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磁性离子液体作为萃取溶剂在真空顶空单滴微萃取中的应用。

Magnetic ionic liquids as extraction solvents in vacuum headspace single-drop microextraction.

机构信息

Departamento de Química (Unidad Departamental de Química Analítica), Universidad de La Laguna (ULL), La Laguna, Tenerife 38206 Spain; Department of Chemistry, Iowa State University, 1605 Gilman Hall, Ames, IA 50011, USA.

Departamento de Química (Unidad Departamental de Química Analítica), Universidad de La Laguna (ULL), La Laguna, Tenerife 38206 Spain.

出版信息

Talanta. 2017 Sep 1;172:86-94. doi: 10.1016/j.talanta.2017.05.021. Epub 2017 May 11.

Abstract

A vacuum headspace single-drop microextraction method based on the use of magnetic ionic liquids (vacuum MIL-HS-SDME) for the determination of short chain free fatty acids is described for the first time. The basis of the method involves the use of a rod magnet to aid in maintaining a small microdroplet of magnetic ionic liquid (MIL) during headspace single-drop microextraction (HS-SDME). The application favors reduced pressure conditions inside the sampling vial while maintaining the MIL droplet in the headspace. After extraction, the MIL microdroplet containing extracted FFAs is transferred to a headspace vial where static headspace desorption is performed, followed by gas chromatographic-mass spectrometry (GC-MS) analysis. A number of MILs were studied and the trihexyl(tetradecyl)phosphonium tris(hexafluoroacetylaceto)manganate(II) MIL was found to be the most suitable for the proposed method. A comparison with atmospheric pressure MIL-HS-SDME revealed that analytes reached equilibrium faster when reduced pressure conditions were applied and that an enhancement in the extraction efficiency of analytes under these vacuum conditions was observed at any extraction time. Under optimum conditions, the method requires only 20µL of MIL placed at the end of a rod magnet and the evacuation of air using a modified extraction vial and a vacuum pump. Afterwards, 10mL of sample containing 30% (w/v) of NaCl is injected in the vial and the vacuum MIL-HS-SDME is performed at 45°C and 600rpm for 60min. The MIL microdroplet can easily be transferred to a 4.2mL modified headspace vial for the headspace desorption and GC-MS analysis. The entire method is characterized by wide linearity ranges, low limits of detection for analytes (down to 14.5µgL), good reproducibility (with relative standard deviation lower than 13%), and relative recoveries ranging from 79.5% to 111%. The proposed vacuum MIL-HS-SDME was applied towards the analysis of two different milk samples with the majority of analytes being detected and quantified.

摘要

首次描述了一种基于使用磁性离子液体(真空 MIL-HS-SDME)的真空顶空单滴微萃取方法,用于测定短链游离脂肪酸。该方法的基础是使用棒状磁铁在顶空单滴微萃取(HS-SDME)过程中帮助维持小的磁性离子液体(MIL)微滴。该应用在保持 MIL 微滴处于顶空的同时,有利于减少采样瓶内的减压条件。萃取后,含有提取的 FFAs 的 MIL 微滴转移到顶空瓶中进行静态顶空解吸,然后进行气相色谱-质谱联用(GC-MS)分析。研究了多种 MIL,发现三己基(十四烷基)膦三(六氟乙酰丙酮)锰(II)MIL 最适合该方法。与常压 MIL-HS-SDME 的比较表明,在减压条件下分析物更快达到平衡,并且在这些真空条件下观察到分析物的萃取效率增强。在最佳条件下,该方法仅需要 20μL 的 MIL 置于棒状磁铁的末端,并使用改良的萃取瓶和真空泵抽气。之后,将 10mL 含有 30%(w/v)NaCl 的样品注入瓶中,在 45°C 和 600rpm 下进行真空 MIL-HS-SDME 60min。MIL 微滴可轻松转移至 4.2mL 改良的顶空瓶中进行顶空解吸和 GC-MS 分析。整个方法具有宽的线性范围、分析物的低检测限(低至 14.5μg/L)、良好的重现性(相对标准偏差低于 13%)和相对回收率在 79.5%到 111%之间。所提出的真空 MIL-HS-SDME 用于分析两种不同的牛奶样品,检测和定量了大部分分析物。

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