
pmid: 25884733
A novel fluorescence probe based on upconversion particles, YF3:Yb(3+), Er(3+), coating with molecularly imprinted polymers (MIPs@UCPs) has been synthesized for selective recognition of the analyte clenbuterol (CLB), which was characterized by scan electron microscope and X-ray powder diffraction. The fluorescence of the MIPs@UCPs probe is quenched specifically by CLB, and the effect is much stronger than the NIPs@UCPs (non-imprinting polymers, NIPs). Good linear correlation was obtained for CLB over the concentration range of 5.0-100.0 μg L(-1) with a detection limit of 0.12 μg L(-1) (S/N=3). The developed method was also used in the determination of CLB in water and pork samples, and the recoveries ranged from 81.66% to 102.46% were obtained with relative standard deviation of 2.96-4.98% (n=3). The present study provides a new and general tactics to synthesize MIPs@UCPs fluorescence probe with highly selective recognition ability to the CLB and is desirable for application widely in the near future.
Models, Molecular, Polymers, Swine, Water, Molecular Imprinting, Red Meat, Spectrometry, Fluorescence, Limit of Detection, Animals, Clenbuterol, Yttrium, Adsorption, Ytterbium, Water Pollutants, Chemical, Erbium, Fluorescent Dyes
Models, Molecular, Polymers, Swine, Water, Molecular Imprinting, Red Meat, Spectrometry, Fluorescence, Limit of Detection, Animals, Clenbuterol, Yttrium, Adsorption, Ytterbium, Water Pollutants, Chemical, Erbium, Fluorescent Dyes
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