研究目的
Investigating the synthesis of highly fluorescent nitrogen-doped graphene quantum dots (N-GQDs) for effective detection of ferric ions and as fluorescent ink.
研究成果
The synthesized N-GQDs exhibit bright blue fluorescence, excellent stability, and pH-sensitive properties, making them effective for Fe3+ detection and potential use as fluorescent ink. The method provides a foundation for developing high-performance metal ion detection sensors.
研究不足
The synthesis method may require optimization for higher quantum yields. The detection method's sensitivity and selectivity in complex environments need further validation.
1:Experimental Design and Method Selection
N-GQDs were synthesized through microwave heating using sodium citrate and triethanolamine as raw materials. The method is faster, simpler, and more efficient compared to traditional methods.
2:Sample Selection and Data Sources
Sodium citrate and triethanolamine were used as raw materials. The products were characterized using UV-vis spectrophotometry, fluorescence spectrophotometry, TEM, FT-IR, XPS, and AFM.
3:List of Experimental Equipment and Materials
Domestic microwave oven (Galanz, 750 W), Hitachi U-2900 UV-vis spectrophotometer, Hitachi F-4600 fluorescence spectrophotometer, JEOL-2100F transmission electron microscope, Nicolet Avatar 360 FT-IR spectrophotometer, Thermo Scientific ESCALab 250Xi XPS, Edinburgh Instruments FLS980 fluorescence spectrophotometer.
4:Experimental Procedures and Operational Workflow
2.0 g of sodium citrate and 10 mL of triethanolamine were mixed, stirred for 3 h, and heated in a microwave oven for 2 min. The products were centrifuged, and the upper liquid was collected and dialyzed.
5:Data Analysis Methods
Fluorescence intensity was measured to determine the quenching efficiency by Fe3+. The Stern-Volmer equation was used to understand the quenching process.
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Fluorescence spectrophotometer
FLS980
Edinburgh Instruments
Measuring the fluorescence lifetime of N-GQDs.
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UV-vis spectrophotometer
U-2900
Hitachi
Recording UV-vis absorption spectra of the as-prepared N-GQDs.
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Fluorescence spectrophotometer
F-4600
Hitachi
Recording fluorescence spectrum of the as-prepared N-GQDs.
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Transmission electron microscope
JEOL-2100F
JEOL
Probing the surface morphology and assessing the average diameter of N-GQDs.
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FT-IR spectrophotometer
Nicolet Avatar 360
Thermo Fisher Scientific
Characterizing Fourier transform infrared spectra of N-GQDs.
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X-ray photoelectron spectroscopy
ESCALab 250Xi
Thermo Scientific
Collecting XPS data of N-GQDs.
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Domestic microwave oven
750 W
Galanz
Heating the mixture of sodium citrate and triethanolamine for synthesis of N-GQDs.
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