4.7 Article

Fluorescent probes for off-on highly sensitive detection of Hg2+ and L-cysteine based on nitrogen-doped carbon dots

期刊

TALANTA
卷 152, 期 -, 页码 288-300

出版社

ELSEVIER
DOI: 10.1016/j.talanta.2016.02.018

关键词

Nitrogen-doped carbon dots; Fluorescence detection; Hg2+; L-Cys; High selectivity; High sensitivity

资金

  1. National Natural Science Foundation of China [21176169]
  2. Shanxi Scholarship Council of China [2012-038]
  3. International Science AMP
  4. Technology Cooperation Program of China [2012DFR50460]
  5. Shanxi Provincial Key Innovative Research Team in Science and Technology [2015013002-10]

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Fluorescent nitrogen-doped carbon dots (NCDs) were synthesized by a facile, and low-cost one-step hydrothermal strategy using citric acid as carbon source and ammonia solution as nitrogen source for the first time. The obtained NCDs show stable blue fluorescence with a high quantum yield of 35.4%, along with the fluorescence lifetime of ca. 6.75 ns. Most importantly, Hg2+ can completely quench the fluorescence of NCDs as a result of the formation of a non-fluorescent stable NCDs-Hg2+ complex. Static fluorescence quenching towards Hg2+ is proved by the Stern-Volmer equation, ultraviolet-visible absorption spectra, temperature dependent quenching and fluorescence lifetime measurements. Subsequently, the fluorescence of the NCDs-Hg2+ system is completely recovered with the addition L-cysteine (L-Cys) owing to the dissociation of NCDs-Hg2+ complex to form a more stable Hg2+-L-Cys complex by Hg2+-S bonding. Therefore, such NCDs can be used as an effective fluorescent turn-off probe for rapid, rather highly selective and sensitive detection of Hg2+, with a limit of detection (LOD) as low as 1.48 nM and a linear detection range of 0-10 M. Interestingly, NCDs-Hg2+ system can be conveniently employed as a fluorescent turn-on sensor for highly selective and sensitive detection of L-Cys with a low LOD of 0.79 nM and a wide linear detection range of 0-50 M. Further, the sensitivity of NCDs to Hg2+ is preserved in tap water with a LOD of 1.65 nM and a linear detection range of 0-10 M. (C) 2016 Elsevier B.V. All rights reserved.

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