Yin Ying, Zhang Ya, Zhou Xu, Gui Bo, Cai Guohong, Sun Junliang, Wang Cheng
College of Chemistry and Molecular Sciences, Wuhan University, Wuhan 430072, China.
College of Chemistry and Molecular Engineering Beijing National Laboratory for Molecular Sciences, Peking University, Beijing 100871, China.
J Am Chem Soc. 2023 Oct 18;145(41):22329-22334. doi: 10.1021/jacs.3c08712. Epub 2023 Oct 4.
The limited structural diversity of three-dimensional covalent organic frameworks (3D COFs) greatly restricts their application exploration. Therefore, there is an urgent need to expand their library of molecular building blocks, such as the development of highly connected (>4 reaction sites) polyhedral nodes. Herein, by precisely controlling the precursor conformation, we rationally designed a new 6-connected triangular prism node derived from the triphenylbenzene molecule and further used it to construct a novel 3D COF (3D-TMTAPB-COF) via imine condensation reaction. Surprisingly, without the addition of competing reagents, 3D-TMTAPB-COF crystallized directly into single crystals of ∼15 μm in size and was determined to adopt a rare 6-fold interpenetrated (Class IIIa interpenetration) topology. In addition, 3D-TMTAPB-COF showed a high SF adsorption capacity (60.9 cm g) and good SF/N selectivity (335) at 298 K and 1 bar, superior to those of most crystalline porous materials. This work not only confirms the possibility of growing large-size single-crystal 3D COFs formed with strong covalent bonds by a solvothermal method in the absence of modulators, but also reports a novel triangular prism node for future construction of 3D COFs with interesting applications.
三维共价有机框架(3D COF)有限的结构多样性极大地限制了它们的应用探索。因此,迫切需要扩展它们的分子构建块库,例如开发高度连接(>4个反应位点)的多面体节点。在此,通过精确控制前驱体构象,我们合理设计了一种源自三苯基苯分子的新型六连接三棱柱节点,并进一步通过亚胺缩合反应将其用于构建新型3D COF(3D-TMTAPB-COF)。令人惊讶的是,在不添加竞争试剂的情况下,3D-TMTAPB-COF直接结晶为尺寸约为15μm的单晶,并被确定采用罕见的六重互穿(IIIa类互穿)拓扑结构。此外,3D-TMTAPB-COF在298 K和1 bar下表现出高的SF吸附容量(60.9 cm g)和良好的SF/N选择性(335),优于大多数结晶多孔材料。这项工作不仅证实了在没有调节剂的情况下通过溶剂热法生长由强共价键形成的大尺寸单晶3D COF的可能性,还报道了一种新型三棱柱节点,用于未来构建具有有趣应用的3D COF。