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Temperature-dependent annuloselectivity and stereochemistry in the reactions of methanesulfonyl sulfene with imines

机译:甲磺酰基亚砜与亚胺反应的温度依赖性环选择性和立体化学

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摘要

The annuloselectivity in the reactions of methanesulfonyl sulfene and imines varies with temperature. At a relatively higher temperature of 20 ℃, the [2~s + 2~i] annulation of different N-alkyl imines occurs exclusively, giving four-membered trans-β-sultams in up to 69% yields. At a lower temperature of -78 ℃, the [2~s + 2~i + 2~i] annulation of N-methyl imines takes place specifically, delivering six-membered 1,2,4-thia-diazine 1,1-dioxides, 4-aza-8-sultams, in up to 80% yields, with diverse configurations at the C3, C5, and C6 stereocenters. The trans-stereochemistry involved in the [2~s + 2~i] annulations is attributed to the con-rotatory ring closure of the thermodynamically stable 2,3-thiazabutadiene-type zwitterionic intermediates, while the diverse stereochemical outcomes in the [2~s + 2~i + 2~i] annulations are caused by the iminium isomerization in the stepwise nucleophilic [4 + 2] annulation between the same zwitterionic intermediates and a second molecule of N-methyl imines.
机译:甲磺酰基亚砜与亚胺反应的年选择性随温度而变化。在相对较高的20℃温度下,仅发生不同N-烷基亚胺的[2〜s + 2〜i]环化反应,得到四元反式-β-杜马酰胺,产率高达69%。在-78℃的较低温度下,N-甲基亚胺的[2〜s + 2〜i + 2〜i]环化反应特别发生,从而生成六元1,2,4-噻二嗪1,1-二氮杂,4-氮杂-8-阿马酸,产率高达80%,并且在C3,C5和C6立体中心具有多种配置。 [2〜s + 2〜i]环空中涉及的反式立体化学归因于热力学稳定的2,3-噻唑丁二烯型两性离子中间体的同向旋转闭环,而[2〜 s + 2〜i + 2〜i]的环状结构是由两性离子中间体和第二个N-甲基亚胺分子之间的逐步亲核[4 + 2]环状结构中的亚胺基异构化引起的。

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  • 来源
    《Organic & biomolecular chemistry》 |2016年第30期|7258-7267|共10页
  • 作者单位

    State Key Laboratory of Chemical Resource Engineering, Department of Organic Chemistry, Faculty of Science, Beijing University of Chemical Technology, Beijing 100029, P. R. China;

    State Key Laboratory of Chemical Resource Engineering, Department of Organic Chemistry, Faculty of Science, Beijing University of Chemical Technology, Beijing 100029, P. R. China;

    State Key Laboratory of Chemical Resource Engineering, Department of Organic Chemistry, Faculty of Science, Beijing University of Chemical Technology, Beijing 100029, P. R. China;

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