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Synthesis of Nitrogen-Containing Heterocycles and Cyclopentenone Derivatives via Phosphine-Catalyzed Michael Addition/Intramolecular Wittig Reaction

机译:通过膦催化的Michael加法/分子内Wittig反应合成含氮杂环和环戊烯酮衍生物

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摘要

The phosphine-catalyzed Michael addition/intramolecular Wittig reaction between dialkyl acetylenedicarboxylate and amino-carbaldehyde or amino ester derivatives has been developped. This reaction can be rendered catalytic in phosphine by the in situ chemoselective reduction of the phosphine oxide with silane. This methodology enables rapid access to a variety of nitrogen-containing heterocycles, which are present in numerous natural products and/or bioactive compounds. Either classical heating or microwave conditions give access to the desired products in good yields (15 examples, 60-99% yields). This catalytic methodology is further applicable to the synthesis of enantioenriched 1H-pyrrole derivatives, with the use of chiral phosphines. Finally, we successfully extended the reaction to the synthesis of a polysubstituted cyclopentenone, starting from butane-2,3-dione as substrate.
机译:已经发育了二烷基乙酰二羧酸甲酯和氨基 - 氨基甲醛或氨基酯衍生物之间的膦催化的迈克尔添加/分子内威特反应。 通过用硅烷的磷酸氧化膦的原位化学选择性还原,可以将该反应催化在膦酸氨中。 该方法能够快速进入各种含氮杂环,其存在于许多天然产物和/或生物活性化合物中。 经典加热或微波条件可获得良好产量的所需产物(15例,60-99%收率)。 该催化方法进一步适用于对苯胺中的1H-吡咯衍生物的合成,使用手性膦。 最后,我们成功地将反应延伸到多助化环戊烯酮的合成,从丁烷-2,3-二酮开始作为底物。

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