Zeng Miao, Jiang Hongwu, Li Kaiwen, Chen Zhuqi, Yin Guochuan
School of Chemistry and Chemical Engineering, Key Laboratory of Material Chemistry for Energy Conversion and Storage (Huazhong University of Science and Technology), Ministry of Education, Hubei Key Laboratory of Material Chemistry and Service Failure, Huazhong University of Science and Technology, Wuhan 430074, P. R. China.
J Org Chem. 2022 Apr 1;87(7):4524-4537. doi: 10.1021/acs.joc.1c02783. Epub 2022 Mar 19.
The present work introduces Pd(II)/LA-catalyzed (LA: Lewis acid) olefination of arylacetamides with dioxygen as the oxidant source. This protocol tolerates with different functional groups on the substrates, and the catalytic efficiency is highly Lewis acidity-dependent on added LA, that is, a stronger LA provided a better promotional effect. The H NMR studies of the semireaction between the arylacetamide and the Pd(II)/Sc(III) catalyst in HOAc- disclosed the formation of a palladacycle intermediate, and the C-H activation step was reversible, which led to the formation of the deuterated arylacetamide substrate and the palladacycle intermediate. Further semireaction between the palladacycle intermediate and the olefin disclosed that it was a clean and much faster reaction than the C-H activation step, thus revealing multiple mechanistic information for Pd(II)-catalyzed C-H activation.
本工作介绍了以氧气为氧化剂来源,钯(II)/路易斯酸(LA)催化(LA:路易斯酸)芳基乙酰胺的烯基化反应。该方案对底物上的不同官能团具有耐受性,并且催化效率高度依赖于所添加LA的路易斯酸度,即更强的LA具有更好的促进效果。芳基乙酰胺与钯(II)/钪(III)催化剂在醋酸中的半反应的氢核磁共振研究揭示了钯环中间体的形成,并且碳氢键活化步骤是可逆的,这导致了氘代芳基乙酰胺底物和钯环中间体的形成。钯环中间体与烯烃之间的进一步半反应表明,它是一个比碳氢键活化步骤更清洁且更快的反应,从而揭示了钯(II)催化的碳氢键活化的多种机理信息。