School of Science and Institute of Scientific Research, Great Bay University, Dongguan, 523000, China.
Shenzhen Grubbs Institute and Department of Chemistry, Guangdong Provincial Key Laboratory of Catalysis, Southern University of Science and Technology, Shenzhen, 518055, China.
Angew Chem Int Ed Engl. 2023 Jan 9;62(2):e202214709. doi: 10.1002/anie.202214709. Epub 2022 Dec 2.
The copper-catalyzed enantioconvergent radical C(sp )-C(sp ) cross-coupling of tertiary α-bromo-β-lactams with organoboronate esters could provide the synthetically valuable α-quaternary β-lactams. The challenge arises mainly from the construction of sterically congested quaternary stereocenters between the tertiary alkyl radicals and chiral copper(II) species. Herein, we describe our success in achieving such transformations through the utilization of a copper/hemilabile N,N,N-ligand catalyst to forge the sterically congested chiral C(sp )-C(sp ) bond via a single-electron reduction/transmetalation/bond formation catalytic cycle. The synthetic potential of this approach is shown in the straightforward conversion of the corresponding products into many valuable building blocks. We hope that the developed catalytic cycle would open up new vistas for more enantioconvergent cross-coupling reactions.
铜催化的手性自由基 C(sp )-C(sp )交叉偶联反应,可将叔 α-溴代-β-内酰胺与有机硼酸酯进行反应,生成具有合成价值的 α-季碳 β-内酰胺。主要的挑战来自于在叔烷基自由基和手性铜(II)物种之间构建空间位阻较大的季立体中心。在此,我们通过使用铜/半配位 N,N,N-配体催化剂,通过单电子还原/转金属化/键形成催化循环,成功地实现了这种转化,从而构建了空间位阻较大的手性 C(sp )-C(sp )键。该方法的合成潜力在将相应产物直接转化为许多有价值的构建块中得到了体现。我们希望所开发的催化循环将为更多的对映选择性交叉偶联反应开辟新的途径。