研究目的
The development of a dual-emission CdTe/AgInS2 photoluminescence probe coupled to neural network data processing for the simultaneous determination of folic acid and iron (II) in pharmaceutical formulations.
研究成果
The synergy resulting from combining different QDs in a dual emission probe and processing the obtained data with chemometric tools effectively circumvented the selectivity issues. ANN modelling showed better results than PLS due to its ability to tackle non-linear data, demonstrating the accuracy of the developed methodology for the simultaneous determination of folic acid and Fe(II) in calibration samples and in real samples with pharmaceutical interest.
研究不足
The stability of the combined nanoprobes was limited, with significant modifications observed after approximately 30 min to 1 h. The selectivity issues arising from the use of highly reactive quantum dots for the determination of multiple analytes in the same sample analysis were addressed by combining different QDs and processing the data with chemometric tools.
1:Experimental Design and Method Selection:
The study involved the synthesis of CdTe and AgInS2 quantum dots with distinct capping ligands to adjust their reactivity towards folic acid and Fe(II). The PL-based sensing schemes combined multiple QDs of different nature, excited at the same wavelength and emitting at different wavelengths, to obtain specific analyte-response profiles.
2:Sample Selection and Data Sources:
The samples included binary mixtures of folic acid and Fe(II) at concentration levels of 7e17 and 5e45 mmol L?1, respectively, and pharmaceutical formulations.
3:List of Experimental Equipment and Materials:
The synthesis involved reagents like cadmium chloride, sodium tellurite, and various capping ligands. The characterization was performed using a Fluorolog?-3 spectrofluorimeter and a Jasco V-660 spectrophotometer.
4:Experimental Procedures and Operational Workflow:
The procedure involved the addition of analytes and QDs into Eppendorf tubes, followed by recording emission spectra.
5:Data Analysis Methods:
The first-order fluorescence data were processed using chemometric tools, namely PLS and ANN, to handle the non-linear relationship between analyte concentration and fluorescence data.
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