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New eco-friendly animal bone meal catalysts for preparation of chalcones and aza-Michael adducts

ABSTRACT: Two efficient reactions were successfully carried out using Animal Bone Meal (ABM) and potassium fluoride or sodium nitrate doped ABMs as new heterogeneous catalysts under very mild conditions. After preparation and characterization of the catalysts, we first report their use in a simple a...

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Autores principales: Riadi, Yassine, Abrouki, Younes, Mamouni, Rachid, El Haddad, Mohammadine, Routier, Sylvain, Guillaumet, Gérald, Lazar, Saïd
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3536715/
https://www.ncbi.nlm.nih.gov/pubmed/22721409
http://dx.doi.org/10.1186/1752-153X-6-60
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author Riadi, Yassine
Abrouki, Younes
Mamouni, Rachid
El Haddad, Mohammadine
Routier, Sylvain
Guillaumet, Gérald
Lazar, Saïd
author_facet Riadi, Yassine
Abrouki, Younes
Mamouni, Rachid
El Haddad, Mohammadine
Routier, Sylvain
Guillaumet, Gérald
Lazar, Saïd
author_sort Riadi, Yassine
collection PubMed
description ABSTRACT: Two efficient reactions were successfully carried out using Animal Bone Meal (ABM) and potassium fluoride or sodium nitrate doped ABMs as new heterogeneous catalysts under very mild conditions. After preparation and characterization of the catalysts, we first report their use in a simple and convenient synthesis of various chalcones by Claisen–Schmidt condensation and then in an aza-Michael addition involving several synthesized chalcones with aromatic amines. All the reactions were carried out at room temperature in methanol; the chalcone synthesis was also achieved in water environment under microwave irradiation. Doping ABM enhances the rate and yield at each reaction. Catalytic activities are discussed and the ability to re-use the ABM is demonstrated. RESULTS: For Claisen–Schmidt the use of ABM alone, yields never exceeded 17%. In each entry, KF/ABM and NaNO(3)/ABM (79-97%) gave higher yields than using ABM alone under thermic condition. Also the reaction proceeded under microwave irradiation in good yields (72-94% for KF/ABM and 81-97% for NaNO(3)/ABM) and high purity. For aza-Michael addition the use of ABM doped with KF or NaNO(3) increased the catalytic activity remarkably. The very high yields could be noted (84-95% for KF/ABM and 81-94% for NaNO(3)/ABM). CONCLUSION: The present method is an efficient and selective procedure for the synthesis of chalcones an aza-Michael adducts. The ABM and doped ABMs are a new, inexpensive and attractive solid supports which can contribute to the development of catalytic processes and reduced environmental problems.
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spelling pubmed-35367152013-01-08 New eco-friendly animal bone meal catalysts for preparation of chalcones and aza-Michael adducts Riadi, Yassine Abrouki, Younes Mamouni, Rachid El Haddad, Mohammadine Routier, Sylvain Guillaumet, Gérald Lazar, Saïd Chem Cent J Research Article ABSTRACT: Two efficient reactions were successfully carried out using Animal Bone Meal (ABM) and potassium fluoride or sodium nitrate doped ABMs as new heterogeneous catalysts under very mild conditions. After preparation and characterization of the catalysts, we first report their use in a simple and convenient synthesis of various chalcones by Claisen–Schmidt condensation and then in an aza-Michael addition involving several synthesized chalcones with aromatic amines. All the reactions were carried out at room temperature in methanol; the chalcone synthesis was also achieved in water environment under microwave irradiation. Doping ABM enhances the rate and yield at each reaction. Catalytic activities are discussed and the ability to re-use the ABM is demonstrated. RESULTS: For Claisen–Schmidt the use of ABM alone, yields never exceeded 17%. In each entry, KF/ABM and NaNO(3)/ABM (79-97%) gave higher yields than using ABM alone under thermic condition. Also the reaction proceeded under microwave irradiation in good yields (72-94% for KF/ABM and 81-97% for NaNO(3)/ABM) and high purity. For aza-Michael addition the use of ABM doped with KF or NaNO(3) increased the catalytic activity remarkably. The very high yields could be noted (84-95% for KF/ABM and 81-94% for NaNO(3)/ABM). CONCLUSION: The present method is an efficient and selective procedure for the synthesis of chalcones an aza-Michael adducts. The ABM and doped ABMs are a new, inexpensive and attractive solid supports which can contribute to the development of catalytic processes and reduced environmental problems. BioMed Central 2012-06-21 /pmc/articles/PMC3536715/ /pubmed/22721409 http://dx.doi.org/10.1186/1752-153X-6-60 Text en Copyright ©2012 Riadi et al.; licensee Chemistry Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Riadi, Yassine
Abrouki, Younes
Mamouni, Rachid
El Haddad, Mohammadine
Routier, Sylvain
Guillaumet, Gérald
Lazar, Saïd
New eco-friendly animal bone meal catalysts for preparation of chalcones and aza-Michael adducts
title New eco-friendly animal bone meal catalysts for preparation of chalcones and aza-Michael adducts
title_full New eco-friendly animal bone meal catalysts for preparation of chalcones and aza-Michael adducts
title_fullStr New eco-friendly animal bone meal catalysts for preparation of chalcones and aza-Michael adducts
title_full_unstemmed New eco-friendly animal bone meal catalysts for preparation of chalcones and aza-Michael adducts
title_short New eco-friendly animal bone meal catalysts for preparation of chalcones and aza-Michael adducts
title_sort new eco-friendly animal bone meal catalysts for preparation of chalcones and aza-michael adducts
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3536715/
https://www.ncbi.nlm.nih.gov/pubmed/22721409
http://dx.doi.org/10.1186/1752-153X-6-60
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