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Application of novel Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures as an antimicrobial agent and magnetic nanocatalyst in the synthesis of heterocyclic compounds
Using the microwave-assisted method, novel Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures were synthesized. The crystallinity, thermal stability, adsorption/desorption isotherms, morphology/size distribution, and magnetic hysteresis of synthesized Fe(3)O(4)/Zn-metal organic framework m...
Autores principales: | , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9589061/ https://www.ncbi.nlm.nih.gov/pubmed/36300031 http://dx.doi.org/10.3389/fchem.2022.1014731 |
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author | Bashar, Bashar S. Kareem, Hawraa A. Hasan, Yaser Mohamed Ahmad, Nafis Alshehri, A. M. Al-Majdi, Kadhum Hadrawi, Salema K. AL Kubaisy, Munthir Mohammed Radhy Qasim, Maytham T. |
author_facet | Bashar, Bashar S. Kareem, Hawraa A. Hasan, Yaser Mohamed Ahmad, Nafis Alshehri, A. M. Al-Majdi, Kadhum Hadrawi, Salema K. AL Kubaisy, Munthir Mohammed Radhy Qasim, Maytham T. |
author_sort | Bashar, Bashar S. |
collection | PubMed |
description | Using the microwave-assisted method, novel Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures were synthesized. The crystallinity, thermal stability, adsorption/desorption isotherms, morphology/size distribution, and magnetic hysteresis of synthesized Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures were characterized by XRD patterns, TGA curve, BET adsorption/desorption technique, SEM image, and VSM curve, respectively. After confirming the Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures, its antimicrobial properties against Gram-positive bacterial, Gram-negative bacterial, and fungal strains based on minimum inhibitory concentration (MIC), minimum bactericidal concentration (MBC), and minimum fungicidal concentration (MFC) values were studied. The MIC values in antimicrobial activity for Gram-positive and Gram-negative bacterial strains, between 16–128 μg/ml, and for fungal strain, 128 μg/ml were observed. The results showed that the high specific surface area of Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures caused the antimicrobial power of nanoparticles to be high, and the observed antimicrobial effects were higher than some known commercial antimicrobial drugs. Another advantage of the specific surface area of Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures was its high catalytic properties in the three-component reaction of isatin, malononitrile, and dimedone. New spiro [indoline-pyranopyrimidines] derivatives were synthesized with high efficiency. The catalytic activity results of Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures showed that, in addition to recyclability, derivatives could be synthesized in less time than previously reported methods. The results of investigating the catalytic activity of Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures showed that the spiro [indoline-pyranopyrimidines] derivatives were synthesized in the time range of 10–20 min with an efficiency of over 85%. As a final result, it can be concluded that the microwave synthesis method improves the unique properties of magnetic nanostructures, especially its specific surface area, and has increased its efficiency. |
format | Online Article Text |
id | pubmed-9589061 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-95890612022-10-25 Application of novel Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures as an antimicrobial agent and magnetic nanocatalyst in the synthesis of heterocyclic compounds Bashar, Bashar S. Kareem, Hawraa A. Hasan, Yaser Mohamed Ahmad, Nafis Alshehri, A. M. Al-Majdi, Kadhum Hadrawi, Salema K. AL Kubaisy, Munthir Mohammed Radhy Qasim, Maytham T. Front Chem Chemistry Using the microwave-assisted method, novel Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures were synthesized. The crystallinity, thermal stability, adsorption/desorption isotherms, morphology/size distribution, and magnetic hysteresis of synthesized Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures were characterized by XRD patterns, TGA curve, BET adsorption/desorption technique, SEM image, and VSM curve, respectively. After confirming the Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures, its antimicrobial properties against Gram-positive bacterial, Gram-negative bacterial, and fungal strains based on minimum inhibitory concentration (MIC), minimum bactericidal concentration (MBC), and minimum fungicidal concentration (MFC) values were studied. The MIC values in antimicrobial activity for Gram-positive and Gram-negative bacterial strains, between 16–128 μg/ml, and for fungal strain, 128 μg/ml were observed. The results showed that the high specific surface area of Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures caused the antimicrobial power of nanoparticles to be high, and the observed antimicrobial effects were higher than some known commercial antimicrobial drugs. Another advantage of the specific surface area of Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures was its high catalytic properties in the three-component reaction of isatin, malononitrile, and dimedone. New spiro [indoline-pyranopyrimidines] derivatives were synthesized with high efficiency. The catalytic activity results of Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures showed that, in addition to recyclability, derivatives could be synthesized in less time than previously reported methods. The results of investigating the catalytic activity of Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures showed that the spiro [indoline-pyranopyrimidines] derivatives were synthesized in the time range of 10–20 min with an efficiency of over 85%. As a final result, it can be concluded that the microwave synthesis method improves the unique properties of magnetic nanostructures, especially its specific surface area, and has increased its efficiency. Frontiers Media S.A. 2022-10-10 /pmc/articles/PMC9589061/ /pubmed/36300031 http://dx.doi.org/10.3389/fchem.2022.1014731 Text en Copyright © 2022 Bashar, Kareem, Hasan, Ahmad, Alshehri, Al-Majdi, Hadrawi, AL Kubaisy and Qasim. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms. |
spellingShingle | Chemistry Bashar, Bashar S. Kareem, Hawraa A. Hasan, Yaser Mohamed Ahmad, Nafis Alshehri, A. M. Al-Majdi, Kadhum Hadrawi, Salema K. AL Kubaisy, Munthir Mohammed Radhy Qasim, Maytham T. Application of novel Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures as an antimicrobial agent and magnetic nanocatalyst in the synthesis of heterocyclic compounds |
title | Application of novel Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures as an antimicrobial agent and magnetic nanocatalyst in the synthesis of heterocyclic compounds |
title_full | Application of novel Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures as an antimicrobial agent and magnetic nanocatalyst in the synthesis of heterocyclic compounds |
title_fullStr | Application of novel Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures as an antimicrobial agent and magnetic nanocatalyst in the synthesis of heterocyclic compounds |
title_full_unstemmed | Application of novel Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures as an antimicrobial agent and magnetic nanocatalyst in the synthesis of heterocyclic compounds |
title_short | Application of novel Fe(3)O(4)/Zn-metal organic framework magnetic nanostructures as an antimicrobial agent and magnetic nanocatalyst in the synthesis of heterocyclic compounds |
title_sort | application of novel fe(3)o(4)/zn-metal organic framework magnetic nanostructures as an antimicrobial agent and magnetic nanocatalyst in the synthesis of heterocyclic compounds |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9589061/ https://www.ncbi.nlm.nih.gov/pubmed/36300031 http://dx.doi.org/10.3389/fchem.2022.1014731 |
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