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硫叶立德促进的氮杂环丙烷化反应中一般反应历程和非对映选择性的计算研究。

Computational investigations on the general reaction profile and diastereoselectivity in sulfur ylide promoted aziridination.

作者信息

Janardanan Deepa, Sunoj Raghavan B

机构信息

Department of Chemistry, Indian Institute of Technology Bombay, Powai, Mumbai 400076, India.

出版信息

Chemistry. 2007;13(17):4805-15. doi: 10.1002/chem.200700303.

Abstract

Mechanism and diastereoselectivity of sulfur ylide promoted aziridination reactions were studied by density functional theory with inclusion of solvent effects through the continuum solvation model. The general reaction pathway was modeled for the addition of substituted sulfur ylides (Me(2)S(+)CH(-)R) to an aldimine ((E)-methyl ethylidenecarbamate, MeHC=NCO(2)Me). The nature of the substituents on the ylidic carbon atom substantially affects the reaction profile. The stabilized (R=COMe) and semistabilized (R=Ph) ylides follow a cisoid addition mode leading to trans aziridines via anti betaine intermediates. The simplest model ylide (unstabilized, R=H) underwent cisoid addition in a similar fashion. In the case of stabilized ylides product diastereoselectivity is controlled by the barriers of the elimination step leading to the 2,3-trans aziridine, whereas it is decided in the addition step in the case of semistabilized ylides. The importance of steric and electronic factors in diastereoselective addition (2 and 5) and elimination (5) transition states was established. Comparison of results obtained with the gas-phase optimized geometries and with the fully optimized solvent-phase geometries reveals that the inclusion of solvent effects does not bring about any dramatic changes in the reaction profiles for all three kinds of ylides. In particular, diastereoselectivity for both kinds of ylides was found to be nearly the same in both these approaches.

摘要

通过密度泛函理论并结合连续溶剂化模型考虑溶剂效应,研究了硫叶立德促进的氮杂环丙烷化反应的机理和非对映选择性。建立了取代硫叶立德(Me(2)S(+)CH(-)R)与醛亚胺((E)-甲基亚乙基氨基甲酸酯,MeHC=NCO(2)Me)加成反应的一般反应途径。叶立德碳原子上取代基的性质对反应历程有显著影响。稳定的(R = COMe)和半稳定的(R = Ph)叶立德遵循顺式加成模式,通过反式甜菜碱中间体生成反式氮杂环丙烷。最简单的模型叶立德(不稳定,R = H)以类似方式进行顺式加成。对于稳定的叶立德,产物非对映选择性由生成2,3-反式氮杂环丙烷的消除步骤的势垒控制,而对于半稳定的叶立德,其在加成步骤中决定。确定了空间和电子因素在非对映选择性加成(2和5)和消除(5)过渡态中的重要性。将气相优化几何结构和完全优化的溶剂相几何结构得到的结果进行比较,发现对于所有三种叶立德,考虑溶剂效应并不会使反应历程发生任何显著变化。特别是,在这两种方法中发现两种叶立德的非对映选择性几乎相同。

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