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Merging Cu-catalysed C-H functionalisation and intramolecular annulations: computational and experimental studies on an expedient construction of complex fused heterocycles

机译:合并Cu催化的C-H官能化和分子内分子:有利地建设复杂融合杂环的计算和实验研究

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摘要

Intramolecular annulation reactions provide a powerful opportunity to access complex heterocyclic compounds with higher complexity than intermolecular conversions. This report details how, previously unknown fused dihydrobenzofuran-isoquinolone compounds, exhibiting an unusually strained shared aromatic unit, can be readily obtained from simply prepared benzamide derivatives bearing a tethered alkyne moiety, using copper C-H bond functionalisation catalysis. The mechanism has been proposed based on detailed DFT and topological analysis studies, and shows that the two key heterocycles are formed during distinct mechanistic steps; the dihydrobenzofuran arises from a migratory insertion and the isoquinolone from the following reductive elimination, resulting in an efficient Double Annulation Reaction (DAR). Actually, the results present an unprecedented migratory insertion of alkynes with benzamides when using copper as catalyst with the 8-aminoquinoline directing group and also study why the intermolecular variant is not operative.
机译:分子内的环状反应提供了获得比分子间转换更高复杂性的复杂杂环化合物的有力机会。本报告详细说明了如何使用铜C-H键官能化催化催化铜C-H键部分的简单制备的苯胺衍生物,可以容易地获得含有型炔烃部分的简单制备的苯胺衍生物,从而利用含有铜C-H键官能化催化来催化的方式。基于详细的DFT和拓扑分析研究提出了该机制,并表明在不同的机制步骤中形成了两个关键的杂环;二氢苯并呋喃由来自以下还原消除的迁移插入和异喹啉,导致有效的双包围反应(DAR)。实际上,当使用铜作为催化剂与8氨基喹啉指导组使用铜时,结果表现了炔烃的前所未有的迁移插入,并且还研究了分子间变体不可手术的原因。

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