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Chip-Based Spectrofluorimetric Determination of Iodine in a Multi-Syringe Flow Platform with and without In-Line Digestion—Application to Salt, Pharmaceuticals, and Algae Samples

In this work, a flow-based spectrofluorimetric method for iodine determination was developed. The system consisted of a miniaturized chip-based flow manifold for solutions handling and with integrated spectrofluorimetric detection. A multi-syringe module was used as a liquid driver. Iodide was quant...

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Autores principales: Miranda, Joana L. A., Mesquita, Raquel B. R., Palacio, Edwin, Estela, José M., Cerdà, Víctor, Rangel, António O. S. S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8877039/
https://www.ncbi.nlm.nih.gov/pubmed/35209114
http://dx.doi.org/10.3390/molecules27041325
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author Miranda, Joana L. A.
Mesquita, Raquel B. R.
Palacio, Edwin
Estela, José M.
Cerdà, Víctor
Rangel, António O. S. S.
author_facet Miranda, Joana L. A.
Mesquita, Raquel B. R.
Palacio, Edwin
Estela, José M.
Cerdà, Víctor
Rangel, António O. S. S.
author_sort Miranda, Joana L. A.
collection PubMed
description In this work, a flow-based spectrofluorimetric method for iodine determination was developed. The system consisted of a miniaturized chip-based flow manifold for solutions handling and with integrated spectrofluorimetric detection. A multi-syringe module was used as a liquid driver. Iodide was quantified from its catalytic effect on the redox reaction between Ce(IV) and As(III), based on the Sandell–Kolthoff reaction. The method was applied for the determination of iodine in salt, pharmaceuticals, supplement pills, and seaweed samples without off-line pre-treatment. An in-line oxidation process, aided by UV radiation, was implemented to analyse some samples (supplement pills and seaweed samples) to eliminate interferences and release iodine from organo-iodine compounds. This feature, combined with the fluorometric reaction, makes this method simpler, faster, and more sensitive than the classic approach of the Sandell–Kolthoff reaction. The method allowed iodine to be determined within a range of 0.20–4.0 µmol L(−1), with or without the in-line UV digestion, with a limit of detection of 0.028 µmol L(−1) and 0.025 µmol L(−1), respectively.
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spelling pubmed-88770392022-02-26 Chip-Based Spectrofluorimetric Determination of Iodine in a Multi-Syringe Flow Platform with and without In-Line Digestion—Application to Salt, Pharmaceuticals, and Algae Samples Miranda, Joana L. A. Mesquita, Raquel B. R. Palacio, Edwin Estela, José M. Cerdà, Víctor Rangel, António O. S. S. Molecules Article In this work, a flow-based spectrofluorimetric method for iodine determination was developed. The system consisted of a miniaturized chip-based flow manifold for solutions handling and with integrated spectrofluorimetric detection. A multi-syringe module was used as a liquid driver. Iodide was quantified from its catalytic effect on the redox reaction between Ce(IV) and As(III), based on the Sandell–Kolthoff reaction. The method was applied for the determination of iodine in salt, pharmaceuticals, supplement pills, and seaweed samples without off-line pre-treatment. An in-line oxidation process, aided by UV radiation, was implemented to analyse some samples (supplement pills and seaweed samples) to eliminate interferences and release iodine from organo-iodine compounds. This feature, combined with the fluorometric reaction, makes this method simpler, faster, and more sensitive than the classic approach of the Sandell–Kolthoff reaction. The method allowed iodine to be determined within a range of 0.20–4.0 µmol L(−1), with or without the in-line UV digestion, with a limit of detection of 0.028 µmol L(−1) and 0.025 µmol L(−1), respectively. MDPI 2022-02-16 /pmc/articles/PMC8877039/ /pubmed/35209114 http://dx.doi.org/10.3390/molecules27041325 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Miranda, Joana L. A.
Mesquita, Raquel B. R.
Palacio, Edwin
Estela, José M.
Cerdà, Víctor
Rangel, António O. S. S.
Chip-Based Spectrofluorimetric Determination of Iodine in a Multi-Syringe Flow Platform with and without In-Line Digestion—Application to Salt, Pharmaceuticals, and Algae Samples
title Chip-Based Spectrofluorimetric Determination of Iodine in a Multi-Syringe Flow Platform with and without In-Line Digestion—Application to Salt, Pharmaceuticals, and Algae Samples
title_full Chip-Based Spectrofluorimetric Determination of Iodine in a Multi-Syringe Flow Platform with and without In-Line Digestion—Application to Salt, Pharmaceuticals, and Algae Samples
title_fullStr Chip-Based Spectrofluorimetric Determination of Iodine in a Multi-Syringe Flow Platform with and without In-Line Digestion—Application to Salt, Pharmaceuticals, and Algae Samples
title_full_unstemmed Chip-Based Spectrofluorimetric Determination of Iodine in a Multi-Syringe Flow Platform with and without In-Line Digestion—Application to Salt, Pharmaceuticals, and Algae Samples
title_short Chip-Based Spectrofluorimetric Determination of Iodine in a Multi-Syringe Flow Platform with and without In-Line Digestion—Application to Salt, Pharmaceuticals, and Algae Samples
title_sort chip-based spectrofluorimetric determination of iodine in a multi-syringe flow platform with and without in-line digestion—application to salt, pharmaceuticals, and algae samples
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8877039/
https://www.ncbi.nlm.nih.gov/pubmed/35209114
http://dx.doi.org/10.3390/molecules27041325
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