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A Simple Fluorescence Quenching Method for the Determination of Vanillin Using TGA-capped CdTe/ZnS Nanoparticles as Probes.

Journal of fluorescence (2015-04-26)
Li Li, Qiaolin Zhang, Yaping Ding, Yaxiang Lu, Xiaoyong Cai, Lurong Yu
RÉSUMÉ

Based on the quenching of the fluorescence intensity of thioglycolic acid (TGA)-capped core-shell CdTe/ZnS nanoparticles (NPs) by vanillin, a novel, simple and rapid method for the determination of vanillin was proposed. In aqueous medium, the functionalized core-shell CdTe/ZnS NPs were successfully synthesized with TGA as the capping ligand. TGA-capped core-shell CdTe/ZnS NPs were characterized by using X-ray diffraction (XRD), transmission electron microscopy (TEM) and Fourier transform infrared (FTIR) spectroscopy. Factors affecting the vanillin detection were investigated, and the optimum conditions were also determined. Under the optimum conditions, the relative fluorescence intensity of CdTe/ZnS NPs was linearly proportional to vanillin over a concentration range from 9.4 × 10(-7) to 5.2 × 10(-4) M with a correlation coefficient of 0.998 and a detection limit of 2.6 × 10(-7) M. The proposed method was also employed to detect trace vanillin in cookies with satisfactory results.

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Description du produit

Sigma-Aldrich
Borohydrure de sodium, powder, ≥98.0%
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Borohydrure de sodium, ReagentPlus®, 99%
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Thioglycolic acid, ≥99%
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Borohydrure de sodium, granular, 99.99% trace metals basis
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Borohydrure de sodium, purum p.a., ≥96% (gas-volumetric)
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Tellurium, powder, −200 mesh, 99.8% trace metals basis
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Thioglycolic acid, 98%
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Sodium borohydride solution, ~12 wt. % in 14 M NaOH
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Borohydrure de sodium, granular, 10-40 mesh, 98%
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Tellurium, powder, −30 mesh, 99.997% trace metals basis
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Tellurium, pieces, 99.999% trace metals basis
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Tellurium, shot, ≤2 mm, 99.999% trace metals basis
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Sodium borohydride solution, 2.0 M in triethylene glycol dimethyl ether
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Borohydrure de sodium, powder
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Tellurium, granular, −5-+50 mesh, 99.99% trace metals basis
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Thioglycolic acid, ≥97%
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Thioglycolic acid solution, ~70 % (w/w) in H2O