Key Laboratory of Biomedical Polymers (Ministry of Education), College of Chemistry and Molecular Sciences, Wuhan University , Wuhan 430072, China.
J Am Chem Soc. 2017 Jun 28;139(25):8705-8709. doi: 10.1021/jacs.7b04141. Epub 2017 Jun 15.
The design and synthesis of three-dimensional covalent organic frameworks (3D COFs) bearing photoelectric units have been considered as a big challenge. Herein, for the first time, we reported the targeted synthesis of two 3D porphyrin-based COFs (3D-Por-COF and 3D-CuPor-COF), starting from tetrahedral (3D-T) and square (2D-C) building blocks connected through [4 + 4] imine condensation reactions. On the basis of structural characterizations, 3D-Por-COF and 3D-CuPor-COF are microporous materials with high surface areas, and are proposed to adopt a 2-fold interpenetrated pts topology with Pmc2 space group. Interestingly, both 3D COFs are photosensitive and can be used as heterogeneous catalyst for generating singlet oxygen under photoirradiation. However, 3D-Por-COF shows enhanced photocatalytic activity compared with 3D-CuPor-COF, indicating the properties of 3D porphyrin-based COFs can be tuned by metalation of porphyrin rings. The results reported here will greatly inspire us to design and synthesize 3D COFs bearing other metalloporphyrins for interesting applications (e.g., catalysis) in the future.
具有光电单元的三维共价有机骨架(3D COFs)的设计和合成一直被认为是一个巨大的挑战。在此,我们首次报道了通过[4+4]亚胺缩合反应,从四面体(3D-T)和正方形(2D-C)构筑块出发,靶向合成了两种基于卟啉的三维 COFs(3D-Por-COF 和 3D-CuPor-COF)。基于结构表征,3D-Por-COF 和 3D-CuPor-COF 是具有高表面积的微孔材料,且被提议采用 Pmc2 空间群的 2 重互穿 pts 拓扑结构。有趣的是,这两种 3D COFs 均具有光敏性,可在光照下用作生成单线态氧的非均相催化剂。然而,3D-Por-COF 表现出比 3D-CuPor-COF 更高的光催化活性,表明通过卟啉环的金属化可以调节基于 3D 卟啉的 COFs 的性质。这里报道的结果将极大地激发我们设计和合成具有其他金属卟啉的 3D COFs,以用于未来在催化等有趣的应用中。