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Improved Metal Cation Optosensing Membranes through the Incorporation of Sulphated Polysaccharides

Optosensing chitosan-based membranes have been applied for the detection of heavy metals, especially in drinking water. The novelty of this study is based on the use of sulphated polysaccharides, in such optosensing membranes, aiming at an improved analytical performance. The sulphated polysaccharid...

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Detalles Bibliográficos
Autores principales: Santos, P. R. M., Johny, A., Silva, C. Q., Azenha, M. A., Vázquez, J. A., Valcarcel, J., Pereira, C. M., Silva, A. F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9370371/
https://www.ncbi.nlm.nih.gov/pubmed/35956976
http://dx.doi.org/10.3390/molecules27155026
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author Santos, P. R. M.
Johny, A.
Silva, C. Q.
Azenha, M. A.
Vázquez, J. A.
Valcarcel, J.
Pereira, C. M.
Silva, A. F.
author_facet Santos, P. R. M.
Johny, A.
Silva, C. Q.
Azenha, M. A.
Vázquez, J. A.
Valcarcel, J.
Pereira, C. M.
Silva, A. F.
author_sort Santos, P. R. M.
collection PubMed
description Optosensing chitosan-based membranes have been applied for the detection of heavy metals, especially in drinking water. The novelty of this study is based on the use of sulphated polysaccharides, in such optosensing membranes, aiming at an improved analytical performance. The sulphated polysaccharides, such as ulvan, fucoidan and chondroitin sulfate, were extracted from by-products and wastes of marine-related activities. The membranes were developed for the analysis of aluminum. The variation in the visible absorbance of the sensor membranes after the contact between the chromophore and the aluminum cation was studied. The membranes containing sulphated polysaccharides showed improved signals when compared to the chitosan-only membrane. As for the detection limits for the membranes containing ulvan, fucoidan and chondroitin sulfate, 0.17 mg L(−1), 0.21 mg L(−1) and 0.36 mg L(−1) were obtained, respectively. The values were much lower than that obtained for the chitosan-only membrane, 0.52 mg L(−1), which shows the improvement obtained from the sulphated polysaccharides. The results were obtained with the presence of CTAB in analysis solution, which forms a ternary complex with the aluminum cation and the chromophore. This resulted in an hyperchromic and batochromic shift in the absorption band. When in the presence of this surfactant, the membranes showed lower detection limits and higher selectivity.
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spelling pubmed-93703712022-08-12 Improved Metal Cation Optosensing Membranes through the Incorporation of Sulphated Polysaccharides Santos, P. R. M. Johny, A. Silva, C. Q. Azenha, M. A. Vázquez, J. A. Valcarcel, J. Pereira, C. M. Silva, A. F. Molecules Article Optosensing chitosan-based membranes have been applied for the detection of heavy metals, especially in drinking water. The novelty of this study is based on the use of sulphated polysaccharides, in such optosensing membranes, aiming at an improved analytical performance. The sulphated polysaccharides, such as ulvan, fucoidan and chondroitin sulfate, were extracted from by-products and wastes of marine-related activities. The membranes were developed for the analysis of aluminum. The variation in the visible absorbance of the sensor membranes after the contact between the chromophore and the aluminum cation was studied. The membranes containing sulphated polysaccharides showed improved signals when compared to the chitosan-only membrane. As for the detection limits for the membranes containing ulvan, fucoidan and chondroitin sulfate, 0.17 mg L(−1), 0.21 mg L(−1) and 0.36 mg L(−1) were obtained, respectively. The values were much lower than that obtained for the chitosan-only membrane, 0.52 mg L(−1), which shows the improvement obtained from the sulphated polysaccharides. The results were obtained with the presence of CTAB in analysis solution, which forms a ternary complex with the aluminum cation and the chromophore. This resulted in an hyperchromic and batochromic shift in the absorption band. When in the presence of this surfactant, the membranes showed lower detection limits and higher selectivity. MDPI 2022-08-07 /pmc/articles/PMC9370371/ /pubmed/35956976 http://dx.doi.org/10.3390/molecules27155026 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
Santos, P. R. M.
Johny, A.
Silva, C. Q.
Azenha, M. A.
Vázquez, J. A.
Valcarcel, J.
Pereira, C. M.
Silva, A. F.
Improved Metal Cation Optosensing Membranes through the Incorporation of Sulphated Polysaccharides
title Improved Metal Cation Optosensing Membranes through the Incorporation of Sulphated Polysaccharides
title_full Improved Metal Cation Optosensing Membranes through the Incorporation of Sulphated Polysaccharides
title_fullStr Improved Metal Cation Optosensing Membranes through the Incorporation of Sulphated Polysaccharides
title_full_unstemmed Improved Metal Cation Optosensing Membranes through the Incorporation of Sulphated Polysaccharides
title_short Improved Metal Cation Optosensing Membranes through the Incorporation of Sulphated Polysaccharides
title_sort improved metal cation optosensing membranes through the incorporation of sulphated polysaccharides
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9370371/
https://www.ncbi.nlm.nih.gov/pubmed/35956976
http://dx.doi.org/10.3390/molecules27155026
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