催化作用
环己烯
共价键
化学
选择性
卟啉
密度泛函理论
光化学
酮
氧气
组合化学
单线态氧
金刚烷
分子氧
催化氧化
材料科学
化学工程
氧化物
多相催化
双键
氧化还原
共轭体系
分子
共价有机骨架
高分子化学
作者
Dongpo Li,Chao Xiong,Qianqian Mao,Xiaoze Zhao,Luying Xi,Shenwei Chen,Peng Hu,Hongbing Ji
出处
期刊:Small
[Wiley]
日期:2026-07-06
卷期号:: e74392-e74392
摘要
Covalent organic frameworks (COFs) with tunable structures and high stability hold great potential in catalysis. However, traditional non-metallic COFs lack metal active sites, which limits catalytic efficiency. As the core structure of terminal oxygenases, metalloporphyrins can convert molecular oxygen into reactive oxygen species. The integration of metalloporphyrin units into COFs has been widely applied in various catalytic oxidation reactions. In contrast, 1D COFs possess more edge sites and efficient mass transfer capabilities, making them ideal catalytic platforms. We therefore constructed a 1D Ru-porphyrin-based COF (Ru-COF-Pcbb) with dispersed Ru sites, tunable pores, and high stability. Using air as the oxidant, Ru-COF-Pcbb achieves 95% cyclohexene conversion and 96% selectivity for α,β-unsaturated ketones under relatively mild conditions. Moreover, it maintains structural stability after multiple catalytic cycles and shows good activity towards various olefins. In situ characterizations and density functional theory (DFT) calculations indicate that the synergistic activation of cyclohexene and adamantane (AT) promotes the activation of molecular oxygen to generate peroxy radicals. Simultaneously, high-valent Ru oxo species (Ru = O) further regulate the transfer of oxygen species, thereby achieving selective oxidation. The synergistic catalytic oxidation system constructed in this study provides a technical reference for the selective activation of C-H bonds to prepare ketone compounds.
科研通智能强力驱动
Strongly Powered by AbleSci AI