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Fe(3)O(4)@SiO(2) nanoparticle supported ionic liquid for green synthesis of antibacterially active 1-carbamoyl-1-phenylureas in water
In the present work, we have designed a novel, heterogeneous and recyclable magnetic Brønsted acidic ionic liquid based on 5-phenyl-1H-tetrazole. The {Fe(3)O(4)@SiO(2)@(CH(2))(3)5-phenyl-1H-tetrazole-SO(3)H/Cl} ([FSTet-SO(3)H]Cl) was prepared via the immobilization of 5-phenyl-1H-tetrazole-bonded su...
Autores principales: | , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
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The Royal Society of Chemistry
2018
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9083804/ https://www.ncbi.nlm.nih.gov/pubmed/35542743 http://dx.doi.org/10.1039/c8ra04368j |
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author | Nasrollahzadeh, Mahmoud Issaabadi, Zahra Sajadi, S. Mohammad |
author_facet | Nasrollahzadeh, Mahmoud Issaabadi, Zahra Sajadi, S. Mohammad |
author_sort | Nasrollahzadeh, Mahmoud |
collection | PubMed |
description | In the present work, we have designed a novel, heterogeneous and recyclable magnetic Brønsted acidic ionic liquid based on 5-phenyl-1H-tetrazole. The {Fe(3)O(4)@SiO(2)@(CH(2))(3)5-phenyl-1H-tetrazole-SO(3)H/Cl} ([FSTet-SO(3)H]Cl) was prepared via the immobilization of 5-phenyl-1H-tetrazole-bonded sulfonic acid onto the surface of silica-coated magnetic nanoparticles using 3-chloropropyltriethoxysilane as a linker. The catalyst was characterized by XRD, TEM, FESEM, EDS, TG-DTA, and FT-IR. The ability and high activity of this catalyst were demonstrated in the synthesis of 1-carbamoyl-1-phenylureas with good to excellent yields via a new, simple and one-pot procedure in aqueous media under reflux conditions. This procedure has advantages such as high yields, short reaction times, a simple methodology and work-up process, green reaction conditions, high stability, catalytic activity, and easy preparation, separation and reusability of the catalyst. The synthesis of these compounds was confirmed by FT-IR, (1)H NMR, (13)C NMR and CHN. In addition, we investigated the biological properties of the 1-carbamoyl-1-phenylureas as newly synthesized compounds. The described catalyst could be easily separated from the reaction mixture by additional magnetic force and reused several times without a remarkable loss of its catalytic activity and any considerable changes in the product yield and the reaction time. |
format | Online Article Text |
id | pubmed-9083804 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | The Royal Society of Chemistry |
record_format | MEDLINE/PubMed |
spelling | pubmed-90838042022-05-09 Fe(3)O(4)@SiO(2) nanoparticle supported ionic liquid for green synthesis of antibacterially active 1-carbamoyl-1-phenylureas in water Nasrollahzadeh, Mahmoud Issaabadi, Zahra Sajadi, S. Mohammad RSC Adv Chemistry In the present work, we have designed a novel, heterogeneous and recyclable magnetic Brønsted acidic ionic liquid based on 5-phenyl-1H-tetrazole. The {Fe(3)O(4)@SiO(2)@(CH(2))(3)5-phenyl-1H-tetrazole-SO(3)H/Cl} ([FSTet-SO(3)H]Cl) was prepared via the immobilization of 5-phenyl-1H-tetrazole-bonded sulfonic acid onto the surface of silica-coated magnetic nanoparticles using 3-chloropropyltriethoxysilane as a linker. The catalyst was characterized by XRD, TEM, FESEM, EDS, TG-DTA, and FT-IR. The ability and high activity of this catalyst were demonstrated in the synthesis of 1-carbamoyl-1-phenylureas with good to excellent yields via a new, simple and one-pot procedure in aqueous media under reflux conditions. This procedure has advantages such as high yields, short reaction times, a simple methodology and work-up process, green reaction conditions, high stability, catalytic activity, and easy preparation, separation and reusability of the catalyst. The synthesis of these compounds was confirmed by FT-IR, (1)H NMR, (13)C NMR and CHN. In addition, we investigated the biological properties of the 1-carbamoyl-1-phenylureas as newly synthesized compounds. The described catalyst could be easily separated from the reaction mixture by additional magnetic force and reused several times without a remarkable loss of its catalytic activity and any considerable changes in the product yield and the reaction time. The Royal Society of Chemistry 2018-08-02 /pmc/articles/PMC9083804/ /pubmed/35542743 http://dx.doi.org/10.1039/c8ra04368j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/ |
spellingShingle | Chemistry Nasrollahzadeh, Mahmoud Issaabadi, Zahra Sajadi, S. Mohammad Fe(3)O(4)@SiO(2) nanoparticle supported ionic liquid for green synthesis of antibacterially active 1-carbamoyl-1-phenylureas in water |
title | Fe(3)O(4)@SiO(2) nanoparticle supported ionic liquid for green synthesis of antibacterially active 1-carbamoyl-1-phenylureas in water |
title_full | Fe(3)O(4)@SiO(2) nanoparticle supported ionic liquid for green synthesis of antibacterially active 1-carbamoyl-1-phenylureas in water |
title_fullStr | Fe(3)O(4)@SiO(2) nanoparticle supported ionic liquid for green synthesis of antibacterially active 1-carbamoyl-1-phenylureas in water |
title_full_unstemmed | Fe(3)O(4)@SiO(2) nanoparticle supported ionic liquid for green synthesis of antibacterially active 1-carbamoyl-1-phenylureas in water |
title_short | Fe(3)O(4)@SiO(2) nanoparticle supported ionic liquid for green synthesis of antibacterially active 1-carbamoyl-1-phenylureas in water |
title_sort | fe(3)o(4)@sio(2) nanoparticle supported ionic liquid for green synthesis of antibacterially active 1-carbamoyl-1-phenylureas in water |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9083804/ https://www.ncbi.nlm.nih.gov/pubmed/35542743 http://dx.doi.org/10.1039/c8ra04368j |
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