Tianjin Key Laboratory of Molecular Optoelectronic Sciences, Department of Chemistry, School of Science, Tianjin University, Tianjin, 300072, P. R. China.
Tianjin Key Laboratory of Environmental Technology for Complex Trans-Media Pollution, College of Environmental Science and Engineering, Nankai University, Tianjin, 300350, P. R. China.
Small. 2022 Sep;18(38):e2202928. doi: 10.1002/smll.202202928. Epub 2022 Aug 19.
Metal-organic frameworks (MOFs) and covalent organic frameworks (COFs) hybrid materials are a class of porous crystalline materials that integrate MOFs and COFs with hierarchical pore structures. As an emerging porous frame material platform, MOF/COF hybrid materials have attracted tremendous attention, and the field is advancing rapidly and extending into more diverse fields. Extensive studies have shown that a broad variety of MOF/COF hybrid materials with different structures and specific properties can be synthesized from diverse building blocks via different chemical reactions, driving the rapid growth of the field. The allowed complementary utilization of π-conjugated skeletons and nanopores for functional exploration has endowed these hybrid materials with great potential in challenging energy and environmental issues. It is necessary to prepare a "family tree" to accurately trace the developments in the study of MOF/COF hybrid materials. This review comprehensively summarizes the latest achievements and advancements in the design and synthesis of MOF/COF hybrid materials, including COFs covalently bonded to the surface functional groups of MOFs (MOF@COF), MOFs grown on the surface of COFs (COF@MOF), bridge reaction between COF and MOF (MOF+COF), and their various applications in catalysis, energy storage, pollutant adsorption, gas separation, chemical sensing, and biomedicine. It concludes with remarks concerning the trend from the structural design to functional exploration and potential applications of MOF/COF hybrid materials.
金属-有机骨架(MOFs)和共价有机骨架(COFs)杂化材料是一类多孔晶体材料,将 MOFs 和 COFs 与分级孔结构集成在一起。作为新兴的多孔框架材料平台,MOF/COF 杂化材料引起了极大的关注,该领域正在迅速发展,并扩展到更多的多样化领域。广泛的研究表明,可以通过不同的化学反应,从不同的构建块合成具有不同结构和特定性能的多种 MOF/COF 杂化材料,推动了该领域的快速发展。允许对π共轭骨架和纳米孔进行互补利用以进行功能探索,使这些杂化材料在解决具有挑战性的能源和环境问题方面具有巨大的潜力。有必要准备一份“族谱”,以准确追踪 MOF/COF 杂化材料研究的发展。本综述全面总结了 MOF/COF 杂化材料的设计和合成的最新成就和进展,包括 COFs 通过 MOFs 表面官能团共价键合(MOF@COF)、COFs 在 COFs 表面生长(COF@MOF)、COF 和 MOF 之间的桥联反应(MOF+COF)及其在催化、储能、污染物吸附、气体分离、化学传感和生物医学等各个领域的应用。最后,对从结构设计到功能探索和潜在应用的 MOF/COF 杂化材料的发展趋势进行了评论。