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A novel nitrogen-doped carbon dots as “on-off-on” fluorescent sensor for ultrasensitive and visual quantitative detection of mercuric (II) and glutathione
A novel nitrogen-doped carbon dots (NCDs) was prepared composed of anhydrous citric acid and 2-amino-1-H-benzimidazole with solid state method. The XPS and FT-IR spectra indicate that lot of chelating groups such as -OH, -COOH and -NH2 are attached on the surface of NCDs. NCDs exhibited the characte...
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Published in: | Journal of environmental chemical engineering 2023-10, Vol.11 (5), p.110750, Article 110750 |
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Main Authors: | , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | A novel nitrogen-doped carbon dots (NCDs) was prepared composed of anhydrous citric acid and 2-amino-1-H-benzimidazole with solid state method. The XPS and FT-IR spectra indicate that lot of chelating groups such as -OH, -COOH and -NH2 are attached on the surface of NCDs. NCDs exhibited the characteristic fluorescence property and its fluorescence spectra gradually red-shifted with the increase of excitation wavelengths. The prepared NCDs in water solution has highly selective “turn-off” fluorescence response towards Hg2+ over the other metal ions and common anions with a low detection limit of 3.50 μM. Furthermore, NCDs presented the successive identification and detection capability, NCDs@Hg2+ displayed highly selective “turn-on” fluorescence response towards the bioactive glutathione (GSH) over the other amino acids with a low detection limit of 3.43 μM. The “turn-off” fluorescence of NCDs was caused by the selective coordination with Hg2+ through both static and dynamic quenching mechanisms, and the fluorescence recovery can be attributed to the removal of Hg2+ from the complex NCDs@Hg2+ by GSH. The hydrogel films containing NCDs and NCDs@Hg2+ can semi-quantitatively detect Hg2+ and GSH in micromolar level with naked eyes under UV lamp, respectively. In addition, the prepared NCDs have satisfactory recovery in detection of Hg2+ and GSH in practical water samples and human serum samples. This work proves the N-doped carbon NCDs are efficient material as fluorescence chemosensors to identify and detect metal ions and bioactive substances in practical samples.
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•A novel nitrogen-doped carbon dots (NCDs) by solid state method were prepared.•NCDs displayed selective “turn-off” fluorescence response towards Hg2+ in water.•NCDs@Hg2+ exhibited selective “turn-on” fluorescence response towards GSH in water.•NCDs can detect Hg2+ and GSH in the simple hydrogel film mode with the naked eyes.•The fluorescence changes are due to formation and dissociation of NCDs@Hg2+complex. |
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ISSN: | 2213-3437 |
DOI: | 10.1016/j.jece.2023.110750 |