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From pair to single: sole fluorophore for ratiometric sensing by dual-emitting quantum dots.(Report)

The article discusses the use of intrinsic dual-emitting doped ZnS:[Mn.sup.2+] quantum dots as sole fluorophore for ratiometric sensing. The ratiometric signals are produced by three kinds of modulation modes, electron transfer, energy transfer, and chemical reaction, respectively, and compared with... Full description

Journal Title: Analytical Chemistry July 1, 2014, Vol.86(13), p.6188(4)
Main Author: Linlin Lu
Other Authors: Yunsheng Xia , Guang Yan
Format: Electronic Article Electronic Article
Language: English
Subjects:
ID: ISSN: 0003-2700
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recordid: gale_ofa378147136
title: From pair to single: sole fluorophore for ratiometric sensing by dual-emitting quantum dots.(Report)
format: Article
creator:
  • Linlin Lu
  • Yunsheng Xia
  • Guang Yan
subjects:
  • Quantum Dots – Analysis
  • Fluoropolymers – Chemical Properties
  • Fluoropolymers – Research
ispartof: Analytical Chemistry, July 1, 2014, Vol.86(13), p.6188(4)
description: The article discusses the use of intrinsic dual-emitting doped ZnS:[Mn.sup.2+] quantum dots as sole fluorophore for ratiometric sensing. The ratiometric signals are produced by three kinds of modulation modes, electron transfer, energy transfer, and chemical reaction, respectively, and compared with a conventional QD-based pair-fluorophore system; this single fluorophore ratiometric sensing will substantially simplify the design of ratiometric sensing.
language: eng
source:
identifier: ISSN: 0003-2700
fulltext: no_fulltext
issn:
  • 0003-2700
  • 00032700
url: Link


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titleFrom pair to single: sole fluorophore for ratiometric sensing by dual-emitting quantum dots.(Report)
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subjectQuantum Dots – Analysis ; Fluoropolymers – Chemical Properties ; Fluoropolymers – Research
descriptionThe article discusses the use of intrinsic dual-emitting doped ZnS:[Mn.sup.2+] quantum dots as sole fluorophore for ratiometric sensing. The ratiometric signals are produced by three kinds of modulation modes, electron transfer, energy transfer, and chemical reaction, respectively, and compared with a conventional QD-based pair-fluorophore system; this single fluorophore ratiometric sensing will substantially simplify the design of ratiometric sensing.
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titleFrom pair to single: sole fluorophore for ratiometric sensing by dual-emitting quantum dots.(Report)
descriptionThe article discusses the use of intrinsic dual-emitting doped ZnS:[Mn.sup.2+] quantum dots as sole fluorophore for ratiometric sensing. The ratiometric signals are produced by three kinds of modulation modes, electron transfer, energy transfer, and chemical reaction, respectively, and compared with a conventional QD-based pair-fluorophore system; this single fluorophore ratiometric sensing will substantially simplify the design of ratiometric sensing.
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abstractThe article discusses the use of intrinsic dual-emitting doped ZnS:[Mn.sup.2+] quantum dots as sole fluorophore for ratiometric sensing. The ratiometric signals are produced by three kinds of modulation modes, electron transfer, energy transfer, and chemical reaction, respectively, and compared with a conventional QD-based pair-fluorophore system; this single fluorophore ratiometric sensing will substantially simplify the design of ratiometric sensing.
pubAmerican Chemical Society
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date2014-07-01