Li Mengqi, Chi Xu, Zhang Zixing, Bi Shuai, Meng Fancheng, Jiao Yang, Mou Kaiwen, Wang Zhiheng, Xue Bai, Li Xiaomeng, Zhang Fan
School of Chemistry and Chemical Engineering, State Key Laboratory of Metal Matrix Composites, Shanghai Jiao Tong University, 800Dongchuan Road, Shanghai, 200240, China.
Angew Chem Int Ed Engl. 2024 Oct 24;63(44):e202411474. doi: 10.1002/anie.202411474. Epub 2024 Sep 10.
Owing to its prominent π-delocalization and stability, vinylene linkage holds great merits in the construction of covalent organic frameworks (COFs) with promising semiconducting properties. However, carbon-carbon double bond formation reaction always exhibits relatively low reversibility, unfavorable for the formation of high crystalline frameworks through self-error correction and assembling processes. In this work, we report a heteroatom-tuned strategy to build up a series of two-dimensional (2D) vinylene-linked COFs by Knoevenagel condensation of an electron-deficient methylthiazolyl-based monomer with different triformyl substituted (hetero-)aromatic derivatives. The resulting COFs show high-quality periodic mesoporous structures with high surface areas. Embedding heteroatoms into the backbones enables significantly improving their crystallinity, and finely tailoring their semiconducting structures. Upon visible light stimulation, one of the as-prepared COFs with donor-π-acceptor structure could deliver a nearly seven-fold increase in the catalytic activity of hydrogen generation as compared with the other two. Meanwhile, in combination with high crystallinity and the matched conduction band energy level, such kind of COFs can be able to selectively generate singlet oxygen and superoxide radicals in a high ratio of up to 30 : 1, allowing for catalyzing aerobic thioanisole oxidation in distinctly tunable activities through the substituent electronic effect of the substrates.
由于其显著的π-离域性和稳定性,亚乙烯基键合在构建具有潜在半导体性质的共价有机框架(COF)方面具有很大优势。然而,碳-碳双键形成反应的可逆性通常较低,不利于通过自纠错和组装过程形成高结晶度的框架。在这项工作中,我们报道了一种杂原子调控策略,通过缺电子的甲基噻唑基单体与不同的三醛基取代(杂)芳族衍生物进行Knoevenagel缩合反应,构建了一系列二维(2D)亚乙烯基连接的COF。所得的COF具有高质量的周期性介孔结构和高比表面积。将杂原子嵌入骨架能够显著提高其结晶度,并精细调整其半导体结构。在可见光刺激下,其中一种具有供体-π-受体结构的制备好的COF与另外两种相比,产氢催化活性可提高近7倍。同时,结合高结晶度和匹配的导带能级,这类COF能够以高达30∶1的高比例选择性地生成单线态氧和超氧自由基,从而通过底物的取代基电子效应,以明显可调的活性催化苯甲硫醚的需氧氧化反应。