Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7596766 | Food Chemistry | 2014 | 9 Pages |
Abstract
Nanofibrous molecularly imprinted membranes (nano-MIMs) with multi-analyte selectivity were prepared by encapsulating two types of molecularly imprinted polymer nanoparticles (MIP-NPs) into electrospun polyvinyl alcohol nanofibers. The obtained nano-MIMs maintained high molecular selectivity offered by each of the MIP-NPs. Nano-MIM embedding BPA-imprinted nanoparticles and TBZ-imprinted nanoparticles together showed the highest binding selectivity for acid bisphenol A (BPA) and basic tebuconazole (TBZ). This nano-MIM was used as affinity material of membrane-based molecularly imprinted solid-phase extraction (m-MISPE) to extract trace BPA and TBZ in vegetables and juices simultaneously. The recoveries of BPA and TBZ from different samples were higher than 70.33% with RSDs lower than 9.57%. m-MISPE gave better HPLC separation efficiencies and higher recoveries than conventional SPE based on C18/SCX. Multi-analyte selective m-MISPE combined with HPLC realized selective and simultaneous determination of several trace analytes with opposite charges/polarities in different food samples.
Keywords
RSDLOQElectrospun nanofibrous membraneBmaxIPBMolecularly imprinted solid-phase extractionrelative standard deviationBisphenol ATebuconazoleLOD یا Limit of detectionDissociation constantmaximum number of binding sitescoefficient of determinationlimit of quantificationlimit of detectionSEMMISPEMolecularly imprinted polymersscanning electron microscopelog P
Related Topics
Physical Sciences and Engineering
Chemistry
Analytical Chemistry
Authors
Ya-ting Wu, Yan-hong Zhang, Meng Zhang, Fei Liu, Ying-chun Wan, Zheng Huang, Lei Ye, Qi Zhou, Yun Shi, Bin Lu,