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Ratiometric determination of copper(II) using dually emitting Mn(II)-doped ZnS quantum dots as a fluorescent probe

  • Lifang He
  • , Zhijun Bao
  • , Kui Zhang
  • , Danting Yang
  • , Bingbing Sheng
  • , Rui Huang
  • , Ting Zhao
  • , Xiaochen Liang
  • , Xingjie Yang
  • , Annan Yang
  • , Cheng Zhang*
  • , Ping Cui*
  • , Juan Antonio Zapien
  • , Haibo Zhou*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

A ratiometric probe is described for the fluorometric determination of Cu(II) ions based on their quenching effect on the luminescence of dually-emitting quantum dots (QDs). ZnS QDs were doped with Mn(II) and subsequently modified with mercaptopropionic acid to give the QD probe which consists of a  sole fluorophore but has two emission peaks (at 430 and 590 nm under 310 nm excitation, respectively). On addition of Cu(II) ions, the 590 nm band is quenched while the 430 nm band exhibits a little change. The changes in the intensity ratios of the yellow and the purple bands increases linearly in the 0 to 3.0 μM Cu(II) concentration range, and the detection limit reached 14 nM. The QD probe was validated and successfully applied to the determination of Cu(II) in spiked real water samples.
Original languageEnglish
Article number511
JournalMikrochimica Acta
Volume185
Issue number11
Online published20 Oct 2018
DOIs
Publication statusPublished - Nov 2018

Research Keywords

  • Copper ions
  • Dual emissions
  • Fluorescence lifetime
  • Fluorometry
  • Mercaptopropionic acid
  • Quantum dots
  • Quenching
  • Zinc sulfide

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