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首页> 外文期刊>Tetrahedron letters: The International Journal for the Rapid Publication of Preliminary Communications in Organic Chemistry >Synthesis of diverse nitrogen fused polycyclic dihydroisoquinoline (DHIQ) derivatives via GBB-based cyclic iminium induced double-annulation cascade
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Synthesis of diverse nitrogen fused polycyclic dihydroisoquinoline (DHIQ) derivatives via GBB-based cyclic iminium induced double-annulation cascade

机译:基于GBB的环状氨基氨基诱导的双环级级联的不同氮熔融多环二羟基喹啉(DHIQ)衍生物的合成

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摘要

A highly efficient and distinct Bronsted acid-mediated unprecedented cyclic iminium induced double annulation cascade (DAC) protocol for the synthesis of novel dihydroindazolo[30,20:2,3]imidazo[5,1-a]isoquinolinamines has been achieved through the three-component Groebke-Blackburn-Bienayme reaction. The transformation is based on sequential cascade processes involving imine formation followed by an intramolecular nucleophilic substitution to generate a highly reactive cyclic iminium species, which would undergo a rapid [4 + 1] formal cycloaddition steps in one-pot fashion. This strategy provides novel skeletally diverse complex nitrogen fused polycyclic DHIQ derivatives by employing readily available substrates and a simple procedure, which would render this method potentially useful in organic synthesis. (C) 2020 Elsevier Ltd. All rights reserved.
机译:用于合成新型二氢唑唑诺的高效且明显的铜玻璃介导的前所未有的循环氨基氨基诱导的双环状级联(DAC)方案[30,20:2,3]咪唑[5,1-A]异喹胺已通过三种 - Component Groebke-Blackburn-Bienayme反应。 该转化基于涉及亚胺形成的顺序级联方法,然后是分子内亲核代替,以产生高反应性的环状亚胺物质,其将以单罐方式进行快速[4 + 1]正式环加成步骤。 该策略通过采用易于获得的底物和简单的程序提供新型骨架不同复合氮熔融多环DHIQ衍生物,其将使该方法可能在有机合成中有用。 (c)2020 elestvier有限公司保留所有权利。

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