An overview on synthesis and reactions of coumarin based compounds

Oxygen-containing heterocycles are largely distributed in natural and synthetic compounds. Coumarins are among the most famous heterocycles which possess one oxygen atom in their rings. Coumarins are classified as multifunctional scaffold and are used as anti-oxidant reagents, anti-inflamma...

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Autores principales: Mahmoud S. Tolba, Mokhtar A. Abd ul-Malik, Adel M. Kamal El-Dean, Ahmed A. Geies, Shaban M. Radwan, Remon M. Zaki, Mostafa Sayed, Shaaban K. Mohamed, Shaban A. A. Abdel-Raheem
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Publicado: Growing Science 2022
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Acceso en línea:https://doaj.org/article/ced40c5da85f4d848bc788d42a880244
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spelling oai:doaj.org-article:ced40c5da85f4d848bc788d42a8802442021-11-12T12:52:42ZAn overview on synthesis and reactions of coumarin based compounds1927-72961927-730X10.5267/j.ccl.2021.9.007https://doaj.org/article/ced40c5da85f4d848bc788d42a8802442022-01-01T00:00:00Zhttp://www.growingscience.com/ccl/Vol11/ccl_2021_38.pdfhttps://doaj.org/toc/1927-7296https://doaj.org/toc/1927-730X Oxygen-containing heterocycles are largely distributed in natural and synthetic compounds. Coumarins are among the most famous heterocycles which possess one oxygen atom in their rings. Coumarins are classified as multifunctional scaffold and are used as anti-oxidant reagents, anti-inflammatory, anti-microbial, anti-fungal, anti-HIV active, analgesic, anti-histaminic, insecticides, dyes, herbicides, sensitizers, perfumes, cosmetics and food additives. Due to their diverse applications in industrial and pharmaceutical fields, many chemists have given significant interest to these compounds. Herein, the review highlights various methods for the synthesis and interactions of coumarin moiety as one of the most efficient categories of heterocycles.Mahmoud S. TolbaMokhtar A. Abd ul-MalikAdel M. Kamal El-DeanAhmed A. GeiesShaban M. RadwanRemon M. ZakiMostafa SayedShaaban K. MohamedShaban A. A. Abdel-RaheemGrowing SciencearticleChemistryQD1-999ENCurrent Chemistry Letters, Vol 11, Iss 1, Pp 29-42 (2022)
institution DOAJ
collection DOAJ
language EN
topic Chemistry
QD1-999
spellingShingle Chemistry
QD1-999
Mahmoud S. Tolba
Mokhtar A. Abd ul-Malik
Adel M. Kamal El-Dean
Ahmed A. Geies
Shaban M. Radwan
Remon M. Zaki
Mostafa Sayed
Shaaban K. Mohamed
Shaban A. A. Abdel-Raheem
An overview on synthesis and reactions of coumarin based compounds
description Oxygen-containing heterocycles are largely distributed in natural and synthetic compounds. Coumarins are among the most famous heterocycles which possess one oxygen atom in their rings. Coumarins are classified as multifunctional scaffold and are used as anti-oxidant reagents, anti-inflammatory, anti-microbial, anti-fungal, anti-HIV active, analgesic, anti-histaminic, insecticides, dyes, herbicides, sensitizers, perfumes, cosmetics and food additives. Due to their diverse applications in industrial and pharmaceutical fields, many chemists have given significant interest to these compounds. Herein, the review highlights various methods for the synthesis and interactions of coumarin moiety as one of the most efficient categories of heterocycles.
format article
author Mahmoud S. Tolba
Mokhtar A. Abd ul-Malik
Adel M. Kamal El-Dean
Ahmed A. Geies
Shaban M. Radwan
Remon M. Zaki
Mostafa Sayed
Shaaban K. Mohamed
Shaban A. A. Abdel-Raheem
author_facet Mahmoud S. Tolba
Mokhtar A. Abd ul-Malik
Adel M. Kamal El-Dean
Ahmed A. Geies
Shaban M. Radwan
Remon M. Zaki
Mostafa Sayed
Shaaban K. Mohamed
Shaban A. A. Abdel-Raheem
author_sort Mahmoud S. Tolba
title An overview on synthesis and reactions of coumarin based compounds
title_short An overview on synthesis and reactions of coumarin based compounds
title_full An overview on synthesis and reactions of coumarin based compounds
title_fullStr An overview on synthesis and reactions of coumarin based compounds
title_full_unstemmed An overview on synthesis and reactions of coumarin based compounds
title_sort overview on synthesis and reactions of coumarin based compounds
publisher Growing Science
publishDate 2022
url https://doaj.org/article/ced40c5da85f4d848bc788d42a880244
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