| Literature DB >> 34622088 |
Ting-Feng Wu1,2, Yue-Jiao Zhang1,2, Yue Fu3,2, Fang-Jie Liu1, Jian-Tao Tang1, Peng Liu3, F Dean Toste4,5, Baihua Ye1.
Abstract
Transition metal-catalyzed cross-electrophile coupling (XEC) is a powerful tool for forging C(sp2)-C(sp2) bonds in biaryl molecules from abundant aromatic halides. While syntheses of unsymmetrical biaryl compounds through multimetallic XEC is of high synthetic value, selective XEC of two heteroaromatic halides remains elusive and challenging. Herein we report a homogeneous XEC method which relies on a zirconaaziridine complex as a shuttle for dual palladium catalyzed processes. The zirconaaziridine-mediated palladium (ZAPd) catalyzed reaction shows excellent compatibility with various functional groups and diverse heteroaromatic scaffolds. In accord with density functional theory (DFT) calculations, a redox-transmetallation between the oxidative addition product and the zirconaaziridine is proposed as the crucial elementary step. Thus, cross-coupling selectivity using a single transition metal catalyst is controlled by the relative rate of oxidative addition of Pd(0) into the aromatic halide. Overall, the concept of a combined reducing and transmetallating agent offers opportunities for development of transition-metal reductive coupling catalysis.Entities:
Year: 2021 PMID: 34622088 PMCID: PMC8492010 DOI: 10.1016/j.chempr.2021.06.007
Source DB: PubMed Journal: Chem Impact factor: 25.832