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首页> 外文期刊>Journal of Organometallic Chemistry >Revisiting the mechanism of acetylenic amine N-Oxide rearrangement catalysed by Gold(I) complexes from a DFT perspective
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Revisiting the mechanism of acetylenic amine N-Oxide rearrangement catalysed by Gold(I) complexes from a DFT perspective

机译:重新探测来自DFT观点的金(I)复合物催化的乙酰胺N-氧化物重排的机制

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In this study, we used density functional theory (DFT) to reinvestigate the mechanism proposed by Houk and Zhang et al. (J. Am. Chem. Soc. 2012, 134, 1078) for piperidinone formation through rearrangement of an acetylenic amine N-oxide catalysed by phosphine gold(I) complexes. For this rearrangement, the C-C coupling was proposed to be the rate-determining step with activation energy as high as 35.8 kcal/mol. Such a barrier seems inconsistent with the fact that the actual reaction proceeds under very mild conditions (0 degrees C, 1 h, in CH2Cl2). In the original report, it was proposed that the C-C coupling takes place via a mechanism which we called "front-side addition". Interestingly, we found that the C-C coupling step becomes energetically more favourable if it occurs via another mechanism called "back-side addition". We explored the effect of different phosphine ligands on all conceivable steps of the catalytic reaction and found that while the other steps are not highly sensitive to the phosphine identity, the C-C coupling one shows a considerable degree of dependency; the more electron-donating the phosphine ligand, the lower the rate-limiting step barrier. (c) 2019 Elsevier B.V. All rights reserved.
机译:在这项研究中,我们使用了密度泛函理论(DFT)来加强Houk和Zhang等人提出的机制。 (J.AM。Chem。Soc。Soc。2012,134,1078)通过重新排列磷金(I)配合物催化的乙酰胺N-氧化物的哌啶酮形成。对于这种重排,提出了C-C耦合,是具有高达35.8 kcal / mol的活化能量的速率确定步骤。这种屏障似乎不一致,即实际反应在非常温和的条件下进行(0℃,1小时,CH 2 Cl 2)。在原始报告中,建议通过我们称为“前侧添加”的机制进行C-C耦合。有趣的是,如果通过另一个称为“后侧添加”的机制发生,C-C耦合步骤会变得更有利。我们探讨了不同膦配体对催化反应的所有可想象步骤的影响,发现其他步骤对膦鉴定不高度敏感,而C-C耦合则表示相当程度的依赖性;磷酸盐配体越多,速率限制步骤屏障越低。 (c)2019 Elsevier B.v.保留所有权利。

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