Bi Wendie, Han Linxuan, Liu Yutao, Li Libo
College of Chemistry and Chemical Engineering, Shanxi Key Laboratory of Gas Energy Efficient and Clean Utilization, Taiyuan University of Technology, Taiyuan, 030024, China.
State Key Laboratory of Coal Conversion, Institute of Coal Chemistry, Chinese Academy of Sciences, Taiyuan, 030024, China.
Chemistry. 2024 Nov 15;30(64):e202401868. doi: 10.1002/chem.202401868. Epub 2024 Oct 29.
Metal-organic frameworks (MOFs), owing the merits of ordered and tailored channel structures in the burgeoning crystalline porous materials, have demonstrated significant promise in construction of high-performance separation membranes. However, precisely because this crystal structure with strong molecular interaction in their lattice provides robust structural integrity and resistance to chemical and thermal degradation, crystalline MOFs typically exhibit insolubility, infusibility, stiffness and brittleness, and therefore their membrane-processing properties are far inferior to the flexible amorphous polymers and hinder their subsequent storage, transportation, and utilization. Hence, focusing on film-formation and crystallization is the foundation for exploring the fabrication and application of MOF membranes. In this review, the film-forming properties of crystalline MOFs are fundamentally analyzed from their inherent characteristics and compared with those of amorphous polymers, influencing factors of polycrystalline MOF membrane formation are summarized, the trade-off relationship between crystallization and membrane formation is discussed, and the strategy solving the film formation of crystalline MOFs in recent years are systematically reviewed, in anticipation of realizing the goal of preparing crystalline membranes with optimized processability and excellent performance.
金属有机框架材料(MOFs)作为新兴的晶态多孔材料,具有有序且可定制的孔道结构,在高性能分离膜的构建方面展现出巨大潜力。然而,正是由于这种在晶格中具有强分子相互作用的晶体结构赋予了其强大的结构完整性以及对化学和热降解的抗性,晶态MOFs通常表现出不溶性、不熔性、刚性和脆性,因此它们的成膜加工性能远逊于柔性无定形聚合物,这阻碍了它们后续的储存、运输和应用。所以,聚焦于成膜和结晶是探索MOF膜制备与应用的基础。在本综述中,从晶态MOFs的固有特性出发,对其成膜性能进行了深入分析,并与无定形聚合物的成膜性能进行了比较,总结了多晶MOF膜形成的影响因素,讨论了结晶与成膜之间的权衡关系,系统回顾了近年来解决晶态MOFs成膜问题的策略,以期实现制备具有优化加工性能和优异性能的晶态膜这一目标。