Trujillo-Rodríguez María J, Pino Verónica, Anderson Jared L, Ayala Juan H, Afonso Ana M
Área de Química Analítica, Departamento de Química, Universidad de La Laguna, 38206, La Laguna (Tenerife), Spain.
Department of Chemistry, Iowa State University, Ames, IA, 50011, USA.
Anal Bioanal Chem. 2015 Nov;407(29):8753-64. doi: 10.1007/s00216-015-9034-2. Epub 2015 Sep 24.
The use of mixed hemimicelles of ionic liquid (IL)-based surfactants in a magnetic-based micro-dispersive solid-phase extraction (m-μdSPE) approach is described. Not only is the symmetric monocationic IL-based surfactant 1,3-didodecylimidazolium bromide (C12C12Im-Br) studied for first time in m-μdSPE, but double-salt (DS) IL (DSIL)-based surfactants are also examined. Nine DSIL-based surfactants were formed by combination of C12C12Im-Br with other IL-based surfactants, including nonsymmetric monocationic and dicationic ILs combined at three different molar fractions. The analytical application was focused on the determination of a group of eight phenols, including bisphenol A, in water samples. The best results were obtained with the DSIL formed by C12C12Im-Br (molar fraction 0.5) and 1-hexadecyl-3-methylimidazolium bromide (C16MIm-Br), after proper optimization of the overall method in combination with high-performance liquid chromatography (HPLC) and diode-array detection (DAD). The optimum conditions for 100 mL of water samples require a small amount (10 mg) of Fe3O4 magnetic nanoparticles, a low content (5.0 mg of C12C12Im-Br and 3.9 mg of C16MIm-Br) of the selected DSIL, pH 11, a sonication time of 2.5 min, and an equilibration time of 5 min with the aid of NdFeB magnets, followed by elution of phenols, evaporation, and reconstitution with 0.5 mL of acetonitrile. The overall m-μdSPE-HPLC-DAD method is characterized for limits of detection down to 1.3 μg · L(-1), intraday relative standard deviations lower than 13 % (n = 3), and interday relative standard deviations lower than 17 % (n = 9), with a spiking level of 15 μg · L(-1); with enrichment factors between 15.7 and 141, and average relative recoveries of 99.9 %.
本文描述了基于离子液体(IL)的表面活性剂混合半胶束在磁基微分散固相萃取(m-μdSPE)方法中的应用。不仅首次在m-μdSPE中研究了对称单阳离子基于IL的表面活性剂1,3-二十二烷基咪唑溴盐(C12C12Im-Br),还考察了基于双盐(DS)离子液体(DSIL)的表面活性剂。通过将C12C12Im-Br与其他基于IL的表面活性剂组合,形成了9种基于DSIL的表面活性剂,包括在三种不同摩尔分数下组合的不对称单阳离子和双阳离子离子液体。分析应用集中于测定水样中的一组8种酚类,包括双酚A。在将整个方法与高效液相色谱(HPLC)和二极管阵列检测(DAD)适当优化后,由C12C12Im-Br(摩尔分数0.5)和1-十六烷基-3-甲基咪唑溴盐(C16MIm-Br)形成的DSIL获得了最佳结果。对于100 mL水样的最佳条件需要少量(10 mg)的Fe3O4磁性纳米颗粒、低含量(5.0 mg的C12C12Im-Br和3.9 mg的C16MIm-Br)的选定DSIL、pH 11、2.5分钟的超声时间以及借助钕铁硼磁体的5分钟平衡时间,随后进行酚类洗脱、蒸发并用0.5 mL乙腈复溶。整个m-μdSPE-HPLC-DAD方法的特征在于检测限低至1.3 μg·L-1、日内相对标准偏差低于13%(n = 3)、日间相对标准偏差低于17%(n = 9),加标水平为15 μg·L-1;富集因子在15.7至141之间,平均相对回收率为99.9%。