Peroxidase Mimic Sulfur-Rich CuO-Carbon Nitride Core-Shell Nanorods for the Colorimetric Detection of Aminophenol Isomers

A solid-state method was used to derive a sulfur rich CuO-carbon nitride core-shell nano-composite from a Cu-organic hybrid. The synthesized material was characterized by XRD, morphology by SEM and TEM. Elemental analysis was investigated using EDS. The novel sulfur rich CuO-carbon nitride core-shel...

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Main Author: Sreeramareddygari M.
Other Authors: Mahidol University
Format: Article
Published: 2023
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Online Access:https://repository.li.mahidol.ac.th/handle/123456789/82754
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spelling th-mahidol.827542023-05-25T00:06:00Z Peroxidase Mimic Sulfur-Rich CuO-Carbon Nitride Core-Shell Nanorods for the Colorimetric Detection of Aminophenol Isomers Sreeramareddygari M. Mahidol University Chemistry A solid-state method was used to derive a sulfur rich CuO-carbon nitride core-shell nano-composite from a Cu-organic hybrid. The synthesized material was characterized by XRD, morphology by SEM and TEM. Elemental analysis was investigated using EDS. The novel sulfur rich CuO-carbon nitride core-shell composite demonstrated as peroxidase activity for the oxidation of aminophenol isomers in the presence of H2O2. The oxidized products of o-aminophenol (o-AP) and p-aminophenol (p-AP) in phosphate buffer (PB, pH 7) showed strong absorption peaks at 435 and 475 nm, respectively in the UV-Visible spectra. Whereas no oxidation reaction was observed for m-aminophenol. Kinetic analysis of sulfur rich CuO-graphitic carbon nitride revealed that the catalyst functioned by a ping-pong mechanism for the oxidation of both o-AP & p-AP by hydrogen peroxide (H2O2). Based on KM values, substrate affinities were in the order o-AP>H2O2>p-AP. We further used this material for selective colorimetric detection of o-AP and p-AP in PB pH 7. The linear ranges obtained for o-AP and p-AP were 1–200 μM (LOD=1.5 μM, r2=0.99) and 10–500 μM (LOD=2.27 μM, r2=0.99), respectively. The developed analytical platform was used to detect these isomers in river water and p-AP in artificial urine. 2023-05-24T17:06:00Z 2023-05-24T17:06:00Z 2023-05-11 Article ChemistrySelect Vol.8 No.18 (2023) 10.1002/slct.202300073 23656549 2-s2.0-85159075034 https://repository.li.mahidol.ac.th/handle/123456789/82754 SCOPUS
institution Mahidol University
building Mahidol University Library
continent Asia
country Thailand
Thailand
content_provider Mahidol University Library
collection Mahidol University Institutional Repository
topic Chemistry
spellingShingle Chemistry
Sreeramareddygari M.
Peroxidase Mimic Sulfur-Rich CuO-Carbon Nitride Core-Shell Nanorods for the Colorimetric Detection of Aminophenol Isomers
description A solid-state method was used to derive a sulfur rich CuO-carbon nitride core-shell nano-composite from a Cu-organic hybrid. The synthesized material was characterized by XRD, morphology by SEM and TEM. Elemental analysis was investigated using EDS. The novel sulfur rich CuO-carbon nitride core-shell composite demonstrated as peroxidase activity for the oxidation of aminophenol isomers in the presence of H2O2. The oxidized products of o-aminophenol (o-AP) and p-aminophenol (p-AP) in phosphate buffer (PB, pH 7) showed strong absorption peaks at 435 and 475 nm, respectively in the UV-Visible spectra. Whereas no oxidation reaction was observed for m-aminophenol. Kinetic analysis of sulfur rich CuO-graphitic carbon nitride revealed that the catalyst functioned by a ping-pong mechanism for the oxidation of both o-AP & p-AP by hydrogen peroxide (H2O2). Based on KM values, substrate affinities were in the order o-AP>H2O2>p-AP. We further used this material for selective colorimetric detection of o-AP and p-AP in PB pH 7. The linear ranges obtained for o-AP and p-AP were 1–200 μM (LOD=1.5 μM, r2=0.99) and 10–500 μM (LOD=2.27 μM, r2=0.99), respectively. The developed analytical platform was used to detect these isomers in river water and p-AP in artificial urine.
author2 Mahidol University
author_facet Mahidol University
Sreeramareddygari M.
format Article
author Sreeramareddygari M.
author_sort Sreeramareddygari M.
title Peroxidase Mimic Sulfur-Rich CuO-Carbon Nitride Core-Shell Nanorods for the Colorimetric Detection of Aminophenol Isomers
title_short Peroxidase Mimic Sulfur-Rich CuO-Carbon Nitride Core-Shell Nanorods for the Colorimetric Detection of Aminophenol Isomers
title_full Peroxidase Mimic Sulfur-Rich CuO-Carbon Nitride Core-Shell Nanorods for the Colorimetric Detection of Aminophenol Isomers
title_fullStr Peroxidase Mimic Sulfur-Rich CuO-Carbon Nitride Core-Shell Nanorods for the Colorimetric Detection of Aminophenol Isomers
title_full_unstemmed Peroxidase Mimic Sulfur-Rich CuO-Carbon Nitride Core-Shell Nanorods for the Colorimetric Detection of Aminophenol Isomers
title_sort peroxidase mimic sulfur-rich cuo-carbon nitride core-shell nanorods for the colorimetric detection of aminophenol isomers
publishDate 2023
url https://repository.li.mahidol.ac.th/handle/123456789/82754
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