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通过超强碱促进的C-N、C-O和C-C键形成,由邻炔基-N-芳基醛合成环戊并喹啉酮和环戊并吡啶酮。

Synthesis of cyclopentaquinolinone and cyclopentapyridinone from ortho-alkynyl-N-arylaldehyde via superbase-promoted C-N, C-O and C-C bond formation.

作者信息

Saini Kapil Mohan, Saunthwal Rakesh K, Verma Akhilesh K

机构信息

Department of Chemistry, University of Delhi, Delhi-110007, India.

出版信息

Org Biomol Chem. 2020 Aug 7;18(29):5594-5601. doi: 10.1039/d0ob01281e. Epub 2020 Jul 9.

DOI:10.1039/d0ob01281e
PMID:32644087
Abstract

An environmentally benign, transition metal-free, superbase-mediated intramolecular annulation of o-alkynylaldehydes with primary amines forms highly functionalized amino-substituted cyclopentaquinolinones and cyclopentapyridinones via C-N, C-C, and C[double bond, length as m-dash]O bond formation. Contrary to the traditional approaches of ring closures, a different mode of annulation is disclosed. The protocol involves the in situ generations of imine intermediate followed by potassium hydroxide-promoted intramolecular cyclization and subsequent dimethyl sulfoxide induced dehydrogenation leads to the formation of N-heterocycles. X-ray crystallographic studies support the assigned structures of the amino-fused N-heterocycles.

摘要

一种环境友好、无过渡金属、由超强碱介导的邻炔基醛与伯胺的分子内环化反应,通过形成C-N、C-C和C=O键,生成了高度官能化的氨基取代环戊并喹啉酮和环戊并吡啶酮。与传统的闭环方法不同,该反应揭示了一种不同的环化模式。该方法包括原位生成亚胺中间体,随后氢氧化钾促进分子内环化,以及随后二甲亚砜诱导的脱氢反应,从而形成N-杂环。X射线晶体学研究支持了氨基稠合N-杂环的指定结构。

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