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Contamination- and Perturbation-Free Fluorescent Monitoring of Zn<sup>2+</sup> in Suspensions Using Crown Ether-Functionalized Magnetic Nanoparticles
oleh: Panna Vezse, Ádám Golcs, Tünde Tóth, Péter Huszthy
Format: | Article |
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Diterbitkan: | MDPI AG 2023-10-01 |
Deskripsi
This study aims to introduce a fluorescence-based chemosensing method for Zn<sup>2+</sup> in aqueous suspensions and untreated surface waters, conditions which generally hinder the application of conventional optochemical sensing platforms. A macrocyclic fluoroionophore was covalently bonded to a silica-coated magnetic nanoparticle and applied according to a predetermined protocol for analyzing trace amounts of Zn<sup>2+</sup> under rarely investigated conditions. Utilizing the reversible complexation of the immobilized fluoroionophore, rapid regeneration was carried out via simple acidification after the magnetic-assisted solid-phase extraction of the particles. Forming inclusion complexes with Zn<sup>2+</sup> with the receptor units of the particles leads to a significant enhancement in fluorescence intensity at 370 nm, above the detection limit of 5 ppb, with a dynamic linear range of quantification of 15–3000 ppb in a pH range of 5.5–7.5. Practical applicability was confirmed by analyzing untreated river water and an aqueous suspension of pumpkin seed flour as real and relevant heterogeneous multicomponent samples of predetermined sample composition and natural Zn<sup>2+</sup> content. Our practical approach aims to broaden the applicability range of optochemical sensing platforms for Zn<sup>2+</sup>.