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C—C bond formation in the intramolecular Diels-Alder reaction of triene amides

机译:三烯酰胺的分子内Diels-Alder反应中的CC键形成

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摘要

The mechanism nature of the intramolecular Diels–Alder reaction has been performed; and thus, the changes of C—C bond forming/breaking along IRC are characterized in this study. Conceptual DFT analyses of the most favorable adduct fused/exo shows that the flux electronic will take place from diene to dienophile moiety. Moreover, ELF topological analysis based on the electron density predicts that C—C bond is formed by the coupling of two pseudoradical centers generated at the most significant atoms of the molecules. However, C2 vs C3, also C1 and C4 interaction comes mainly from the global electron density transfer which takes place along the reaction. Two- stage one-step is the proposed mechanism of this reaction, the first stage aims for the formation of C2—C3 σ bond while the second stage aims for C1—C4 σ bond formation. Interestingly, the observed asynchronicity of this IMDA reaction due principally to the asymmetric reorganization of electron density at the most attractive centers.
机译:分子内狄尔斯-阿尔德反应的机理已经完成;因此,该研究表征了IRC上CC键形成/断裂的变化。最有利的加合物熔融/外切的概念DFT分析表明,助焊剂电子将发生在二烯到亲二烯体部分。此外,基于电子密度的ELF拓扑分析预测,CC键是通过在分子的最高原子上产生的两个假自由基中心的偶联而形成的。然而,C2 vs C3,以及C1和C4的相互作用主要来自反应过程中发生的整体电子密度转移。该反应的拟议机理为两步法,第一步旨在形成C2-C3σ键,而第二步旨在形成C1-C4σ键。有趣的是,观察到的此IMDA反应的异步性主要归因于最吸引人的中心电子密度的不对称重组。

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