The utilization of copper/zeolite as catalyst in the microwave-assisted synthesis of some novel sulfonamide derivatives

Zeolite Y clay modified copper nitrate catalyst was prepared. The obtained catalyst was analyzed by SEM, EDS, and powder XRD techniques. The zeolite Y clay modified copper nitrate catalyst was used for the synthesis of various substituted mesalazine by sulfonylation. The synthesized sulfonamides hav...

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Main Authors: Dineshkumar Selvakumar, Thirunarayanan Ganesamoorthi, Mayavel Perumal, Muthuvel Inbasekaran
Format: Article
Language:English
Published: Sciendo 2016-06-01
Series:Analele Universităţii "Ovidius" Constanţa: Seria Chimie
Subjects:
sem
eds
Online Access:https://doi.org/10.1515/auoc-2016-0005
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spelling doaj-9f0695862c294f508deb522c9e26bd642021-09-06T19:40:17ZengSciendoAnalele Universităţii "Ovidius" Constanţa: Seria Chimie2286-038X2016-06-01271222710.1515/auoc-2016-0005auoc-2016-0005The utilization of copper/zeolite as catalyst in the microwave-assisted synthesis of some novel sulfonamide derivativesDineshkumar Selvakumar0Thirunarayanan Ganesamoorthi1Mayavel Perumal2Muthuvel Inbasekaran3Department of Chemistry, Annamalai University, Annamaliangar-608002, Tamilnadu, IndiaDepartment of Chemistry, Annamalai University, Annamaliangar-608002, Tamilnadu, IndiaDepartment of Chemistry, Annamalai University, Annamaliangar-608002, Tamilnadu, IndiaDepartment of Chemistry, Annamalai University, Annamaliangar-608002, Tamilnadu, IndiaZeolite Y clay modified copper nitrate catalyst was prepared. The obtained catalyst was analyzed by SEM, EDS, and powder XRD techniques. The zeolite Y clay modified copper nitrate catalyst was used for the synthesis of various substituted mesalazine by sulfonylation. The synthesized sulfonamides have been characterized by GC-MS, IR, 1H, 13C and HSQC NMR techniques. The yield percentages of sulfonamides are more than 85%.https://doi.org/10.1515/auoc-2016-0005sulfonamidescopper-zeolitesft-irnmr spectragc-masssemedspowder xrd
collection DOAJ
language English
format Article
sources DOAJ
author Dineshkumar Selvakumar
Thirunarayanan Ganesamoorthi
Mayavel Perumal
Muthuvel Inbasekaran
spellingShingle Dineshkumar Selvakumar
Thirunarayanan Ganesamoorthi
Mayavel Perumal
Muthuvel Inbasekaran
The utilization of copper/zeolite as catalyst in the microwave-assisted synthesis of some novel sulfonamide derivatives
Analele Universităţii "Ovidius" Constanţa: Seria Chimie
sulfonamides
copper-zeolites
ft-ir
nmr spectra
gc-mass
sem
eds
powder xrd
author_facet Dineshkumar Selvakumar
Thirunarayanan Ganesamoorthi
Mayavel Perumal
Muthuvel Inbasekaran
author_sort Dineshkumar Selvakumar
title The utilization of copper/zeolite as catalyst in the microwave-assisted synthesis of some novel sulfonamide derivatives
title_short The utilization of copper/zeolite as catalyst in the microwave-assisted synthesis of some novel sulfonamide derivatives
title_full The utilization of copper/zeolite as catalyst in the microwave-assisted synthesis of some novel sulfonamide derivatives
title_fullStr The utilization of copper/zeolite as catalyst in the microwave-assisted synthesis of some novel sulfonamide derivatives
title_full_unstemmed The utilization of copper/zeolite as catalyst in the microwave-assisted synthesis of some novel sulfonamide derivatives
title_sort utilization of copper/zeolite as catalyst in the microwave-assisted synthesis of some novel sulfonamide derivatives
publisher Sciendo
series Analele Universităţii "Ovidius" Constanţa: Seria Chimie
issn 2286-038X
publishDate 2016-06-01
description Zeolite Y clay modified copper nitrate catalyst was prepared. The obtained catalyst was analyzed by SEM, EDS, and powder XRD techniques. The zeolite Y clay modified copper nitrate catalyst was used for the synthesis of various substituted mesalazine by sulfonylation. The synthesized sulfonamides have been characterized by GC-MS, IR, 1H, 13C and HSQC NMR techniques. The yield percentages of sulfonamides are more than 85%.
topic sulfonamides
copper-zeolites
ft-ir
nmr spectra
gc-mass
sem
eds
powder xrd
url https://doi.org/10.1515/auoc-2016-0005
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