研究目的
To develop a new, equipment-free, generic method for the determination of sulfur-containing compounds based on their ability to slow down the photoreduction kinetics of gold ions to gold nanoparticles.
研究成果
The developed assay can be reliably used for the instrument-free determination of a variety of sulfur-containing compounds in different matrices using a simple chronometer and the unaided eye as detectors.
研究不足
The method is not selective for a speci?c class of sulfur-containing compounds, but it may respond to a variety of compounds containing sulfur moieties. Selectivity may be in?uenced by coexisting species that may complex Au ions or absorb the incident irradiation.
1:Experimental Design and Method Selection:
The method involves tracking the time required for a red coloration to appear in the tested sample, indicative of the formation of gold nanoparticles, and compare the measured time relative to a control sample in the absence of the target analyte.
2:Sample Selection and Data Sources:
The method was applied to the determination of a variety of sulfur-containing compounds in different samples such as natural waters and wastewater, biological ?uids, and prescription drugs.
3:List of Experimental Equipment and Materials:
The method requires only two solutions (i.e., a bu?er and a gold solution), a source of light (UV or visible), and a timer.
4:Experimental Procedures and Operational Workflow:
The method is applicable with minimal and simple steps.
5:Data Analysis Methods:
The analytical signal is the time delay between the formation of a red?purple coloration in the blank and the sample solutions, indicative of the formation of AuNPs.
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