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One-Pot Reductive 1,3-Dipolar Cycloaddition of Secondary Amides: A Two-Step Transformation of Primary Amides

机译:一锅还原1,3-偶极环仲酰胺的加成反应:伯酰胺的两步转化

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摘要

The one-pot reductive 1,3-dipolar cycloaddition of secondary aromatic N-(trimethylsilylmethyl)amides with reactive dipolarophiles is reported. The method relies on the in situ generation of nonstabilized NH azomethine ylide dipoles via amide activation with triflic anhydride, partial reduction with 1,1,3,3-tetramethyldisiloxane (TMDS), and desilylation with cesium fluoride (CsF). Running under mild conditions, the reaction tolerated several sensitive functional groups and provided cycloadducts in 71-93% yields. The use of less reactive dipolarophile methyl acrylate led to the cycloadduct in only 40% yield. A (Z) geometric intermediate of NH-azomethine 1,3-dipole was postulated to account for the observed higher yields and higher cis diastereoselectivity for the substrates bearing an electron-withdrawing group. This model features an unconventional cyclic transition state via carbanion-aryl ring interaction. Because the starting secondary amides can be prepared from common primary amides, the current method also constitutes a two-step transformation of primary amides.
机译:据报道,第二芳族N-(三甲基甲硅烷基甲基)酰胺与反应性双极性亲油剂一锅还原1,3-偶极环加成反应。该方法依赖于通过三氟甲磺酸酰胺活化,用1,1,3,3-四甲基二硅氧烷(TMDS)进行部分还原以及用氟化铯(CsF)进行甲硅烷基化来原位生成不稳定的NH甲亚胺基内鎓盐偶极。该反应在温和条件下进行,可耐受多个敏感的官能团,并以71-93%的收率提供环加合物。使用反应性较低的丙烯酸双极性亲和剂导致环加合物的收率仅为40%。假定NH-偶氮甲碱1,3-偶极的(Z)几何中间体是考虑到带有吸电子基团的底物观察到的更高的产率和更高的顺式非对映选择性。该模型具有通过碳负离子-芳基环相互作用的非常规循环过渡态。因为起始仲酰胺可以由普通的伯酰胺制备,所以当前的方法也构成了伯酰胺的两步转化。

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