研究目的
Designing new fluorescent sensor for detection of ascorbic acid in aqueous media.
研究成果
S,N-GQDs were successfully synthesized and applied as a photoluminescence probe for AA detection with a linear range of 10-500 μM and a detection limit of 1.2 μM. The sensor operates on an 'off-on' detection mode.
研究不足
The study does not mention the scalability of the synthesis method or the sensor's performance in complex biological matrices.
1:Experimental Design and Method Selection:
Hydrothermal method was used to synthesize S,N-GQDs using citric acid and thiourea as carbon and nitrogen-sulfur sources respectively.
2:Sample Selection and Data Sources:
Citric acid (
3:5%), ethylene diamine (99%), copper (Ⅱ) acetate, thiourea from Merck. List of Experimental Equipment and Materials:
Philips-X’PertPro X-ray diffractometer, Philips EM208S transmission electron microscope, Cary Eclipse fluorescence spectrophotometer.
4:Experimental Procedures and Operational Workflow:
1g citric acid and
5:2g thiourea were dissolved in 20 ml water, transferred into a Teflon lined stainless autoclave, heated to 160 oC for 8 hours. The product was centrifuged at 10000 rpm for 20 min. Data Analysis Methods:
Fluorescence intensity was measured at λem/λex = 448/360 nm.
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Cary Eclipse
fluorescence spectrophotometer
Agilent
Collecting photoluminescence spectra
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Philips-X’PertPro
X-ray diffractometer
Philips
Recording XRD patterns
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Philips EM208S
transmission electron microscope
Philips
Obtaining TEM images
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GC-2550TG
chemical analyzer
Teif Gostar Faraz Company
Chemical analyses
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