection. For cathode preparation, we mainly introduce novel MOF-based electrode materials such as pure MOFs, porous carbon materials, metal oxides, and their compounds, focusing on the analysis of the specific capacity of AZIBs. For anode protection, we systematically analyze MOF-based materials used as 3D Zn architecture, solid electrolyte interfaces, novel separators, and solid-state electrolytes, highlighting the improvement in the cyclic stability of Zn anodes. Finally, we propose the future development of MOF-based materials in AZIBs. Our work can give some clues for raising the practical application level of aqueous ZIBs.

摘要

水系锌离子电池(AZIBs)由于其高安全性、大容量、成本效益和环境友好性,在大规模储能系统中具有广阔的应用前景。然而,其商业化目前受到几个挑战性问题的阻碍,包括阴极降解和锌枝晶生长。最近,金属-有机骨架(MOFs)及其衍生物由于其高多孔结构、大比表面积以及设计用于 Zn 穿梭的骨架的能力,在 AZIBs 中得到了广泛关注和应用。基于前人的贡献,本综述旨在总结 MOF 基材料在 AZIBs 中的两个设计原则:阴极制备和阳极保护。在阴极制备方面,我们主要介绍了新型 MOF 基电极材料,如纯 MOFs、多孔碳材料、金属氧化物及其化合物,重点分析了 AZIBs 的比容量。在阳极保护方面,我们系统地分析了用作 3D Zn 结构、固态电解质界面、新型隔板和固态电解质的 MOF 基材料,强调了提高 Zn 阳极循环稳定性的作用。最后,我们提出了 MOF 基材料在 AZIBs 中的未来发展方向。我们的工作可以为提高水系 ZIBs 的实际应用水平提供一些线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46b9/10094474/93b453ba9f04/ijms-24-06041-g001.jpg

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