Silicon-based fluorescent platforms for copper(ii) detection in water

Oggianu M.;Figus C.;Monni N.;Marongiu D.;Saba M.;Mura A.;Bongiovanni G.;Caltagirone C.;Lippolis V.;Cannas C.;Mercuri M. L.;Quochi F.
2021-01-01

Abstract

The potential of silicon-based fluorescent platforms for the detection of trace toxic metal ions was investigated in an aqueous environment. To this aim, silicon chips were first functionalized with amino groups, and fluorescein organic dyes, used as sensing molecules, were then covalently linked to the surface via formation of thiourea groups. The obtained hybrid heterostructures exhibited high sensitivity and selectivity towards copper(ii), a limit of detection compatible with the recommended upper limits for copper in drinking water, and good reversibility using a standard metal-chelating agent. The fluorophore-analyte interaction mechanism at the basis of the reported fluorescence quenching, as well as the potential of performance improvement, were also studied. The herein presented sensing architecture allows, in principle, tailoring of the selectivity towards other metal ions by proper fluorophore selection, and provides a favorable outlook for integration of fluorescent chemosensors with silicon photonics technology.
2021
copper detection
fluorescent platform
fluorophore-analyte interaction mechanism
Files in This Item:
File Size Format  
RSCAdvances2021.pdf

open access

Type: versione editoriale
Size 1.22 MB
Format Adobe PDF
1.22 MB Adobe PDF View/Open

Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.

Questionnaire and social

Share on:
Impostazioni cookie