Cargando…

The role of PMA in enhancing the surface acidity and catalytic activity of a bimetallic Cr–Mg-MOF and its applications for synthesis of coumarin and dihydropyrimidinone derivatives

In the present study, a bimetallic Cr–Mg-MOF was successfully synthesized by the solvothermal method and then modified by loading different amounts of phosphomolybdic acid (PMA) using a simple wet impregnation technique. The morphological and structural properties of the prepared samples were invest...

Descripción completa

Detalles Bibliográficos
Autores principales: Salama, Reda S., Hassan, Shawky M., Ahmed, Awad I., El-Yazeed, W. S. Abo, Mannaa, Mohammed A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9054398/
https://www.ncbi.nlm.nih.gov/pubmed/35518723
http://dx.doi.org/10.1039/d0ra03591b
_version_ 1784697177916833792
author Salama, Reda S.
Hassan, Shawky M.
Ahmed, Awad I.
El-Yazeed, W. S. Abo
Mannaa, Mohammed A.
author_facet Salama, Reda S.
Hassan, Shawky M.
Ahmed, Awad I.
El-Yazeed, W. S. Abo
Mannaa, Mohammed A.
author_sort Salama, Reda S.
collection PubMed
description In the present study, a bimetallic Cr–Mg-MOF was successfully synthesized by the solvothermal method and then modified by loading different amounts of phosphomolybdic acid (PMA) using a simple wet impregnation technique. The morphological and structural properties of the prepared samples were investigated using X-ray diffraction, TEM, SEM, BET and FTIR spectroscopy. Importantly, Mg doping not only caused the Cr–Mg-MOF to have a higher surface area than MIL-101 (Cr) or MOF-74 (Mg), but the strategy of doping metal ions can be an effective way to improve the adsorption performance of MOFs. The surface acidity and the acid strength of the samples were determined using potentiometric titration and the FTIR of pyridine adsorption. The incorporation of PMA crystals gradually enhances both the surface acidity and the acid strength of the PMA/Cr–Mg-MOF catalysts up to 75 wt%. The catalytic performances of the prepared catalysts were tested in two acid-catalyzed organic transformations, namely, 7-hydroxy-4-methyl coumarin and 3,4-dihydropyrimidinone. In the two reactions, the catalytic activity attains the maximum value at 75 wt% PMA loading. The PMA catalysts supported on Cr–Mg-MOF are potentially promising heterogeneous catalysts for acid-catalyzed organic transformations in environmentally friendly processes, to replace the use of conventional homogeneous PMA catalysts.
format Online
Article
Text
id pubmed-9054398
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-90543982022-05-04 The role of PMA in enhancing the surface acidity and catalytic activity of a bimetallic Cr–Mg-MOF and its applications for synthesis of coumarin and dihydropyrimidinone derivatives Salama, Reda S. Hassan, Shawky M. Ahmed, Awad I. El-Yazeed, W. S. Abo Mannaa, Mohammed A. RSC Adv Chemistry In the present study, a bimetallic Cr–Mg-MOF was successfully synthesized by the solvothermal method and then modified by loading different amounts of phosphomolybdic acid (PMA) using a simple wet impregnation technique. The morphological and structural properties of the prepared samples were investigated using X-ray diffraction, TEM, SEM, BET and FTIR spectroscopy. Importantly, Mg doping not only caused the Cr–Mg-MOF to have a higher surface area than MIL-101 (Cr) or MOF-74 (Mg), but the strategy of doping metal ions can be an effective way to improve the adsorption performance of MOFs. The surface acidity and the acid strength of the samples were determined using potentiometric titration and the FTIR of pyridine adsorption. The incorporation of PMA crystals gradually enhances both the surface acidity and the acid strength of the PMA/Cr–Mg-MOF catalysts up to 75 wt%. The catalytic performances of the prepared catalysts were tested in two acid-catalyzed organic transformations, namely, 7-hydroxy-4-methyl coumarin and 3,4-dihydropyrimidinone. In the two reactions, the catalytic activity attains the maximum value at 75 wt% PMA loading. The PMA catalysts supported on Cr–Mg-MOF are potentially promising heterogeneous catalysts for acid-catalyzed organic transformations in environmentally friendly processes, to replace the use of conventional homogeneous PMA catalysts. The Royal Society of Chemistry 2020-06-03 /pmc/articles/PMC9054398/ /pubmed/35518723 http://dx.doi.org/10.1039/d0ra03591b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Salama, Reda S.
Hassan, Shawky M.
Ahmed, Awad I.
El-Yazeed, W. S. Abo
Mannaa, Mohammed A.
The role of PMA in enhancing the surface acidity and catalytic activity of a bimetallic Cr–Mg-MOF and its applications for synthesis of coumarin and dihydropyrimidinone derivatives
title The role of PMA in enhancing the surface acidity and catalytic activity of a bimetallic Cr–Mg-MOF and its applications for synthesis of coumarin and dihydropyrimidinone derivatives
title_full The role of PMA in enhancing the surface acidity and catalytic activity of a bimetallic Cr–Mg-MOF and its applications for synthesis of coumarin and dihydropyrimidinone derivatives
title_fullStr The role of PMA in enhancing the surface acidity and catalytic activity of a bimetallic Cr–Mg-MOF and its applications for synthesis of coumarin and dihydropyrimidinone derivatives
title_full_unstemmed The role of PMA in enhancing the surface acidity and catalytic activity of a bimetallic Cr–Mg-MOF and its applications for synthesis of coumarin and dihydropyrimidinone derivatives
title_short The role of PMA in enhancing the surface acidity and catalytic activity of a bimetallic Cr–Mg-MOF and its applications for synthesis of coumarin and dihydropyrimidinone derivatives
title_sort role of pma in enhancing the surface acidity and catalytic activity of a bimetallic cr–mg-mof and its applications for synthesis of coumarin and dihydropyrimidinone derivatives
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9054398/
https://www.ncbi.nlm.nih.gov/pubmed/35518723
http://dx.doi.org/10.1039/d0ra03591b
work_keys_str_mv AT salamaredas theroleofpmainenhancingthesurfaceacidityandcatalyticactivityofabimetalliccrmgmofanditsapplicationsforsynthesisofcoumarinanddihydropyrimidinonederivatives
AT hassanshawkym theroleofpmainenhancingthesurfaceacidityandcatalyticactivityofabimetalliccrmgmofanditsapplicationsforsynthesisofcoumarinanddihydropyrimidinonederivatives
AT ahmedawadi theroleofpmainenhancingthesurfaceacidityandcatalyticactivityofabimetalliccrmgmofanditsapplicationsforsynthesisofcoumarinanddihydropyrimidinonederivatives
AT elyazeedwsabo theroleofpmainenhancingthesurfaceacidityandcatalyticactivityofabimetalliccrmgmofanditsapplicationsforsynthesisofcoumarinanddihydropyrimidinonederivatives
AT mannaamohammeda theroleofpmainenhancingthesurfaceacidityandcatalyticactivityofabimetalliccrmgmofanditsapplicationsforsynthesisofcoumarinanddihydropyrimidinonederivatives
AT salamaredas roleofpmainenhancingthesurfaceacidityandcatalyticactivityofabimetalliccrmgmofanditsapplicationsforsynthesisofcoumarinanddihydropyrimidinonederivatives
AT hassanshawkym roleofpmainenhancingthesurfaceacidityandcatalyticactivityofabimetalliccrmgmofanditsapplicationsforsynthesisofcoumarinanddihydropyrimidinonederivatives
AT ahmedawadi roleofpmainenhancingthesurfaceacidityandcatalyticactivityofabimetalliccrmgmofanditsapplicationsforsynthesisofcoumarinanddihydropyrimidinonederivatives
AT elyazeedwsabo roleofpmainenhancingthesurfaceacidityandcatalyticactivityofabimetalliccrmgmofanditsapplicationsforsynthesisofcoumarinanddihydropyrimidinonederivatives
AT mannaamohammeda roleofpmainenhancingthesurfaceacidityandcatalyticactivityofabimetalliccrmgmofanditsapplicationsforsynthesisofcoumarinanddihydropyrimidinonederivatives