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Copper-catalyzed condensation of imines and α-diazo-β-dicarbonyl compounds: modular and regiocontrolled synthesis of multisubstituted pyrroles

机译:铜催化的亚胺和α-重氮-β-二羰基化合物的缩合:模块化和区域控制的多取代吡咯的合成

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In the presence of a copper(II) catalyst, enolizable imines bearing various N-substituents and α-diazo-β-ketoesters undergo denitrogenative and dehydrative condensation to afford highly substituted pyrroles in moderate to good yields with exclusive regioselectivity. The reaction likely involves nucleophilic addition of the imine nitrogen to a copper carbenoid, tautomerization of the resulting azomethine ylide to an α-enaminoketone, and a subsequent enamine–ketone cyclocondensation. With Yb(OTf)3 as a unique cocatalyst, α-diazo-β-diketones also participate in the same condensation reaction. The present reaction is applicable to acyclic, exocyclic, and endocyclic imines with tolerance of a broad range of functional groups and heterocyclic moieties, thus opening a new convenient route for the synthesis of the lamellarin family of natural products.
机译:在铜( II )催化剂的存在下,带有各种 N 取代基和α-重氮-β-酮酸酯的可烯丙基亚胺经过脱氮和脱水缩合反应得到高度取代的吡咯在中等到良好的产量下,具有独特的区域选择性。该反应可能涉及将亚胺氮亲核加成至铜类胡萝卜素,将所得的甲亚胺叶立德互变异构成α-烯氨基酮,以及随后的烯胺-酮环缩合。以Yb(OTf) 3 作为独特的助催化剂,α-重氮-β-二酮也参与相同的缩合反应。本反应适用于具有宽泛的官能团和杂环部分耐受性的无环,环外和环内亚胺,从而为合成天然产物层状蛋白家族开辟了一条新的便利途径。

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