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BiCl(3)-catalyzed green synthesis of 4-hydroxy-2-quinolone analogues under microwave irradiation

Traditional chemical synthesis, which involves the use of dangerous protocols, hazardous solvents, and toxic products and catalysts, is considered environmentally inappropriate and harmful to human health. Bearing in mind its numerous drawbacks, it has become crucial to substitute conventional chemi...

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Autores principales: Bouone, Yousra Ouafa, Bouzina, Abdeslem, Sayad, Rayene, Djemel, Abdelhak, Benaceur, Farouk, Zoukel, Abdelhalim, Ibrahim-Ouali, Malika, Aouf, Nour-Eddine, Bouchareb, Fouzia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10517106/
https://www.ncbi.nlm.nih.gov/pubmed/37746335
http://dx.doi.org/10.1039/d3ra05289c
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author Bouone, Yousra Ouafa
Bouzina, Abdeslem
Sayad, Rayene
Djemel, Abdelhak
Benaceur, Farouk
Zoukel, Abdelhalim
Ibrahim-Ouali, Malika
Aouf, Nour-Eddine
Bouchareb, Fouzia
author_facet Bouone, Yousra Ouafa
Bouzina, Abdeslem
Sayad, Rayene
Djemel, Abdelhak
Benaceur, Farouk
Zoukel, Abdelhalim
Ibrahim-Ouali, Malika
Aouf, Nour-Eddine
Bouchareb, Fouzia
author_sort Bouone, Yousra Ouafa
collection PubMed
description Traditional chemical synthesis, which involves the use of dangerous protocols, hazardous solvents, and toxic products and catalysts, is considered environmentally inappropriate and harmful to human health. Bearing in mind its numerous drawbacks, it has become crucial to substitute conventional chemistry with green chemistry which is safer, more ecofriendly and more effective in terms of time and selectivity. Elaborating synthetic protocols producing interesting new compounds using both microwave heating and heterogeneous non-toxic catalysts is acknowledged as a green approach that avoids many classical chemistry-related problems. In the current study, β-enaminones were used as precursors to the synthesis of modified 4-hydroxy-2-quinolone analogues. The synthesis was monitored in a benign way under microwave irradiation and was catalyzed by bismuth chloride III in an amount of 20 mol%. This method is privileged by using a non-corrosive, non-toxic, low-cost and available bismuth Lewis acid catalyst that has made it more respectful to the demands of green chemistry. The synthesized compounds were obtained in moderate to good yields (51–71%) and were characterized by (1)H, (13)C NMR, and IR spectroscopy as well as elemental analysis. Compound 5i was subjected to a complete structural elucidation using the X-ray diffraction method, and the results show the obtention of the enolic tautomeric form.
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spelling pubmed-105171062023-09-24 BiCl(3)-catalyzed green synthesis of 4-hydroxy-2-quinolone analogues under microwave irradiation Bouone, Yousra Ouafa Bouzina, Abdeslem Sayad, Rayene Djemel, Abdelhak Benaceur, Farouk Zoukel, Abdelhalim Ibrahim-Ouali, Malika Aouf, Nour-Eddine Bouchareb, Fouzia RSC Adv Chemistry Traditional chemical synthesis, which involves the use of dangerous protocols, hazardous solvents, and toxic products and catalysts, is considered environmentally inappropriate and harmful to human health. Bearing in mind its numerous drawbacks, it has become crucial to substitute conventional chemistry with green chemistry which is safer, more ecofriendly and more effective in terms of time and selectivity. Elaborating synthetic protocols producing interesting new compounds using both microwave heating and heterogeneous non-toxic catalysts is acknowledged as a green approach that avoids many classical chemistry-related problems. In the current study, β-enaminones were used as precursors to the synthesis of modified 4-hydroxy-2-quinolone analogues. The synthesis was monitored in a benign way under microwave irradiation and was catalyzed by bismuth chloride III in an amount of 20 mol%. This method is privileged by using a non-corrosive, non-toxic, low-cost and available bismuth Lewis acid catalyst that has made it more respectful to the demands of green chemistry. The synthesized compounds were obtained in moderate to good yields (51–71%) and were characterized by (1)H, (13)C NMR, and IR spectroscopy as well as elemental analysis. Compound 5i was subjected to a complete structural elucidation using the X-ray diffraction method, and the results show the obtention of the enolic tautomeric form. The Royal Society of Chemistry 2023-09-21 /pmc/articles/PMC10517106/ /pubmed/37746335 http://dx.doi.org/10.1039/d3ra05289c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Bouone, Yousra Ouafa
Bouzina, Abdeslem
Sayad, Rayene
Djemel, Abdelhak
Benaceur, Farouk
Zoukel, Abdelhalim
Ibrahim-Ouali, Malika
Aouf, Nour-Eddine
Bouchareb, Fouzia
BiCl(3)-catalyzed green synthesis of 4-hydroxy-2-quinolone analogues under microwave irradiation
title BiCl(3)-catalyzed green synthesis of 4-hydroxy-2-quinolone analogues under microwave irradiation
title_full BiCl(3)-catalyzed green synthesis of 4-hydroxy-2-quinolone analogues under microwave irradiation
title_fullStr BiCl(3)-catalyzed green synthesis of 4-hydroxy-2-quinolone analogues under microwave irradiation
title_full_unstemmed BiCl(3)-catalyzed green synthesis of 4-hydroxy-2-quinolone analogues under microwave irradiation
title_short BiCl(3)-catalyzed green synthesis of 4-hydroxy-2-quinolone analogues under microwave irradiation
title_sort bicl(3)-catalyzed green synthesis of 4-hydroxy-2-quinolone analogues under microwave irradiation
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10517106/
https://www.ncbi.nlm.nih.gov/pubmed/37746335
http://dx.doi.org/10.1039/d3ra05289c
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