Twist‐Promoted Photoredox Catalysis in Metal‐Organic Framework for Defluorination Reactions
Abstract
Abstract The relatively short excited‐state lifetime is one main drawback of organic photosensitizers, resulting in their restricted catalytic capability and high catalyst loadings. We herein report the design of a twisted ligand N 9 ,N 9 ,N 10 ,N 10 ‐tetrakis[(1,1′‐biphenyl)‐4‐carboxylic acid]‐9,10‐anthracene diamine (H 4 TCPDA). Its twisted geometry significantly elongates the lifetime of charge‐transfer state as substantiated by detailed ultrafast transient absorption (TA) spectroscopic and electrochemical studies. Moreover, its rigid structure benefits the formation of highly crystalline Y‐TCPDA metal‐organic frameworks (MOFs) with excellent stability toward F − solutions. Therefore, Y‐TCPDA competently catalyzes chemoselective defluorinative modifications, a challenge remained in MOF catalysis, and olefin reductive cross‐coupling with high turnover numbers of up to 9000. Control experiments underscore the protection of organic photocatalytic centers by the MOF platform, while similar organic catalysts are found to be decomposed in a homogeneous catalytic system.
Article Details
Authors (8)
Zhiyi Yang
Chao Li
Peiqi Zhang
Jiaxin Lin
Department of Chemistry, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong SAR, China
Jiayue Tang
Cheng‐Yong Su
GBRCE For Functional Molecular Engineering Lehn Institute of Functional Materials IGCME School of Chemistry Sun Yat‐Sen University Guangzhou P. R. China
Teng‐Teng Chen
Department of Chemistry The Hong Kong University of Science and Technology Hong Kong China
Yangjian Quan