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Ratiometric fluorescence probe based on boric acid-modified carbon dots and alizarin red for sensitive and rapid detection of glyphosate
by
Hu, Xiaogang
, Wang, Li
, Lin, Bixia
, Yu, Ying
, Yang, Jingqi
, Wang, Xinru
, Guo, Manli
, Cao, Yujuan
in
Acids
/ Alizarin
/ Analytical Chemistry
/ Anthraquinones - chemistry
/ Boric acid
/ Boric Acids - chemistry
/ Carbon
/ Carbon - chemistry
/ Carbon dots
/ Characterization and Evaluation of Materials
/ Chemistry
/ Chemistry and Materials Science
/ Chromatography
/ Copper
/ Copper - chemistry
/ Cucumis sativus - chemistry
/ Fluorescence
/ Fluorescent Dyes - chemistry
/ Fluorescent indicators
/ Food Contamination - analysis
/ Fourier transforms
/ Glycine - analogs & derivatives
/ Glycine - analysis
/ Glycine - chemistry
/ Glyphosate
/ Herbicides - analysis
/ High performance liquid chromatography
/ Investigations
/ Limit of Detection
/ Microengineering
/ Nanochemistry
/ Nanotechnology
/ Pesticides policy
/ Quantum Dots - chemistry
/ Residues
/ Spectrometry, Fluorescence - methods
/ Water Pollutants, Chemical - analysis
2024
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Ratiometric fluorescence probe based on boric acid-modified carbon dots and alizarin red for sensitive and rapid detection of glyphosate
by
Hu, Xiaogang
, Wang, Li
, Lin, Bixia
, Yu, Ying
, Yang, Jingqi
, Wang, Xinru
, Guo, Manli
, Cao, Yujuan
in
Acids
/ Alizarin
/ Analytical Chemistry
/ Anthraquinones - chemistry
/ Boric acid
/ Boric Acids - chemistry
/ Carbon
/ Carbon - chemistry
/ Carbon dots
/ Characterization and Evaluation of Materials
/ Chemistry
/ Chemistry and Materials Science
/ Chromatography
/ Copper
/ Copper - chemistry
/ Cucumis sativus - chemistry
/ Fluorescence
/ Fluorescent Dyes - chemistry
/ Fluorescent indicators
/ Food Contamination - analysis
/ Fourier transforms
/ Glycine - analogs & derivatives
/ Glycine - analysis
/ Glycine - chemistry
/ Glyphosate
/ Herbicides - analysis
/ High performance liquid chromatography
/ Investigations
/ Limit of Detection
/ Microengineering
/ Nanochemistry
/ Nanotechnology
/ Pesticides policy
/ Quantum Dots - chemistry
/ Residues
/ Spectrometry, Fluorescence - methods
/ Water Pollutants, Chemical - analysis
2024
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Ratiometric fluorescence probe based on boric acid-modified carbon dots and alizarin red for sensitive and rapid detection of glyphosate
by
Hu, Xiaogang
, Wang, Li
, Lin, Bixia
, Yu, Ying
, Yang, Jingqi
, Wang, Xinru
, Guo, Manli
, Cao, Yujuan
in
Acids
/ Alizarin
/ Analytical Chemistry
/ Anthraquinones - chemistry
/ Boric acid
/ Boric Acids - chemistry
/ Carbon
/ Carbon - chemistry
/ Carbon dots
/ Characterization and Evaluation of Materials
/ Chemistry
/ Chemistry and Materials Science
/ Chromatography
/ Copper
/ Copper - chemistry
/ Cucumis sativus - chemistry
/ Fluorescence
/ Fluorescent Dyes - chemistry
/ Fluorescent indicators
/ Food Contamination - analysis
/ Fourier transforms
/ Glycine - analogs & derivatives
/ Glycine - analysis
/ Glycine - chemistry
/ Glyphosate
/ Herbicides - analysis
/ High performance liquid chromatography
/ Investigations
/ Limit of Detection
/ Microengineering
/ Nanochemistry
/ Nanotechnology
/ Pesticides policy
/ Quantum Dots - chemistry
/ Residues
/ Spectrometry, Fluorescence - methods
/ Water Pollutants, Chemical - analysis
2024
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Ratiometric fluorescence probe based on boric acid-modified carbon dots and alizarin red for sensitive and rapid detection of glyphosate
Journal Article
Ratiometric fluorescence probe based on boric acid-modified carbon dots and alizarin red for sensitive and rapid detection of glyphosate
2024
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Overview
By combining boric acid-modified carbon dots (
p
-CDs) and alizarin red (ARS), a double emission probe
p
-CDs@ARS with fluorescence at 410 nm and 600 nm is designed for the detection of glyphosate. When Cu
2+
is added, it binds with ARS to cause ARS release from
p
-CDs@ARS, which decreases the fluorescence at 600 nm. However, in the presence of glyphosate, glyphosate competes to the binding of Cu
2+
, releasing ARS to bind with
p
-CDs again. Therefore, the fluorescence of 600 nm recovers. Based on this, the fluorescence of 410 nm and 600 nm act as the reference and response signal, respectively, achieving the ratiometric fluorescence detection of glyphosate. The linear range of glyphosate detection is 0.5–50 µM with a limit of detection at 0.37 µM which is well below the maximum residue limit for glyphosate in food. When the probe is used to detect the glyphosate residue in Pearl River water and cucumber, the detection results are well consistent with those detected by HPLC. The established method based on
p
-CDs@ARS has the advantages that the assembly of ratiometric fluorescence probe is simple, and the detection speed is fast. Additionally, a typical INHIBIT logical system has been successfully constructed based on glyphosate, Cu
2+
, and the fluorescence signal of
p
-CDs@ARS.
Graphical Abstract
Publisher
Springer Vienna,Springer,Springer Nature B.V
Subject
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