Yang Yan, Sun Zhaoyu, Wu Yiwen, Liang Ziwei, Li Fangkun, Zhu Min, Liu Jun
School of Materials Science and Engineering, Guangdong Provincial Key Laboratory of Advanced Energy Storage Materials, South China University of Technology, Guangzhou, 510641, China.
Small. 2024 Sep;20(37):e2401457. doi: 10.1002/smll.202401457. Epub 2024 May 10.
The separator is an important component in batteries, with the primary function of separating the positive and negative electrodes and allowing the free passage of ions. Porous organic framework materials have a stable connection structure, large specific surface area, and ordered pores, which are natural places to store electrolytes. And these materials with specific functions can be designed according to the needs of researchers. The performance of porous organic framework-based separators used in rechargeable lithium metal batteries is much better than that of polyethylene/propylene separators. In this paper, the three most classic organic framework materials (MOF, COF, and HOF) are analyzed and summarized. The applications of MOF, COF, and HOF separators in lithium-sulfur batteries, lithium metal anode, and solid electrolytes are reviewed. Meanwhile, the research progress of these three materials in different fields is discussed based on time. Finally, in the conclusion, the problems encountered by MOF, COF, and HOF in different fields as well as their future research priorities are presented. This review will provide theoretical guidance for the design of porous framework materials with specific functions and further stimulate researchers to conduct research on porous framework materials.
隔膜是电池中的重要组件,其主要功能是分隔正负极并允许离子自由通过。多孔有机骨架材料具有稳定的连接结构、大比表面积和有序的孔道,是储存电解质的天然场所。而且这些具有特定功能的材料可以根据研究人员的需求进行设计。用于可充电锂金属电池的基于多孔有机骨架的隔膜性能比聚乙烯/聚丙烯隔膜要好得多。本文对三种最经典的有机骨架材料(金属有机框架材料、共价有机框架材料和氢键有机框架材料)进行了分析和总结。综述了金属有机框架材料、共价有机框架材料和氢键有机框架材料隔膜在锂硫电池、锂金属负极和固体电解质中的应用。同时,根据时间顺序讨论了这三种材料在不同领域的研究进展。最后,在结论部分,介绍了金属有机框架材料、共价有机框架材料和氢键有机框架材料在不同领域遇到的问题以及它们未来的研究重点。本综述将为具有特定功能的多孔框架材料的设计提供理论指导,并进一步激励研究人员对多孔框架材料进行研究。