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A study of influence of temperature and N, N-acyl protected keto ylides structure on their predominant transformations

机译:温度和N,N-酰基保护的酮内酯结构对其主要转化的影响研究

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The effect of temperature and keto ylides structure on preference of their intramolecular cyclization leading to N-containing heterocyclic compounds or linear products formation has been investigated at the B3LYP/6-31G(d,p) level of theory. It has been determined that the thermodynamic advantage of the cyclization reactions of ylides increases with temperature, while Gibbs free energies of linear products formation reactions depend insignificantly on temperature. The Wittig and the Corey–Chaykovsky reactions are least probable in the case of the sulfonium and ammonium ylides considered. However, for phosphonium ylides the Wittig reaction must be considerably preferable in comparison with other routes, while behavior of the arsonium ylides is predicted to be more complex. Research of S-ylides transformations shows that formation of methylthio-substituted heterocycles with five-, six- or seven- membered rings is possible from a thermodynamic standpoint, while conversion of the corresponding ylide to a four-membered heterocycle is disadvantageous. Presence of a methyl substituent and its position in the ylide carbon chain depends ambiguously on the behavior of sulfur keto ylides.
机译:在理论上以B3LYP / 6-31G(d,p)水平研究了温度和酮基化物结构对其分子内环化的偏好性的影响,这些分子内环化导致了含氮杂环化合物或线性产物的形成。已经确定,酰基化物环化反应的热力学优势随温度而增加,而线性产物形成反应的吉布斯自由能与温度无关紧要。对于考虑的yl和铵化铵,Wittig反应和Corey-Chaykovsky反应的可能性最小。然而,对于磷鎓叶立德而言,与其他路线相比,维蒂希反应必须是相当可取的,而预计砷鎓叶立德的行为将更为复杂。 S-基化物转化的研究表明,从热力学角度看,可以形成具有五,六或七元环的甲硫基取代的杂环,而将相应的内酯转化为四元杂环是不利的。甲基取代基的存在及其在叶立德碳链中的位置在很大程度上取决于硫酮基的行为。

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