光催化
制作
纳米技术
材料科学
羧酸盐
化学
组合化学
纳米结构
反应条件
化学工程
反应机理
分子
机制(生物学)
科技与社会
催化作用
作者
Ke‐Wei Tong,Shi-Ru Xiong,Xue-Ying Jiang,Mengyu Li,Yanjie Wang,Chao‐Qin Chen,Jing Du,Peng Yang
标识
DOI:10.1021/acs.chemmater.5c02060
摘要
Photocatalytic fabrication of fine chemicals provides a sustainable method of development for the pharmaceutical industry. At present, optimizing the performance of photocatalysts via precise structural engineering at the atomic level is of the utmost importance. To unleash the potential of structurally editable polyoxovanadate–organic cages (POV-MOCs) as photocatalytic materials, herein, a family of five POV-MOCs were scaffolded by a cross combination of {V 6 X} (X = SO 4 2–, PhPO 3 2–, and NH 2 PhAsO 3 2– ) vertices and benzo-2,1,3-thiadiazole-functionalized carboxylate linkers. Along with the structural evolution from capsule to cuboid-type topology as well as the heterogroup modification of the vertex, the photophysical properties of POV-MOCs could be regulated precisely. The structurally optimized POV-MOCs demonstrated prominent photocatalytic activity in the oxidative synthesis of benzimidazoles, which are medicinally important. Thanks to the teamwork of experimental and theoretical studies, a possible reaction mechanism that involves O 2 •– has been proposed and validated. The unveiled structure–function relationship provides an effective route to customize POV-MOC-based photocatalysts for a broader range of sustainable applications.
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