Wu Peng, Zhao Yanhua, Zhang Xinglong, Fan Yun, Zhang Suoying, Zhang Weina, Huo Fengwei
Key Laboratory of Flexible Electronics (KLOFE) & Institute of Advanced Materials (IAM), Nanjing Tech University (Nanjing Tech), 30 South Puzhu Road, Nanjing 211816, China.
Frontiers Science Center for Flexible Electronics, Xi'an Institute of Flexible Electronics (IFE), Xi'an Institute of Biomedical Materials & Engineering, Northwestern Polytechnical University, 127 West Youyi Road, Xi'an 710072, China.
JACS Au. 2023 Aug 30;3(9):2413-2435. doi: 10.1021/jacsau.3c00344. eCollection 2023 Sep 25.
Building bridges among different types of catalysts to construct cascades is a highly worthwhile pursuit, such as chemo-, bio-, and chemo-bio cascade reactions. Cascade reactions can improve the reaction efficiency and selectivity while reducing steps of separation and purification, thereby promoting the development of "green chemistry". However, compatibility issues in cascade reactions pose significant constraints on the development of this field, particularly concerning the compatibility of diverse catalyst types, reaction conditions, and reaction rates. Metal-organic framework micro/nano reactors (MOF-MNRs) are porous crystalline materials formed by the self-assembly coordination of metal sites and organic ligands, possessing a periodic network structure. Due to the uniform pore size with the capability of controlling selective transfer of substances as well as protecting active substances and the organic-inorganic parts providing reactive microenvironment, MOF-MNRs have attracted significant attention in cascade reactions in recent years. In this Perspective, we first discuss how to address compatibility issues in cascade reactions using MOF-MNRs, including structural design and synthetic strategies. Then we summarize the research progress on MOF-MNRs in various cascade reactions. Finally, we analyze the challenges facing MOF-MNRs and potential breakthrough directions and opportunities for the future.
在不同类型的催化剂之间搭建桥梁以构建级联反应是一项非常值得追求的事情,比如化学、生物以及化学-生物级联反应。级联反应可以提高反应效率和选择性,同时减少分离和纯化步骤,从而推动“绿色化学”的发展。然而,级联反应中的兼容性问题对该领域的发展构成了重大限制,特别是在不同催化剂类型、反应条件和反应速率的兼容性方面。金属有机框架微/纳米反应器(MOF-MNRs)是由金属位点和有机配体自组装配位形成的多孔晶体材料,具有周期性网络结构。由于孔径均匀,能够控制物质的选择性传输以及保护活性物质,并且有机-无机部分提供反应性微环境,近年来MOF-MNRs在级联反应中受到了广泛关注。在这篇综述中,我们首先讨论如何利用MOF-MNRs解决级联反应中的兼容性问题,包括结构设计和合成策略。然后我们总结了MOF-MNRs在各种级联反应中的研究进展。最后,我们分析了MOF-MNRs面临的挑战以及未来潜在的突破方向和机遇。