Lin Jiaxin, Ouyang Jing, Liu Tianyu, Li Fengxing, Sung Herman Ho-Yung, Williams Ian, Quan Yangjian
Department of Chemistry and the Hong Kong Branch of Chinese National Engineering Research Centre for Tissue Restoration & Reconstruction, The Hong Kong University of Science and Technology (HKUST), Kowloon, Hong Kong SAR, China.
Nat Commun. 2023 Nov 27;14(1):7757. doi: 10.1038/s41467-023-43577-5.
Metal-organic framework (MOF) is a class of porous materials providing an excellent platform for engineering heterogeneous catalysis. We herein report the design of MOF Zr-PZDB consisting of Zr-clusters and PZDB (PZDB = 4,4'-(phenazine-5,10-diyl)dibenzoate) linkers, which served as the heterogeneous donor catalyst for enhanced electron donor-acceptor (EDA) photoactivation. The high local concentration of dihydrophenazine active centers in Zr-PZDB can promote the EDA interaction, therefore resulting in superior catalytic performance over homogeneous counterparts. The crowded environment of Zr-PZDB can protect the dihydrophenazine active center from being attacked by radical species. Zr-PZDB efficiently catalyzes the Minisci-type reaction of N-heterocycles with a series of C-H coupling partners, including ethers, alcohols, non-activated alkanes, amides, and aldehydes. Zr-PZDB also enables the coupling reaction of aryl sulfonium salts with heterocycles. The catalytic activity of Zr-PZDB extends to late-stage functionalization of bioactive and drug molecules, including Nikethamide, Admiral, and Myristyl Nicotinate. Systematical spectroscopy study and analysis support the EDA interaction between Zr-PZDB and pyridinium salt or aryl sulfonium salt, respectively. Photoactivation of the MOF-based EDA adduct triggers an intra-complex single electron transfer from donor to acceptor, giving open-shell radical species for cross-coupling reactions. This research represents the first example of MOF-enabled heterogeneous EDA photoactivation.
金属有机框架(MOF)是一类多孔材料,为工程多相催化提供了一个出色的平台。我们在此报告了由Zr簇和PZDB(PZDB = 4,4'-(吩嗪-5,10-二基)二苯甲酸酯)连接体组成的MOF Zr-PZDB的设计,其作为多相供体催化剂用于增强电子供体-受体(EDA)光活化。Zr-PZDB中二氢吩嗪活性中心的高局部浓度可促进EDA相互作用,因此其催化性能优于均相催化剂。Zr-PZDB的拥挤环境可保护二氢吩嗪活性中心免受自由基物种的攻击。Zr-PZDB能有效地催化N-杂环与一系列C-H偶联伙伴(包括醚、醇、非活化烷烃、酰胺和醛)的Minisci型反应。Zr-PZDB还能使芳基锍盐与杂环发生偶联反应。Zr-PZDB的催化活性扩展到生物活性和药物分子(包括尼可刹米、Admiral和肉豆蔻酸烟酯)的后期功能化。系统的光谱研究和分析分别支持了Zr-PZDB与吡啶盐或芳基锍盐之间的EDA相互作用。基于MOF的EDA加合物的光活化引发了从供体到受体的复合体内单电子转移,产生用于交叉偶联反应的开壳自由基物种。这项研究代表了MOF介导的多相EDA光活化的首个实例。