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Sustainable non-plasticized polymer inclusion membrane containing an immobilizing optode ligand for in situ ultra-sensitive colorimetric measurement and pre-concentration of beryllium ions in environmental and biological matrices

[Display omitted] •An innovative optode comprising three parts for sensing Be2+ levels in environmental and biological matrices.•The optode composed of polyvinyl chloride base, dihydroxyphenyl-diazenyl ligand, and aliquat 336 as an extractant.•The application of reused polymer inclusion membrane (PI...

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Bibliographic Details
Published in:Journal of photochemistry and photobiology. A, Chemistry. Chemistry., 2024-07, Vol.452, p.115624, Article 115624
Main Authors: Hassan, Abeer M.E., Amin, Alaa S., El-Maghrabey, Mahmoud, El Hamd, Mohamed A., Mahdi, Wael A., Alshehri, Sultan, Batakoushy, Hany A.
Format: Article
Language:English
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Summary:[Display omitted] •An innovative optode comprising three parts for sensing Be2+ levels in environmental and biological matrices.•The optode composed of polyvinyl chloride base, dihydroxyphenyl-diazenyl ligand, and aliquat 336 as an extractant.•The application of reused polymer inclusion membrane (PIM) in the evaluation of Be2+ was examined.•The used instrument, visible spectrophotometry, is convenient and available in all quality control labs.•The optode instrument exhibits complete reversibility and can be easily restored using a NaF (0.5 mol/L) solution. Beryllium (Be2+) is a type of alkaline earth-divalent metal that enters many strategic industries. The work environment limits concentrations of beryllium is in the range of 0.01 – 1.0 μg mL−1 (ppm), where concentrations exceeding 5.0 ppm of Be2+ lead to acute toxicity, causing pulmonary edema and chemical pneumonitis. Herein, Be2+ was measured selectively in situ down to ultralow concentration levels utilizing a fabricated sensitive polymer inclusion membrane (PIM) as an immobilizing non-plasticized colorimetric optical sensor (optode). The PIM-sensitive optode has been created using an encapsulation method with polyvinyl chloride (PVC) as a polymer base, an (E)-6-(4-((2,5-dihydroxyphenyl)diazenyl)phenyl)-2-oxo-4-phenyl-1,2-dihydropyridine-3-carbonitrile (DDP-OPDC) as a selective ligand, and Aliquat 336 as an enhancer extractant. The linear dynamic range of the various standard measurements ranged between 5.0 and 145 ng mL−1 with excellent sensitivity down to 1.6 ng mL−1. Moreover, the manufactured optode was reusable and had sustainable mechanical strength. The method has also successfully quantified Be2+ in the livers and muscles of bovine, chicken, and pork (recovery %; 98.0–––102.3 %) in addition to Be2+ analysis in contaminated tap, mineral, and well water (recovery %; in the range of 93.6–––103.3 %). With an assessment duration of 10 min at a maximum absorbance of 622 nm, the colorimetric evaluations of Be2+ in various samples (water and biological) were rapid, reliable, and reproducible. Furthermore, the obtained results by the developed optode matched excellently those obtained by the comparison atomic absorption spectrometry method.
ISSN:1010-6030
1873-2666
DOI:10.1016/j.jphotochem.2024.115624