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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Development of stir bar sorptive-dispersive microextraction mediated by magnetic nanoparticles and its analytical application to the determination of hydrophobic organic compounds in aqueous media
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Development of stir bar sorptive-dispersive microextraction mediated by magnetic nanoparticles and its analytical application to the determination of hydrophobic organic compounds in aqueous media

机译:磁性纳米粒子介导的搅拌棒吸附分散微萃取的发展及其在测定水性介质中疏水性有机化合物中的分析应用

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A novel microextraction technique combining the principles of stir bar sorptive extraction (SBSE) and dispersive micro-solid phase extraction (DμSPE) is presented. The main feature of the method is the use of a neodymium-core stirring bar physically coated with a hydrophobic magnetic nanosorbent. Depending on stirring speed, the magnetic sorbent either acts as a coating material to the stir bar, thus affording extraction alike SBSE, or as a dispersed nanosorbent medium for the collection and extraction of the target analytes, in close analogy to DμSPE. Once the stirring process is finished, the strong magnetic field of the stir bar prevails again and rapidly retrieves the dispersed MNPs. Alike SBSE, the stir bar is collected and the analytes are back-extracted by liquid desorption into an appropriate organic solvent, which is used for analysis. This enrichment technique is easy to prepare since it does not require special surface modification procedures, uses low volumes of non-toxic organic solvents and most importantly imbues SBSE with additional functionalities against a wide range of analytes (since nanosorbents with various coatings can be employed) while it affords additional merits to DμSPE in terms of extraction and post-extraction treatment. As proof-of-concept this new approach was applied to the determination of organic UV filters in seawater samples using oleic acid-coated cobalt ferrite (CoFe_2O_4@oleic acid) magnetic nanoparticles as sorbent material. The method showed good analytical features in terms of linearity, enrichment factors (11-148), limits of detection (low ng mLg~(-1)), intra- and inter-day repeatability (RSD<11%) and relative recoveries (87-120%).
机译:提出了一种结合搅拌棒吸附萃取(SBSE)和分散微固相萃取(DμSPE)原理的新型微萃取技术。该方法的主要特点是使用物理上涂有疏水性磁性纳米吸附剂的钕芯搅拌棒。取决于搅拌速度,磁性吸附剂要么用作搅拌棒的涂层材料,从而提供类似于SBSE的萃取,要么用作分散的纳米吸附剂介质,用于收集和萃取目标​​分析物,与DμSPE非常相似。搅拌过程完成后,搅拌棒的强磁场再次盛行并迅速回收分散的MNP。与SBSE一样,收集搅拌棒,并通过液体解吸将分析物反萃取到适当的有机溶剂中,该有机溶剂用于分析。这种富集技术易于制备,因为它不需要特殊的表面改性程序,使用少量的无毒有机溶剂,最重要的是使SBSE具有针对多种分析物的附加功能(因为可以使用具有各种涂层的纳米吸附剂)同时在萃取和萃取后处理方面,DμSPE具有其他优点。作为概念验证,该新方法适用于使用油酸涂层的钴铁氧体(CoFe_2O_4 @油酸)磁性纳米粒子作为吸附剂材料测定海水样品中的有机紫外线滤光片。该方法在线性,富集因子(11-148),检测限(ng ngg〜(-1)低),日内和日间重复性(RSD <11%)和相对回收率( 87-120%)。

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