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Synthesis of heterocyclic [3.3.3]propellanes via a sequential four-component reaction

机译:通过顺序四组分反应合成杂环[3.3.3]丙炔

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摘要

A highly chemoselective heteroannulation protocol for the synthesis of unreported polysubstituted heterocyclic [3.3.3]propellanes has been developed by sequential four-component reaction of ninhydrin, malononitrile, primary amines, and dialkyl acetylenedicarboxylates under mild conditions in water. To the best of our knowledge, there are no previous reports for the synthesis of these classes of heterocyclic [3.3.3]propellanes. The merit of this sequential Knoevenagel condensation/enamine formation/Michael addition/cyclization sequence is highlighted by its high atom-economy, excellent yields, the use of water as reaction media, and the efficiency of production without the use of any activator or metal promoters. This synthesis serves as a nice addition to group-assistant-purification (GAP) chemistry in which purification via chromatography and recrystallization can be avoided, and the pure products were obtained simply by washing the crude products with 95% ethanol.
机译:通过茚三酮,丙二腈,伯胺和乙酰二羧酸二烷基酯的连续四组分反应,已在温和的条件下在水中开发出了高度化学选择性的杂环化合物,用于合成未报告的多取代杂环[3.3.3]丙炔。据我们所知,目前尚无关于合成此类杂环[3.3.3]螺旋桨的报道。连续的Knoevenagel缩合/烯胺形成/ Michael加成/环化顺序的优点在于其高原子经济性,优异的收率,使用水作为反应介质以及不使用任何活化剂或金属促进剂的生产效率。该合成是对基团辅助纯化(GAP)化学的一个很好的补充,其中可以避免通过色谱和重结晶进行纯化,并且只需用95%乙醇洗涤粗产物即可获得纯产物。

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