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Colorimetric and fluorometric dual-mode determination of hypochlorite based on redox-mediated quenching

We have successfully created a dual-modal probe, labeled as of iron(ii)–ortho-phenanthroline/N, S@g-CDs, which combines both fluorometric and colorimetric techniques for the accurate and sensitive detection of hypochlorite (ClO(−)). The mechanism behind this probe involves the fluorescence quenching...

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Autores principales: AlQarni, Ali O., Mahmoud, Ashraf M., Ali, Ramadan, El-Wekil, Mohamed M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10624236/
https://www.ncbi.nlm.nih.gov/pubmed/37928853
http://dx.doi.org/10.1039/d3ra05870k
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author AlQarni, Ali O.
Mahmoud, Ashraf M.
Ali, Ramadan
El-Wekil, Mohamed M.
author_facet AlQarni, Ali O.
Mahmoud, Ashraf M.
Ali, Ramadan
El-Wekil, Mohamed M.
author_sort AlQarni, Ali O.
collection PubMed
description We have successfully created a dual-modal probe, labeled as of iron(ii)–ortho-phenanthroline/N, S@g-CDs, which combines both fluorometric and colorimetric techniques for the accurate and sensitive detection of hypochlorite (ClO(−)). The mechanism behind this probe involves the fluorescence quenching interaction between nitrogen and sulfur co-doped green emissive carbon dots (N, S@g-CDs) and the iron(ii)–ortho-phenanthroline chelate, utilizing both the inner filter effect and redox processes. As the concentration of ClO(−) increases, the iron(ii) undergo oxidation to iron(iii) as follows: Fe(ii) + 2HClO = Fe(iii) + Cl(2)O + H(2)O, leading to the restoration of N, S@g-CDs fluorescence. Simultaneously, the color of the system transitions gradually from red to colorless, enabling colorimetric measurements. In the fluorometric method with an excitation wavelength of 370 nm, the ClO(−) concentration exhibits a wide linear correlation with fluorescence intensity ranging from 0.07 to 220 μM. The detection limit achieved in this method is 0.02 μM (S/N = 3). In contrast, the colorimetric method exhibits a linear range of 1.12 to 200 μM, with a detection limit of 0.335 μM (S/N = 3). The proposed selective absorbance for this method is 510 nm. The probe has been effectively utilized for the detection of ClO(−) in various samples, including water and milk samples. This successful application showcases its potential for determining ClO(−) in complex matrices, highlighting its broad range of practical uses.
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spelling pubmed-106242362023-11-04 Colorimetric and fluorometric dual-mode determination of hypochlorite based on redox-mediated quenching AlQarni, Ali O. Mahmoud, Ashraf M. Ali, Ramadan El-Wekil, Mohamed M. RSC Adv Chemistry We have successfully created a dual-modal probe, labeled as of iron(ii)–ortho-phenanthroline/N, S@g-CDs, which combines both fluorometric and colorimetric techniques for the accurate and sensitive detection of hypochlorite (ClO(−)). The mechanism behind this probe involves the fluorescence quenching interaction between nitrogen and sulfur co-doped green emissive carbon dots (N, S@g-CDs) and the iron(ii)–ortho-phenanthroline chelate, utilizing both the inner filter effect and redox processes. As the concentration of ClO(−) increases, the iron(ii) undergo oxidation to iron(iii) as follows: Fe(ii) + 2HClO = Fe(iii) + Cl(2)O + H(2)O, leading to the restoration of N, S@g-CDs fluorescence. Simultaneously, the color of the system transitions gradually from red to colorless, enabling colorimetric measurements. In the fluorometric method with an excitation wavelength of 370 nm, the ClO(−) concentration exhibits a wide linear correlation with fluorescence intensity ranging from 0.07 to 220 μM. The detection limit achieved in this method is 0.02 μM (S/N = 3). In contrast, the colorimetric method exhibits a linear range of 1.12 to 200 μM, with a detection limit of 0.335 μM (S/N = 3). The proposed selective absorbance for this method is 510 nm. The probe has been effectively utilized for the detection of ClO(−) in various samples, including water and milk samples. This successful application showcases its potential for determining ClO(−) in complex matrices, highlighting its broad range of practical uses. The Royal Society of Chemistry 2023-11-03 /pmc/articles/PMC10624236/ /pubmed/37928853 http://dx.doi.org/10.1039/d3ra05870k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
AlQarni, Ali O.
Mahmoud, Ashraf M.
Ali, Ramadan
El-Wekil, Mohamed M.
Colorimetric and fluorometric dual-mode determination of hypochlorite based on redox-mediated quenching
title Colorimetric and fluorometric dual-mode determination of hypochlorite based on redox-mediated quenching
title_full Colorimetric and fluorometric dual-mode determination of hypochlorite based on redox-mediated quenching
title_fullStr Colorimetric and fluorometric dual-mode determination of hypochlorite based on redox-mediated quenching
title_full_unstemmed Colorimetric and fluorometric dual-mode determination of hypochlorite based on redox-mediated quenching
title_short Colorimetric and fluorometric dual-mode determination of hypochlorite based on redox-mediated quenching
title_sort colorimetric and fluorometric dual-mode determination of hypochlorite based on redox-mediated quenching
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10624236/
https://www.ncbi.nlm.nih.gov/pubmed/37928853
http://dx.doi.org/10.1039/d3ra05870k
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