| Literature DB >> 24275470 |
Shiying Xu1, Changjuan Guo1, Yongxian Li1, Zerong Yu1, Chaohai Wei2, Youwen Tang3.
Abstract
Core-shell magnetic methyl parathion (MP) imprinted polymers (Fe3O4@MPIPs) were fabricated by a layer-by-layer self-assembly process. In order to take full advantage of the synergistic effect of hydrogen-binding interactions and π-π accumulation between host and guest for molecular recognition, methacrylic acid and 4-vinyl pyridine were chosen as co-functional monomers and their optimal proportion were investigated. The core-shell and crystalline structure, morphology and magnetic properties of Fe3O4@MPIPs were characterized. The MP-imprinted nanoshell was almost uniform and about 100nm thick. Binding experiments demonstrated that Fe3O4@MPIPs possessed excellent binding properties, including high adsorption capacity and specific recognition, as well as fast adsorption kinetics and a fast phase separation rate. The equilibration adsorption capacity reached up to 9.1mg/g, which was 12 times higher than that of magnetic non-imprinted polymers, while adsorption reached equilibrium within 5min at a concentration of 0.2mmol/L. Furthermore, Fe3O4@MPIPs successfully provided selective separation and removal of MP in soils with a recovery and detection limit of 81.1-87.0% and 5.2ng/g, respectively.Entities:
Keywords: Layer-by-layer self-assembly; Methyl parathion; Molecularly imprinted polymers; Soil samples; Superparamagnetic
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Year: 2013 PMID: 24275470 DOI: 10.1016/j.jhazmat.2013.10.060
Source DB: PubMed Journal: J Hazard Mater ISSN: 0304-3894 Impact factor: 10.588