Yang Xiao-Dong, Tan Liangxiao, Sun Jian-Ke
MOE Key Laboratory of Cluster Science, Beijing Key Laboratory of Photoelectronic/Electrophotonic Conversion Materials, School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing, 102488, P. R. China.
Chem Asian J. 2022 Feb 14;17(4):e202101289. doi: 10.1002/asia.202101289. Epub 2022 Jan 20.
Metal clusters (MCs) with dimensions between a single metal atom and nanoparticles of >2 nm usually possess distinct geometric and electronic structures, and their outstanding performance in catalysis applications have underpinned a broad research interest. However, smaller-sized MCs are easily deactivated by migration coalescence during the catalysis process because of their high surface energy. Therefore, the search of an appropriate stabilizer for MCs is urgently demanded. In recent years, porous organic polymers (POPs) and organic molecular cages (OMCs), as emerging functional materials, have attracted significant attention. Benefiting from the spatial confinement, encapsulating MCs into these porous organic materials is a promising approach to guarantee the uniform size distribution and stability. In this review, we aim to provide a comprehensive summary of the recent progress in the synthetic strategies and catalysis applications of the encapsulated MCs, and seek to uncover promising ideas that can stimulate future developments at both the fundamental and applied levels.
尺寸介于单个金属原子和大于2 nm的纳米颗粒之间的金属簇(MCs)通常具有独特的几何和电子结构,并且它们在催化应用中的出色性能引发了广泛的研究兴趣。然而,尺寸较小的MCs由于其高表面能,在催化过程中容易因迁移聚结而失活。因此,迫切需要寻找一种适用于MCs的稳定剂。近年来,多孔有机聚合物(POPs)和有机分子笼(OMCs)作为新兴的功能材料,受到了广泛关注。得益于空间限制,将MCs封装到这些多孔有机材料中是保证尺寸分布均匀和稳定性的一种有前景的方法。在这篇综述中,我们旨在全面总结封装MCs的合成策略和催化应用的最新进展,并试图揭示有前景的想法,以推动基础和应用层面的未来发展。