Issue 21, 2023

Iron-catalyzed divergent approach to naphthyridinones and quinolinones: leveraging Povarov and carbonyl-alkyne metathesis reactions of electron deficient alkynes

Abstract

We have successfully developed a novel synthetic route for the synthesis of naphthyridinones. This was achieved through a reaction between formyl-phenylpropiolamides and arylamines, utilizing an intramolecular Povarov reaction. Notably, this reaction exhibited remarkable tolerance towards a wide range of substituents, resulting in the formation of diverse products using simple reaction conditions. Additionally, we discovered that the same substrates can undergo intramolecular carbonyl-alkyne metathesis reactions in the absence of anilines. This versatile transformation enabled the synthesis of quinolinones and chromen-2-ones with high yields.

Graphical abstract: Iron-catalyzed divergent approach to naphthyridinones and quinolinones: leveraging Povarov and carbonyl-alkyne metathesis reactions of electron deficient alkynes

Supplementary files

Article information

Article type
Research Article
Submitted
14 Aug 2023
Accepted
23 Sep 2023
First published
26 Sep 2023

Org. Chem. Front., 2023,10, 5505-5511

Iron-catalyzed divergent approach to naphthyridinones and quinolinones: leveraging Povarov and carbonyl-alkyne metathesis reactions of electron deficient alkynes

J. Chen, J. Li, L. Xie, H. Fan, X. Sheng, Y. Du, G. Liu, H. Hu, Y. Jiang and M. Chen, Org. Chem. Front., 2023, 10, 5505 DOI: 10.1039/D3QO01302B

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