Cai Guorui, Yan Peng, Zhang Liangliang, Zhou Hong-Cai, Jiang Hai-Long
Hefei National Laboratory for Physical Sciences at the Microscale, CAS Key Laboratory of Soft Matter Chemistry, Department of Chemistry, University of Science and Technology of China, Hefei, Anhui 230026, P. R. China.
Frontiers Science Center for Flexible Electronics (FSCFE), Northwestern Polytechnical University (NPU), Xi'an, Shaanxi 710072, P. R. China.
Chem Rev. 2021 Oct 27;121(20):12278-12326. doi: 10.1021/acs.chemrev.1c00243. Epub 2021 Jul 19.
Metal-organic frameworks (MOFs) have been widely recognized as one of the most fascinating classes of materials from science and engineering perspectives, benefiting from their high porosity and well-defined and tailored structures and components at the atomic level. Although their intrinsic micropores endow size-selective capability and high surface area, etc., the narrow pores limit their applications toward diffusion-control and large-size species involved processes. In recent years, the construction of hierarchically porous MOFs (HP-MOFs), MOF-based hierarchically porous composites, and MOF-based hierarchically porous derivatives has captured widespread interest to extend the applications of conventional MOF-based materials. In this Review, the recent advances in the design, synthesis, and functional applications of MOF-based hierarchically porous materials are summarized. Their structural characters toward various applications, including catalysis, gas storage and separation, air filtration, sewage treatment, sensing and energy storage, have been demonstrated with typical reports. The comparison of HP-MOFs with traditional porous materials (e.g., zeolite, porous silica, carbons, metal oxides, and polymers), subsisting challenges, as well as future directions in this research field, are also indicated.
从科学和工程角度来看,金属有机框架材料(MOFs)已被广泛认为是最具吸引力的材料类别之一,这得益于它们的高孔隙率以及在原子水平上明确且可定制的结构和组分。尽管其固有的微孔赋予了尺寸选择性能力和高比表面积等特性,但狭窄的孔道限制了它们在涉及扩散控制和大尺寸物种的过程中的应用。近年来,分级多孔MOFs(HP-MOFs)、基于MOF的分级多孔复合材料以及基于MOF的分级多孔衍生物的构建引起了广泛关注,以扩展传统MOF基材料的应用。在本综述中,总结了基于MOF的分级多孔材料在设计、合成和功能应用方面的最新进展。通过典型报道展示了它们在各种应用中的结构特征,包括催化、气体存储与分离、空气过滤、污水处理、传感和能量存储。还指出了HP-MOFs与传统多孔材料(如沸石、多孔二氧化硅、碳、金属氧化物和聚合物)的比较、现存挑战以及该研究领域的未来方向。