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Reference type: Journal
Authors: Yang MX, Zhang YY, Lin S, Yang XL, Fan ZJ, Yang LX, Dong XC
Article Title: Preparation of a bifunctional pyrazosulfuron-ethyl imprinted polymer with hydrophilic external layers by reversible addition-fragmentation chain transfer polymerization and its application in the sulfonylurea residue analysis.
Publication date: 2013
Journal: Talanta
Volume: 114
Page numbers: 143-151.
DOI: 10.1016/j.talanta.2013.03.078
Alternative URL: http://www.sciencedirect.com/science/article/pii/S0039914013002646

Abstract: A new bifunctional pyrazosulfuron-ethyl imprinted polymer was synthesized by the combination of molecular imprinting technology and living radical polymerization. In the synthesis, the pyrazosulfuron-ethyl imprinted polymer was obtained by the reversible addition-fragmentation chain transfer (RAFT) precipitation polymerization followed by grafting poly(glyceryl monomethacrylate) (pGMMA) by the post-RAFT polymerization. In this research, we used polyethylene glycol (PEG) as the polymeric porogen in order to increase the porosity of the material which is a new porogen application in the precipitation polymerization. The imprinted polymer has selectivity for the template and ability of humic acids exclusion which has shown the merits of molecularly imprinted polymers and restricted access materials. An online solid-phase extraction/HPLC method for the analysis of three sulfonylurea residues in soil samples has been developed and validated. The recovery of 81-99% in the spiked levels of 40-200 μg kg-1 was obtained and the limit of detection (LOD) and limit of quantification (LOQ) were less than 4.8 and 15.9 μg kg-1 respectively. The results demonstrated that this bifunctional material can be used for the efficient pyrazosulfuron-ethyl extraction in the sulfonylurea residue analysis from environmental samples
Template and target information: pyrazosulfuron-ethyl
Author keywords: Bifunctional imprinted polymer, Reversible addition-fragmentation chain transfer polymerization, Pyrazosulfuron-ethyl, Poly(glyceryl monomethacrylate) modification, Online SPE, HPLC, Sulfonylurea residue analysis

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