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Phenothiazine-based multifunctional fluorescent probe for one-site rapid detection of hydrazine in cells, soil, water samples and test strip

Hydrazine is widely used as a wide range of industrial chemical reagents. Because of its toxicity and explosiveness, it poses a serious threat to human health and ecological security. Therefore, it is of great significance to develop a real-time tracing method for hydrazine. Here, a novel turn-on fl...

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Bibliographic Details
Published in:Dyes and pigments 2023-05, Vol.213, p.111164, Article 111164
Main Authors: Huang, Yongfei, Liang, Junping, Fan, Zhefeng
Format: Article
Language:English
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Summary:Hydrazine is widely used as a wide range of industrial chemical reagents. Because of its toxicity and explosiveness, it poses a serious threat to human health and ecological security. Therefore, it is of great significance to develop a real-time tracing method for hydrazine. Here, a novel turn-on fluorescent probe SXNU-1 for the detection of hydrazine was synthesized based on phenothiazine. SXNU-1 showed excellent selectivity toward hydrazine over various competitive species. Vinyl group with cyano and ethylacetate groups in SXNU-1 could react with hydrazine to form Schiff's base, showing bright green fluorescence. The response mechanism was verified by theoretical calculation, 1H NMR titration and HRMS. In addition, SXNU-1 can determine hydrazine in soil, water samples and test strip. Because SXNU-1 has good cell membrane permeability, it can monitor different concentrations of hydrazine in HeLa cells. Therefore, we believe that SXNU-1 has great potential in the analysis and monitoring of environmental pollutants. [Display omitted] •Phenothiazine-based multifunctional fluorescent probe was synthesized by a simple condensation reaction.•The probe showed high selectivity and fast response to hydrazine in DMSO/PBS (1/1, v/v, pH = 7.4) system.•The probe with excellent performance showed good applications in cells, soil, water samples and test strip detection.
ISSN:0143-7208
1873-3743
DOI:10.1016/j.dyepig.2023.111164