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A modified selective optical sensor for selenium determination based on incorporating xylenol orange in a poly(vinyl chloride) membrane

A novel optical sensor has been developed to measure selenium ions. The sensor membrane was created by mixing xylenol orange (XO) and sodium tetraphenylborate (NaTPB) with a plasticized poly(vinyl chloride) membrane that contained o-nitrophenyl octyl ether (o-NPOE) as a plasticizer. XO was previousl...

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Autores principales: Hassan, Abeer M. E., Alshehri, Reem F., El-Bahy, Salah M., Amin, Alaa S., Aish, Mai
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/PMC10680018/
https://www.ncbi.nlm.nih.gov/pubmed/38024967
http://dx.doi.org/10.1039/d3ra05308c
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author Hassan, Abeer M. E.
Alshehri, Reem F.
El-Bahy, Salah M.
Amin, Alaa S.
Aish, Mai
author_facet Hassan, Abeer M. E.
Alshehri, Reem F.
El-Bahy, Salah M.
Amin, Alaa S.
Aish, Mai
author_sort Hassan, Abeer M. E.
collection PubMed
description A novel optical sensor has been developed to measure selenium ions. The sensor membrane was created by mixing xylenol orange (XO) and sodium tetraphenylborate (NaTPB) with a plasticized poly(vinyl chloride) membrane that contained o-nitrophenyl octyl ether (o-NPOE) as a plasticizer. XO was previously established for use in a colorimeter to measure selenium in water and other media. At pH 6.6, the color of the detecting membrane changed from orange to pink when in contact with Se(4+) ions. Various variables affecting the uptake efficiency were evaluated and optimized. Under optimum conditions (i.e., 30% PVC, 60% o-NPOE, and 5.0% of both XO and NaTPB for 5.0 min as the response time), the proposed sensor displayed a linear range 10–175 ng mL(−1) with the detection and quantification limits of 3.0 and 10 ng mL(−1), respectively. Also, the precision (RSD%) was better than 2.2% for six replicate determinations of 100 ng mL(−1) Se(4+) in various membranes. For the detection of Se(4+), the selectivity of the sensor membrane was investigated for a number of possible interfering inorganic cations, but no appreciable interference was found. With the use of a 0.3 M HCl solution, the sensor was successfully restored, and the response that may have been reversible and reproducible exhibited an RSD% of less than 2.0%. The sensor has been successfully used to analyze Se(4+) ions in environmental and biological materials.
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spelling pubmed-106800182023-11-27 A modified selective optical sensor for selenium determination based on incorporating xylenol orange in a poly(vinyl chloride) membrane Hassan, Abeer M. E. Alshehri, Reem F. El-Bahy, Salah M. Amin, Alaa S. Aish, Mai RSC Adv Chemistry A novel optical sensor has been developed to measure selenium ions. The sensor membrane was created by mixing xylenol orange (XO) and sodium tetraphenylborate (NaTPB) with a plasticized poly(vinyl chloride) membrane that contained o-nitrophenyl octyl ether (o-NPOE) as a plasticizer. XO was previously established for use in a colorimeter to measure selenium in water and other media. At pH 6.6, the color of the detecting membrane changed from orange to pink when in contact with Se(4+) ions. Various variables affecting the uptake efficiency were evaluated and optimized. Under optimum conditions (i.e., 30% PVC, 60% o-NPOE, and 5.0% of both XO and NaTPB for 5.0 min as the response time), the proposed sensor displayed a linear range 10–175 ng mL(−1) with the detection and quantification limits of 3.0 and 10 ng mL(−1), respectively. Also, the precision (RSD%) was better than 2.2% for six replicate determinations of 100 ng mL(−1) Se(4+) in various membranes. For the detection of Se(4+), the selectivity of the sensor membrane was investigated for a number of possible interfering inorganic cations, but no appreciable interference was found. With the use of a 0.3 M HCl solution, the sensor was successfully restored, and the response that may have been reversible and reproducible exhibited an RSD% of less than 2.0%. The sensor has been successfully used to analyze Se(4+) ions in environmental and biological materials. The Royal Society of Chemistry 2023-11-27 /pmc/articles/PMC10680018/ /pubmed/38024967 http://dx.doi.org/10.1039/d3ra05308c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Hassan, Abeer M. E.
Alshehri, Reem F.
El-Bahy, Salah M.
Amin, Alaa S.
Aish, Mai
A modified selective optical sensor for selenium determination based on incorporating xylenol orange in a poly(vinyl chloride) membrane
title A modified selective optical sensor for selenium determination based on incorporating xylenol orange in a poly(vinyl chloride) membrane
title_full A modified selective optical sensor for selenium determination based on incorporating xylenol orange in a poly(vinyl chloride) membrane
title_fullStr A modified selective optical sensor for selenium determination based on incorporating xylenol orange in a poly(vinyl chloride) membrane
title_full_unstemmed A modified selective optical sensor for selenium determination based on incorporating xylenol orange in a poly(vinyl chloride) membrane
title_short A modified selective optical sensor for selenium determination based on incorporating xylenol orange in a poly(vinyl chloride) membrane
title_sort modified selective optical sensor for selenium determination based on incorporating xylenol orange in a poly(vinyl chloride) membrane
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10680018/
https://www.ncbi.nlm.nih.gov/pubmed/38024967
http://dx.doi.org/10.1039/d3ra05308c
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