Phosphineoxide-Chelated Europium(III) Nanoparticles for Ceftriaxone Detection.

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Title: Phosphineoxide-Chelated Europium(III) Nanoparticles for Ceftriaxone Detection.
Authors: Zairov, Rustem1,2 (AUTHOR) rustem@iopc.ru, Dovzhenko, Alexey1,2 (AUTHOR), Terekhova, Natalia1 (AUTHOR), Kornev, Timur1 (AUTHOR), Zhou, Ying3 (AUTHOR), Huang, Zeai3 (AUTHOR), Tatarinov, Dmitry1,2 (AUTHOR), Nizameeva, Guliya4 (AUTHOR), Fayzullin, Robert R.1 (AUTHOR), Gubaidullin, Aidar T.1 (AUTHOR), Salikhova, Taliya5 (AUTHOR), Enrichi, Francesco6,7 (AUTHOR), Mironov, Vladimir F.1 (AUTHOR), Mustafina, Asiya1 (AUTHOR)
Source: Nanomaterials (2079-4991). Feb2023, Vol. 13 Issue 3, p438. 15p.
Subjects: Ceftriaxone, Phosphine oxides, Europium, Phosphines, Colloid analysis, Nanoparticles, Aqueous solutions, Luminescence spectroscopy
Abstract: The present work demonstrates the optimization of the ligand structure in the series of bis(phosphine oxide) and β-ketophosphine oxide representatives for efficient coordination of Tb3+ and Eu3+ ions with the formation of the complexes exhibiting high Tb3+- and Eu3+-centered luminescence. The analysis of the stoichiometry and structure of the lanthanide complexes obtained using the XRD method reveals the great impact of the bridging group nature between two phosphine oxide moieties on the coordination mode of the ligands with Tb3+ and Eu3+ ions. The bridging imido-group facilitates the deprotonation of the imido- bis(phosphine oxide) ligand followed by the formation of tris-complexes. The spectral and PXRD analysis of the separated colloids indicates that the high stability of the tris-complexes provides their safe conversion into polystyrenesulfonate-stabilized colloids using the solvent exchange method. The red Eu3+-centered luminescence of the tris-complex exhibits the same specificity in the solutions and the colloids. The pronounced luminescent response on the antibiotic ceftriaxone allows for sensing the latter in aqueous solutions with an LOD value equal to 0.974 μM. [ABSTRACT FROM AUTHOR]
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Abstract:The present work demonstrates the optimization of the ligand structure in the series of bis(phosphine oxide) and β-ketophosphine oxide representatives for efficient coordination of Tb3+ and Eu3+ ions with the formation of the complexes exhibiting high Tb3+- and Eu3+-centered luminescence. The analysis of the stoichiometry and structure of the lanthanide complexes obtained using the XRD method reveals the great impact of the bridging group nature between two phosphine oxide moieties on the coordination mode of the ligands with Tb3+ and Eu3+ ions. The bridging imido-group facilitates the deprotonation of the imido- bis(phosphine oxide) ligand followed by the formation of tris-complexes. The spectral and PXRD analysis of the separated colloids indicates that the high stability of the tris-complexes provides their safe conversion into polystyrenesulfonate-stabilized colloids using the solvent exchange method. The red Eu3+-centered luminescence of the tris-complex exhibits the same specificity in the solutions and the colloids. The pronounced luminescent response on the antibiotic ceftriaxone allows for sensing the latter in aqueous solutions with an LOD value equal to 0.974 μM. [ABSTRACT FROM AUTHOR]
ISSN:20794991
DOI:10.3390/nano13030438