4.7 Article

A turn-on fluorescent nanoprobe based on N-doped silicon quantum dots for rapid determination of glyphosate

Journal

MICROCHIMICA ACTA
Volume 187, Issue 6, Pages -

Publisher

SPRINGER WIEN
DOI: 10.1007/s00604-020-04304-9

Keywords

N-SiQDs; Copper ions; Fluorescence determination; Organophosphorus pesticide; Static quenching; Diamine groups; DAMO

Funding

  1. National Natural Science Foundation of China [31171684]
  2. Graduate Research and Innovation Foundation of Chongqing, China [CYB18026]
  3. Solid-state Fermentation Resource Utilization Key Laboratory of Sichuan Province [2018GTJ010]
  4. Chongqing Science and Technology Commission [CSTC2015shmszxl20097, CSTC2018jcyjAX0062]
  5. Fundamental Research Funds for the Central Universities [2019CDYGZD007]
  6. Brew Microorganisms Technology and Application of Key Laboratory Project in Sichuan Province [NJ2018-01]
  7. Chongqing Graduate Tutor Team Construction Project
  8. Chongqing Municipal Training Program of Innovation and Entrepreneurship for Undergraduates [S201910611436]
  9. Chongqing University

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N-Doped silicon quantum dots (N-SiQD) were synthesized using N-[3-(trimethoxysily)propyl]-ethylenediamine and citric acid as silicon source and reduction agent, respectively. The N-SiQD shows a strong blue fluorescence with a high quantum yield of about 53%. It is found that a selective static quenching process occurs between N-SiQDs and Cu2+. Glyphosate can inhibit this phenomenon and trigger the rapid fluorescence enhancement of the quenched N-SiQDs/Cu2+ system due to the specific interaction between Cu2+ and glyphosate. With such a design, a turn-on fluorescent nanoprobe based on N-SiQD/Cu2+ system was established for rapid determination of glyphosate. The determination signal of N-SiQD/Cu2+ was measured at the optimum emission wavelength of 460 nm after excitation at 360 nm. Under optimal conditions, the turn-on nanoprobe showed a linear relationship between fluorescent response and glyphosate concentrations in the range 0.1 to 1 mu g mL(-1). The limit of determination was calculated to 7.8 ng mL(-1) (3 sigma/S). Satisfactory recoveries were obtained in the determination of spiked water samples, indicating the potential use for environmental monitoring. Schematic representation of N-SiQD/Cu2+ system for glyphosate determination. Fluorescence quenching of N-SiQDs induced by copper ions and the succedent fluorescent turn on triggered by glyphosate

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