首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Molecularly imprinted polymer coated on stainless steel fiber for solid-phase microextraction of chloroacetanilide herbicides in soybean and corn
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Molecularly imprinted polymer coated on stainless steel fiber for solid-phase microextraction of chloroacetanilide herbicides in soybean and corn

机译:涂覆在不锈钢纤维上的分子印迹聚合物,用于固相微萃取大豆和玉米中的氯乙酰苯胺除草剂

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摘要

A molecularly imprinted polymer (MIP) with metolachlor as template was firstly coated on stainless steel fiber through chemical bonding strategy to solve the fragility problem of silica fiber substrate for solid-phase microextraction. The surface pretreatment of stainless steel fiber and the polymerization conditions were investigated systematically to enhance the preparation feasibility and MIP coating performance, and then a porous and highly cross-linked MIP coating with 14.8-μm thickness was obtained with over 200 times re-usability which was supported by non-fragile stainless steel fiber adoption. The MIP coating possessed specific selectivities to metolachlor, its metabolites and other chloroacetanilide herbicides with the factors of 1.1-4.6. Good extraction capacities of metolachlor, propisochlor and butachlor were found with MIP coating under quick adsorption and desorption kinetics, and the detection limits of 3.0, 9.6 and 38μgL~(-1) were achieved, respectively. Moreover, the MIP-coated stainless steel fiber was evaluated for trace metolachlor, propisochlor and butachlor extraction in the spiked soybean and corn samples, and the enrichment factors of 54-60, 27-31 and 15-20 were obtained, respectively.
机译:首先通过化学键合策略将以甲草胺为模板的分子印迹聚合物(MIP)涂覆在不锈钢纤维上,解决了固相微萃取用二氧化硅纤维基质的脆性问题。为了提高制备可行性和MIP涂层性能,系统地研究了不锈钢纤维的表面预处理和聚合条件,从而获得了厚度为14.8μm的多孔且高度交联的MIP涂层,可重复使用200倍以上。非脆弱性不锈钢纤维的采用为该技术提供了支持。 MIP涂层对甲草胺,其代谢产物和其他氯乙酰苯胺除草剂具有特定的选择性,其选择性为1.1-4.6。在快速吸附和解吸动力学条件下,MIP涂层具有良好的提取能力,对异丙甲草胺,丙草胺和丁草胺的检出限分别为3.0、9.6和38μgL〜(-1)。此外,对加有MIP的不锈钢纤维进行了评估,以分析加标大豆和玉米样品中痕量的异丙甲草胺,丙草胺和丁草胺的富集系数,分别为54-60、27-31和15-20。

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