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Carbon dots for real-time colorimetric/fluorescent dual-mode sensing ClO−/GSH

Hypochlorite (ClO−) and antioxidants have been reported closely correlated with oxidative stress and related diseases. In recent years, many probes, especially fluorescent and colorimetric probes, have been developed to detect ClO− and antioxidants. It is meaningful to develop probes which can be us...

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Bibliographic Details
Published in:Dyes and pigments 2022-10, Vol.206, p.110614, Article 110614
Main Authors: Li, Huiqing, Wei, Zhenni, Zuo, Xianwei, Chen, Hongli, Ren, Cuiling, Dong, Yalei, Chen, Xingguo
Format: Article
Language:English
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Summary:Hypochlorite (ClO−) and antioxidants have been reported closely correlated with oxidative stress and related diseases. In recent years, many probes, especially fluorescent and colorimetric probes, have been developed to detect ClO− and antioxidants. It is meaningful to develop probes which can be used to detect them in these two modes. Herein, a novel dual mode carbon dots (DM-CDs) which can rapidly respond to ClO− and antioxidants by both fluorescent and colorimetric mode were synthesized. GSH was chosen as model antioxidants to evaluate its detection performance. The fluorescence of DM-CDs can be quenched by ClO− and then recovered by GSH, so sensitive and accurate detection of ClO− and GSH can be achieved. Meanwhile, the colour variation of this system can be observed by naked eye and detected quantitatively by UV–Vis spectra. The excellent analytical performance of DM-CDs together with their good biocompatibility endow them with great feasibility in cell imaging and real-time detection of intracellular ClO− and GSH. [Display omitted] •An effective, sensitive, and selective dual mode (colorimetric/fluorescent) sensor was synthesized for ClO‾ and GSH.•The rapidly respond of DM-CDs to ClO‾ and antioxidants make it can be used in real-time detection.•The excellent analytical performance and biocompatibility endow·DM-CDs can be used in cell imaging and real-time detection of ClO‾ and GSH.
ISSN:0143-7208
1873-3743
DOI:10.1016/j.dyepig.2022.110614