Cortés-Martínez Alba, von Baeckmann Cornelia, Hernández-López Laura, Carné-Sánchez Arnau, Maspoch Daniel
Catalan Institute of Nanoscience and Nanotechnology (ICN2), CSIC and The Barcelona Institute of Science and Technology Campus UAB, Bellaterra 08193 Barcelona Spain
Departament de Química, Facultat de Ciències, Universitat Autònoma de Barcelona (UAB) Cerdanyola del Vallès 08193 Barcelona Spain.
Chem Sci. 2024 Apr 30;15(21):7992-7998. doi: 10.1039/d4sc01974a. eCollection 2024 May 29.
Most reported porous materials are either extended networks or monomeric discrete cavities; indeed, porous structures of intermediate size have scarcely been explored. Herein, we present the stepwise linkage of discrete porous metal-organic cages or polyhedra (MOPs) into oligomeric structures with a finite number of MOP units. The synthesis of these new oligomeric porous molecules entails the preparation of 1-connected (1-c) MOPs with only one available azide reactive site on their surface. The azide-terminated 1-c MOP is linked through copper(i)-catalysed azide-alkyne cycloaddition click chemistry with additional alkyne-terminated 1-c MOPs, 4-c clusters, or 24-c MOPs to yield three classes of giant oligomeric molecules: dimeric, tetrameric, or satellite-like, respectively. Importantly, all the giant molecules that we synthesised are soluble in water and permanently porous in the solid state.
大多数已报道的多孔材料要么是扩展网络结构,要么是单体离散空腔结构;实际上,中等尺寸的多孔结构几乎未被探索过。在此,我们展示了将离散的多孔金属有机笼或多面体(MOPs)逐步连接成具有有限数量MOP单元的低聚结构。这些新型低聚多孔分子的合成需要制备在其表面仅具有一个可用叠氮化物反应位点的单连接(1-c)MOPs。叠氮化物封端的1-c MOP通过铜(I)催化的叠氮化物-炔烃环加成点击化学与额外的炔烃封端的1-c MOPs、4-c簇或24-c MOPs相连,分别生成三类巨型低聚分子:二聚体、四聚体或卫星状分子。重要的是,我们合成的所有巨型分子都可溶于水,并且在固态下具有永久多孔性。