2-Azidobenzaldehyde-Based [4+2] Annulation for the Synthesis of Quinoline Derivatives

Quinoline is a privileged heterocyclic ring which can be found in many drug molecules and bioactive compounds. The development of synthetic methods for making quinoline derivatives continuously attracts the interest of organic and medicinal chemists. This paper highlights 2-azidobenzaldehyde-based [...

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Main Authors: Xiaofeng Zhang, Miao Liu, Weiqi Qiu, Wei Zhang
Format: Article
Language:English
Published: MDPI AG 2024-03-01
Series:Molecules
Subjects:
Online Access:https://www.mdpi.com/1420-3049/29/6/1241
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author Xiaofeng Zhang
Miao Liu
Weiqi Qiu
Wei Zhang
author_facet Xiaofeng Zhang
Miao Liu
Weiqi Qiu
Wei Zhang
author_sort Xiaofeng Zhang
collection DOAJ
description Quinoline is a privileged heterocyclic ring which can be found in many drug molecules and bioactive compounds. The development of synthetic methods for making quinoline derivatives continuously attracts the interest of organic and medicinal chemists. This paper highlights 2-azidobenzaldehyde-based [4+2] annulation for the synthesis of quinoline derivatives including fused and spiro-quinolines, quinoline-4-ols, 4-aminoquinolines, and related compounds.
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spelling doaj.art-3044aaa650db413bafe65cf782de08502024-03-27T13:56:49ZengMDPI AGMolecules1420-30492024-03-01296124110.3390/molecules290612412-Azidobenzaldehyde-Based [4+2] Annulation for the Synthesis of Quinoline DerivativesXiaofeng Zhang0Miao Liu1Weiqi Qiu2Wei Zhang3Center for Green Chemistry and Department of Chemistry, University of Massachusetts Boston, 100 Morrissey Blvd, Boston, MA 02125, USACenter for Green Chemistry and Department of Chemistry, University of Massachusetts Boston, 100 Morrissey Blvd, Boston, MA 02125, USACenter for Green Chemistry and Department of Chemistry, University of Massachusetts Boston, 100 Morrissey Blvd, Boston, MA 02125, USACenter for Green Chemistry and Department of Chemistry, University of Massachusetts Boston, 100 Morrissey Blvd, Boston, MA 02125, USAQuinoline is a privileged heterocyclic ring which can be found in many drug molecules and bioactive compounds. The development of synthetic methods for making quinoline derivatives continuously attracts the interest of organic and medicinal chemists. This paper highlights 2-azidobenzaldehyde-based [4+2] annulation for the synthesis of quinoline derivatives including fused and spiro-quinolines, quinoline-4-ols, 4-aminoquinolines, and related compounds.https://www.mdpi.com/1420-3049/29/6/1241quinolinesazidobenzaldehyde[4+2] annulationheterocyclicbioactive
spellingShingle Xiaofeng Zhang
Miao Liu
Weiqi Qiu
Wei Zhang
2-Azidobenzaldehyde-Based [4+2] Annulation for the Synthesis of Quinoline Derivatives
Molecules
quinolines
azidobenzaldehyde
[4+2] annulation
heterocyclic
bioactive
title 2-Azidobenzaldehyde-Based [4+2] Annulation for the Synthesis of Quinoline Derivatives
title_full 2-Azidobenzaldehyde-Based [4+2] Annulation for the Synthesis of Quinoline Derivatives
title_fullStr 2-Azidobenzaldehyde-Based [4+2] Annulation for the Synthesis of Quinoline Derivatives
title_full_unstemmed 2-Azidobenzaldehyde-Based [4+2] Annulation for the Synthesis of Quinoline Derivatives
title_short 2-Azidobenzaldehyde-Based [4+2] Annulation for the Synthesis of Quinoline Derivatives
title_sort 2 azidobenzaldehyde based 4 2 annulation for the synthesis of quinoline derivatives
topic quinolines
azidobenzaldehyde
[4+2] annulation
heterocyclic
bioactive
url https://www.mdpi.com/1420-3049/29/6/1241
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AT miaoliu 2azidobenzaldehydebased42annulationforthesynthesisofquinolinederivatives
AT weiqiqiu 2azidobenzaldehydebased42annulationforthesynthesisofquinolinederivatives
AT weizhang 2azidobenzaldehydebased42annulationforthesynthesisofquinolinederivatives