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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Cloud point-dispersive μ-solid phase extraction of hydrophobic organic compounds onto highly hydrophobic core-shell Fe _2O _3@C magnetic nanoparticles
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Cloud point-dispersive μ-solid phase extraction of hydrophobic organic compounds onto highly hydrophobic core-shell Fe _2O _3@C magnetic nanoparticles

机译:疏水性有机化合物的浊点分散μ-固相萃取到高度疏水的核壳Fe _2O _3 @ C​​磁性纳米粒子上

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A novel two-step extraction technique combining cloud point extraction (CPE) with dispersive micro-solid phase extraction (D-μ-SPE) is presented in this work for the first time. The method involves initial extraction of the target analytes by CPE in the micelles of a non-ionic surfactant medium; then highly hydrophobic polysiloxane-coated core-shell Fe _2O _3@C magnetic nanoparticles (MNPs) are used to retrieve the micellar phase. In that manner, the micellar phase containing the analytes is the target of the D-μ-SPE step rather than the analytes directly. MNPs are then collected by the application of an adscititious magnetic field overcoming the need for specific steps associated with CPE such as centrifugation to separate the surfactant-rich phase, refrigeration of the condensed micellar phase to reduce its viscosity or appropriate apparatus that enable direct sampling of the surfactant-rich phase. A noteworthy feature of the method is the introduction of highly oleophilic MNPs, which afford rapid and quantitative mass transfer of the surfactant phase, as opposed to other more conventional hydrophobic nanoparticles. In that manner, fast and reproducible extraction is accomplished, lending improved analytical features compared to conventional CPE, such as reduced analysis time and relative inertness to surfactant concentration and equilibration temperature. The analytes were recovered from the surface of MNPs by ultrasound-assisted back-extraction in a water-immiscible organic solvent where analytes are readily partitioned but the surfactant has limited solubility, thus minimizing its interference during chromatographic detection. As an analytical demonstration, different UV absorbing chemicals with various physico-chemical properties were used as model organic compounds for optimizing the parameters associated with this novel two-step extraction approach. The proposed method, combining two different and efficient techniques, offers satisfactory analytical features in terms of repeatability (4.5-7.5%), reproducibility (7.0-14.9%) and accuracy (88.5-97.2%). Most importantly it poses as an alternative and fast method for sample pretreatment opening new insights in surfactant-mediated extractions.
机译:这项工作首次提出了一种结合浊点萃取(CPE)和分散微固相萃取(D-μ-SPE)的新颖的两步萃取技术。该方法包括通过CPE在非离子表面活性剂介质的胶束中初步提取目标分析物;然后使用高度疏水的聚硅氧烷涂层的核壳Fe _2O _3 @ C​​磁性纳米颗粒(MNP)来回收胶束相。以这种方式,包含分析物的胶束相是D-μ-SPE步骤的目标,而不是直接分析物。然后,通过施加吸附磁场克服与CPE相关的特定步骤(例如,离心分离富含表面活性剂的相,冷冻浓缩胶束相以降低其粘度)或适当的设备(可直接取样)来收集MNP,富含表面活性剂的相。该方法的一个值得注意的特征是引入了高度亲油性的MNP,与其他更常规的疏水性纳米颗粒相反,该MNP提供了表面活性剂相的快速定量转移。通过这种方式,可以实现快速且可重现的萃取,与常规CPE相比,分析性能得到了改善,例如分析时间减少,对表面活性剂浓度和平衡温度的相对惰性。在水不混溶的有机溶剂中通过超声辅助反萃取从MNP的表面回收分析物,其中分析物易于分配,但表面活性剂的溶解度有限,因此可将其在色谱检测过程中的干扰降至最低。作为分析论证,具有各种物理化学性质的不同紫外线吸收化学品被用作模型有机化合物,以优化与这种新颖的两步萃取方法相关的参数。所提出的方法结合了两种不同的有效技术,在重复性(4.5-7.5%),重现性(7.0-14.9%)和准确性(88.5-97.2%)方面均提供了令人满意的分析功能。最重要的是,它构成了样品预处理的一种快速替代方法,为表面活性剂介导的萃取提供了新的见解。

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