Mechanochemical Activation Switches the Chemoselectivity of the Suzuki–Miyaura Cross‐Coupling to Give Azobenzenes
Abstract
Abstract The palladium‐catalyzed Suzuki–Miyaura cross‐coupling reaction is considered as a crucial technique in the field of organic chemistry. Traditionally, the reaction between aryl diazonium salts and arylboronic acids in solution predominantly facilitates carbon–carbon (C─C) bond formation. However, our research reveals that mechanochemical techniques can shift the chemical selectivity in Suzuki–Miyaura cross‐coupling, resulting in the generation of non‐symmetric azobenzene compounds under neat milling conditions. Azobenzenes have progressed from being merely textile dyes to multifunctional molecular systems critical for advanced technologies; however, the synthetic challenges associated with non‐symmetric azo derivatives remain significant. Here, we present an innovative methodology that eliminates the use of conventional solvents while demonstrating exceptional substrate compatibility and short reaction time under ambient conditions. Detailed mechanistic investigations suggest that mechanochemical conditions alter the reaction pathway by selectively promoting carbon–nitrogen (C─N) coupling.
Article Details
Authors (9)
Qingqing Wang
Institute of Immunology, Zhejiang University School of Medicine
Na Li
Xiaochun He
Xiaohong Wang
Department of Ophthalmology, Tianjin Medical University General Hospital, International Joint Laboratory of Ocular Diseases (Ministry of Education), State Key Laboratory of Experimental Hematology, Tianjin Key Laboratory of Ocular Trauma, Laboratory of Molecular Ophthalmology, Tianjin Medical University
Fei Zhou
Ruiling Qu
Xuemei Zhang
College of Materials Science and Engineering
Gui‐Juan Cheng
Warshel Institute for Computational Biology School of Medicine The Chinese University of Hong Kong Shenzhen Guangdong P. R. China
Zhong Lian