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首页> 外文期刊>The Journal of Organic Chemistry >Rapid access to amino-substituted quinoline, (di)benzofuran, and carbazole heterocycles through an aminobenzannulation reaction
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Rapid access to amino-substituted quinoline, (di)benzofuran, and carbazole heterocycles through an aminobenzannulation reaction

机译:通过氨基苯甲酸酯化反应快速获得氨基取代的喹啉,(二)苯并呋喃和咔唑杂环

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摘要

The use of a powerful aminobenzannulation reaction has been applied for the synthesis of amino-substituted quinolines, dibenzofurans, and carbazoles. The precursors are heterocycles bearing a methyl ketone group ortho to an internal alkyne. They are commercially available or can be obtained in three to four classical and efficient reactions: Vilsmeier-Haack, Sonogashira (diversity point), Grignard, and Ley's oxidation. Upon aminobenzannulation reaction-classical conditions being pyrrolidine neat or in a solvent and 4 A MS-an interesting range of disubstituted quinolines, dibenzofurans, and carbazoles are obtained along with enamine formation in some cases. The reaction is useful since meta-substituted heterocycles are produced and also differs from classical heterocyclic methods which go through closure at the heteroatom-containing ring instead of benzene ring formation.
机译:强大的氨基苯甲酸酯化反应已用于合成氨基取代的喹啉,二苯并呋喃和咔唑。前体是带有与内部炔烃邻位的甲基酮基的杂环。它们是可商购的,或者可以通过三到四个经典有效的反应获得:Vilsmeier-Haack,Sonogashira(多样性点),Grignard和Ley氧化。在氨基苯甲酸酯化反应中,经典条件是纯净的吡咯烷或在溶剂中和4 A MS条件下,在某些情况下,随着烯胺的形成,可获得有趣范围的二取代喹啉,二苯并呋喃和咔唑。该反应是有用的,因为产生了间位取代的杂环,并且还不同于经典的杂环方法,经典的杂环方法是在含杂原子的环上进行封闭而不是形成苯环。

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