Omer Humair M, Liu Peng
Department of Chemistry, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, United States.
Department of Chemical and Petroleum Engineering, University of Pittsburgh, Pittsburgh, Pennsylvania 15261, United States.
ACS Omega. 2019 Mar 13;4(3):5209-5220. doi: 10.1021/acsomega.9b00030. eCollection 2019 Mar 31.
The mechanism of Ni-catalyzed C(sp)-H oxidative cycloaddition of aromatic amides with internal alkynes containing 2-pyridinylmethylamine directing group was investigated using density functional theory (DFT) calculations. The C-H cleavage step proceeds via σ-complex-assisted metathesis (σ-CAM) with an alkenyl-Ni(II) complex. This is in contrast to the more common carboxylate/carbonate-assisted concerted metalation-deprotonation mechanism in related Ni-catalyzed C-H bond functionalization reactions with ,-bidentate directing groups. In this reaction, the alkyne not only serves as the coupling partner, but also facilitates the σ-CAM C-H metalation both kinetically and thermodynamically. The subsequent functionalization of the five-membered nickelacycle proceeds via alkyne insertion into the Ni-C bond to form a seven-membered nickelacycle. This process proceeds with high levels of regioselectivity to form a C-C bond with sterically more encumbered alkyne terminus. This unusual regioselectivity is due to steric repulsions with the directing group that is coplanar with the alkyne in the migratory insertion transition state. The C-N bond reductive elimination to form the isoquinolone cycloadduct is promoted by PPh complexation to the Ni center and the use of flexible 2-pyridinylmethylamine directing group. The origin of the cis-trans isomerism of alkene byproduct was also explained by computations.
利用密度泛函理论(DFT)计算研究了镍催化含2-吡啶基甲胺导向基团的芳香酰胺与内炔烃的C(sp)-H氧化环加成反应机理。C-H键裂解步骤通过与烯基-Ni(II)配合物的σ-络合物辅助复分解(σ-CAM)进行。这与在相关的镍催化的带有双齿导向基团的C-H键官能化反应中更常见的羧酸盐/碳酸盐辅助协同金属化-去质子化机理形成对比。在该反应中,炔烃不仅作为偶联伙伴,而且在动力学和热力学上都促进了σ-CAM C-H金属化。五元镍杂环的后续官能化通过炔烃插入Ni-C键形成七元镍杂环进行。该过程以高水平的区域选择性进行,与空间位阻更大的炔烃末端形成C-C键。这种不寻常的区域选择性是由于在迁移插入过渡态中与炔烃共面的导向基团之间的空间排斥作用。通过PPh与Ni中心的络合以及使用柔性的2-吡啶基甲胺导向基团促进了形成异喹诺酮环加成物的C-N键还原消除反应。计算还解释了烯烃副产物顺反异构的起源。