A novel oligo(N,O-donor) fluorescent probe possessed the CHEF effect for identification of aluminum ions in the environment

An oligo(N,O-donor) fluorescent probe SAS with high selectivity for Al 3+ in DMF: H 2 O (V/V, 9:1) Tris–HCl solution was designed and synthesized. That is to say, the increase of Al 3+ activates specific fluorescence of SAS with a strong fluorescent emissive peak at 539 nm, emitting a bright yellow...

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Veröffentlicht in:Chemical papers 2024-08, Vol.78 (12), p.7001-7013
Hauptverfasser: Sun, Yin-Xia, Li, Xiao-Xia, Gan, Lu-Lu, Du, Ming-Xia, Zhao, Biao, Li, Wen-Da, Li, Jin-Guo, Dong, Wen-Kui
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Sprache:eng
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Zusammenfassung:An oligo(N,O-donor) fluorescent probe SAS with high selectivity for Al 3+ in DMF: H 2 O (V/V, 9:1) Tris–HCl solution was designed and synthesized. That is to say, the increase of Al 3+ activates specific fluorescence of SAS with a strong fluorescent emissive peak at 539 nm, emitting a bright yellow fluorescence, and this long-wavelength fluorescence was characterized by high photostability and low background interference. The lower detection limit for the aluminum ions of the probe SAS was 6.61 × 10 –8 with higher sensitivity & selectivity. Fluorescence titration and density functional theory (DFT) calculations verified the recognition mechanism, and the chelating fluorescence caused by the coordination of metal ion Al 3+ enhanced the chelation fluorescence enhancement effect. SAS recognizes Al 3+ with an emission peak at 539 nm, and this long-wavelength fluorescent probe is characterized by high photostability and low background interference. This fluorescent probe SAS was shown to be useful for the detection of Al 3+ in real water samples with good recoveries. Graphical abstract An oligo(N,O-donor) fluorescent probe SAS with high selectivity for Al 3+ in DMF: H 2 O (9:1, V/V) Tris–HCl solution was designed and synthesized. The addition of Al 3+ excites the yellow fluorescence of SAS , which produces a strong fluorescence emission peak at 539 nm. The probe SAS was highly selective and sensitive for the detection of Al 3+ with the lowest detection limit of 6.61 × 10 –8 . Fluorescence titration and DFT calculations verified the recognition mechanism, and the chelating fluorescence generated by the coordination of metal ions Al 3+ enhanced the CHEF effect.
ISSN:0366-6352
2585-7290
1336-9075
DOI:10.1007/s11696-024-03582-4