A dual-response ratiometric fluorescent sensor by europium-doped silicon nanoparticles for fluorescent and smartphone imaging detection of tetracycline

Given the threat to human health posed by the abuse of tetracycline (TC), the development of a portable, on-site methods for highly sensitive and rapid TC detection is crucial. In this work, we initially synthesized europium-doped silicon nanoparticles (SiEuNPs) through a facile one-pot microwave-as...

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Veröffentlicht in:Talanta (Oxford) 2024-10, Vol.278, p.126432, Article 126432
Hauptverfasser: Ren, Xing-Hui, Ma, Zi-Bo, Zhang, Hao-Rui, He, Xi-Wen, Li, Wen-You, Zhang, Yu-Kui
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Sprache:eng
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Zusammenfassung:Given the threat to human health posed by the abuse of tetracycline (TC), the development of a portable, on-site methods for highly sensitive and rapid TC detection is crucial. In this work, we initially synthesized europium-doped silicon nanoparticles (SiEuNPs) through a facile one-pot microwave-assisted method. Due to its blue-red dual fluorescence emission (465 nm/621 nm), which was respectively attributed to the silicon nanoparticles and Eu3+, SiEuNPs were designed as a ratiometric fluorescent sensor for TC detection. For the dual-signal reverse response mechanism: TC quenched the blue emission from silicon nanoparticles through inner filter effect (IFE), and enhanced the red emission through “antenna effect” (AE) between TC and Eu3+, the nanoprobe was able to detect TC within a range of 0.2–10 μM with a limit of detection (LOD) of 10.7 nM. Notably, the equilibrium detection time was only 1 min, achieving rapid TC detection. Furthermore, TC was also measured in real samples (tap water, milk and honey) with recoveries ranging from 95.7 % to 117.0 %. More importantly, a portable smartphone-assisted on-site detection platform was developed, enabling real-time qualitative identification and semi-quantitative analysis of TC based on fluorescence color changes. This work not only provided a novel doped silicon nanoparticles strategy, but also constructed a ratiometric sensing platform with dual-signal reverse response for intuitive and real-time TC detection. [Display omitted] •Eu-doped silicon nanoparticle was synthesized by one-step microwave-assisted method.•SiEuNPs exhibited dual-emission fluorescence for rapid, sensitive TC detection.•The SiEuNPs detected TC via a mechanism involving IFE and AE.•A portable smartphone-assisted on-site detection platform was developed.
ISSN:0039-9140
1873-3573
1873-3573
DOI:10.1016/j.talanta.2024.126432