研究目的
To develop a rapid, stable, and sensitive detection method for diethylstilbestrol (DES) using a novel molecularly imprinted electrochemiluminescence (MIP-ECL) sensor based on graphene/CdTe@ZnS quantum dots as luminescent probes.
研究成果
The developed MIP-ECL sensor based on graphene/CdTe@ZnS quantum dots offers a highly sensitive, selective, and cost-effective method for the detection of DES in environmental and food samples. The sensor demonstrates excellent performance with a wide linear range, low detection limit, and good recoveries in real sample analysis.
研究不足
The study does not discuss the potential interference from complex matrices in real samples extensively. The long-term stability of the sensor under various environmental conditions could be further investigated.
1:Experimental Design and Method Selection
The sensor was fabricated by immobilizing CdTe@ZnS/reduced-graphene oxide (r-GO) composite on a glassy carbon electrode (GCE) surface, followed by covering with MIPs film with specific cavities for DES. The ECL intensity was measured based on the obstruction of ECL signals by DES molecules enriched on MIP film.
2:Sample Selection and Data Sources
DES stock solution of 0.1 mol/L was prepared in ethanol. Lake water and milk samples were used for real sample analysis.
3:List of Experimental Equipment and Materials
Glassy carbon electrode (GCE), CdTe@ZnS QDs, reduced graphene oxide (r-GO), molecularly imprinted polymers (MIPs), K2S2O8 as coreactant.
4:Experimental Procedures and Operational Workflow
The sensor was assembled by modifying GCE with CdTe@ZnS/r-GO composite, followed by MIPs film coating. ECL measurements were conducted in PBS containing K2S2O8. DES was detected based on the quenching of ECL signal.
5:Data Analysis Methods
The logarithm of the quenched ECL intensity versus the logarithm of the DES concentration was used for quantitative analysis.
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Transmission electron microscope
JEOL 2100
Hitachi
Characterization of nanoparticle morphology
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Field emission scanning electron microscope
SU–8010
Hitachi
Surface morphology analysis
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Atomic force microscope
AFM-5500M
Hitachi
3D surface topography analysis
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Ultraviolet–visible spectrophotometer
UV–2450
Shimadzu
Absorption spectra measurement
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Fluorescent spectrophotometer
F–4600
Hitachi
Fluorescence emission spectra measurement
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High performance liquid chromatography
Model 1260
Agilent Technologies, Inc.
Quantitative analysis of DES
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Glassy carbon electrode
GCE
Working electrode for electrochemical measurements
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CdTe@ZnS quantum dots
Luminescent probes for ECL signal enhancement
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Reduced graphene oxide
r-GO
Electrode material for signal amplification
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Electrochemiluminescence analyzer
MPI-A
Xi’an Remax Electronic Science & Technology Co. Ltd.
Measurement of ECL signals
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