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Insights into the Competing Mechanisms and Origin of Enantioselectivity for N-Heterocyclic Carbene-Catalyzed Reaction of Aldehyde with Enamide

机译:N-杂环碳烯催化的乙酰胺与酰胺反应的竞争机理和对映选择性的起源

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摘要

Hydroacylation reactions and aza-benzoin reactions have attracted considerable attention from experimental chemists. Recently, Wang et al. reported an interesting reaction of N-heterocyclic carbene (NHC)-catalyzed addition of aldehyde to enamide, in which both hydroacylation and aza-benzoin reactions may be involved. Thus, understanding the competing relationship between them is of great interest. Now, density functional theory (DFT) investigation was performed to elucidate this issue. Our results reveal that enamide can tautomerize to its imine isomer with the assistance of HCO3. The addition of NHC to aldehydes formed Breslow intermediate, which can go through cross-coupling with enamide via hydroacylation reaction or its imine isomer via aza-benzoin reaction. The aza-benzoin reaction requires relatively lower free energy barrier than the hydroacylation reaction. The more polar characteristic of C=N group in the imine isomers, and the more advantageous stereoelectronic effect in the carbon-carbon bond forming transition states in aza-benzoin pathway were identified to determine that the imine isomer can react with the Breslow intermediate more easily. Furthermore, the origin of enantioselectivities for the reaction was explored and reasonably explained by structural analyses on key transition states. The work should provide valuable insights for rational design of switchable NHC-catalyzed hydroacylation and aza-benzoin reactions with high stereoselectivity.
机译:加氢酰化反应和氮杂-安息香反应引起了实验化学家的极大关注。最近,Wang等。报道了N-杂环卡宾(NHC)催化的醛与烯酰胺加成反应的有趣反应,其中可能涉及加氢酰化反应和氮杂-安息香反应。因此,了解它们之间的竞争关系非常重要。现在,进行密度泛函理论(DFT)研究以阐明此问题。我们的结果表明,在HCO3 -的协助下,烯酰胺可以互变异构成亚胺异构体。将NHC加到醛中可形成Breslow中间体,该中间体可通过加氢酰化反应与烯酰胺或通过氮杂-安息香反应与亚胺异构体交叉偶联。氮杂-安息香反应比氢酰化反应需要相对较低的自由能垒。确定亚胺异构体中C = N基团的极性更强,并且在氮杂安息香途径中形成碳-碳键过渡态的立体电子效应更有利,从而确定亚胺异构体可以更轻松地与Breslow中间体反应。此外,通过对关键过渡态的结构分析,探索并合理解释了该反应的对映选择性的起源。这项工作应为合理设计可转换的NHC催化的氢酰化反应和具有高立体选择性的氮杂-安息香反应提供有价值的见解。

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