首页> 外文期刊>Advanced synthesis & catalysis >Improved synthesis of pyrroles and indoles via lewis acid-catalyzed Mukaiyama-Michael-type addition/heterocyclization of enolsilyl derivatives on 1,2-diaza-1,3-butadienes. Role of the catalyst in the reaction mechanism
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Improved synthesis of pyrroles and indoles via lewis acid-catalyzed Mukaiyama-Michael-type addition/heterocyclization of enolsilyl derivatives on 1,2-diaza-1,3-butadienes. Role of the catalyst in the reaction mechanism

机译:通过路易斯酸催化的1,2-二氮杂-1,3-丁二烯上的烯醇甲硅烷基衍生物的Mukaiyama-Michael型加成/杂环化,改进了吡咯和吲哚的合成。催化剂在反应机理中的作用

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摘要

The Mukaiyama-Michael-type addition of various silyl ketene acetals or silyl enol ethers on some 1,2-diaza-1,3-butadienes proceeds at room temperature in the presence of catalytic amounts of Lewis acid affording by heterocyclization 1-aminopyrrol-2-ones and 1-aminopyrroles, respectively. 1-Aminoindoles have been also obtained by the same addition of 2-(trimethylsilyloxy)-1,3-cyclohexadiene on some 1,2-diaza-1,3-butadienes and subsequent aromatization. Mechanistic investigations indicate the coordination by Lewis acid of the enolsilyl derivative and its 1,4-addition on the azo-ene system of 1,2-diaza-1,3-butadienes. The migration of the silyl group from a hydrazonic to an amidic nitrogen, its acidic cleavage and the final internal heterocyclization give the final products. Based on NMR studies and ab initio calculations, a plausible explanation for the migration of the silyl protecting group is presented.
机译:在室温下,在催化量的路易斯酸的存在下,通过杂环化1-aminopyrrol-2,在某些1,2-二氮杂1,3,3-丁二烯上进行各种甲硅烷基乙烯酮缩醛或甲硅烷基烯醇醚的Mukaiyama-Michael型加成反应-一和1-氨基吡咯。通过在一些1,2-二氮杂-1,3-丁二烯上同样添加2-(三甲基甲硅烷氧基)-1,3-环己二烯并随后进行芳构化,也获得了1-氨基吲哚。机理研究表明,路易斯酸对烯醇甲硅烷基衍生物的配位及其在1,2-二氮杂-1,3-丁二烯的偶氮-烯体系上的1,4-加成。甲硅烷基从肼基向酰胺氮的迁移,其酸性裂解和最终内部杂环化产生最终产物。根据NMR研究和从头算计算,给出了甲硅烷基保护基团迁移的合理解释。

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