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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Improvement of extraction capability of magnetic molecularly imprinted polymer beads in aqueous media via dual-phase solvent system
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Improvement of extraction capability of magnetic molecularly imprinted polymer beads in aqueous media via dual-phase solvent system

机译:通过双相溶剂系统提高磁性分子印迹聚合物珠在水性介质中的萃取能力

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摘要

In this study, a novel and simple dual-phase solvent system for the improvement of extraction capability of magnetic molecularly imprinted polymer (MIP) beads in aqueous sample was proposed. The method integrated MIP extraction and micro-liquid-liquid extraction (micro-LLE) into only one step. A magnetic MIP beads using atrazine as template was synthesized. and was applied to aqueous media by adding micro-volume of n-hexane to form a co-extraction system. The magnetic MIP beads preferred to suspend in the organic phase, which shielded them from the disturbance of water molecule. The target analytes in the water sample was extracted into the organic phase by micro-LLE and then further bound to the solid-phase of magnetic MIP beads. The beads specificity was significantly improved with the imprinting efficiency of template increasing from 0.5 to 4.4, as compared with that in pure aqueous media. The extraction capacity, equilibration process and cross-selectivity of the MIP dual-phase solvent extraction system were investigated. The proposed method coupled with high-performance liquid chromatography was applied to the analysis of atrazine, simazine, propazine, simetryn, prometryne, ametryn and terbutryn in complicated sample such as tomato, strawberry juice and milk. The method is selective, sensitive and low organic solvent-consuming, and has potential to broaden the range of MIP application in biological and environmental sample.
机译:在这项研究中,提出了一种新颖,简单的双相溶剂体系,以提高水性样品中磁性分子印迹聚合物(MIP)珠的提取能力。该方法将MIP萃取和微液-液萃取(micro-LLE)集成到一个步骤中。合成了以at去津为模板的磁性MIP珠。并通过添加微量的正己烷将其应用于水性介质,以形成共萃取体系。磁性MIP磁珠最好悬浮在有机相中,从而使其免受水分子的干扰。水样中的目标分析物通过微LLE萃取到有机相中,然后进一步结合到磁性MIP磁珠的固相上。与纯水性介质相比,随着模板的压印效率从0.5增加到4.4,珠的特异性显着提高。研究了MIP双相溶剂萃取体系的萃取能力,平衡过程和交叉选择性。所提出的方法与高效液相色谱法相结合,可用于复杂样品(如番茄,草莓汁和牛奶)中阿特拉津,西马津,丙嗪,西咪替丁,丙三烯,六氢萘和特丁龙的分析。该方法具有选择性,灵敏性和低有机溶剂消耗的特点,并且有可能扩大MIP在生物和环境样品中的应用范围。

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