Abstract Bio-dispersive liquid liquid microextraction based on nano rhaminolipid aggregates combined with magnetic solid phase extraction using Fe<ce:inf loc='post'>3</ce:inf>O<ce:inf loc='post'>4</ce:inf>@PPy magnetic nanoparticles for the determination of methamphetamine in human urine
首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Bio-dispersive liquid liquid microextraction based on nano rhaminolipid aggregates combined with magnetic solid phase extraction using Fe3O4@PPy magnetic nanoparticles for the determination of methamphetamine in human urine
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Bio-dispersive liquid liquid microextraction based on nano rhaminolipid aggregates combined with magnetic solid phase extraction using Fe3O4@PPy magnetic nanoparticles for the determination of methamphetamine in human urine

机译:基于纳米菌毒素的生物分散液液体微萃取使用Fe 3 O 4 @ppy磁性纳米粒子用于测定人尿中的甲基丙酮

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Abstract In the present investigation, extraction and preconcentration of methamphetamine in human urine samples was carried out using a novel bio-dispersive liquid liquid microextraction (Bio-DLLME) technique coupled with magnetic solid phase extraction (MSPE). Bio-DLLME is a kind of microextraction technique based nano-materials which have potential capabilities in many application fields. Bio-DLLME is based on the use of a binary part system consisting of methanol and nano rhaminolipid biosurfactant. Use of this binary mixture is ecologically accepted due to their specificity, biocompatibility and biodegradable nature. The potential of nano rhaminolipid biosurfactant as a biological agent in the extraction of organic compounds has been investigated in recent years. They are able to partition at the oil/water interfaces and reduce the interfacial tension in order to increase solubility of hydrocarbons. The properties of the prepared Fe3O4@PPy magnetic nanoparticles were characterized using Fourier transform infrared spectroscopy and X-ray diffraction methods The influences of the experimental parameters on the quantitative recovery of analyte were investigated. Under optimized conditions, the enrichment factor was 310, the calibration graph was linear in the methamphetamine concentration range from 1 to 60μgL?1, with a correlation coefficient of 0.9998. The relative standard deviations for six replicate measurements was 5.2%. ]]>
机译:<![cdata [ 抽象 在本前研究中,使用新的生物分散液液体微萃取进行(生物DLLME)进行人尿样中甲基苯丙胺的提取和前浓缩)与磁性相相萃取(MSPE)偶联的技术。 Bio-DLLME是一种基于微萃取技术的纳米材料,其在许多应用领域具有潜在的能力。 Bio-DLLME基于使用由甲醇和纳米犀牛生物活性剂组成的二元部分系统。由于它们的特异性,生物相容性和可生物降解性质,使用这种二元混合物的使用是生态接受的。近年来研究了纳米菌毒素生物活性剂作为生物试剂的潜力。它们能够在油/水界面处分区,并降低界面张力,以增加烃的溶解度。制备的FE 3 O 4 @ppy磁性纳米粒子的特征是使用傅立叶变换来表征红外光谱和X射线衍射方法研究了实验参数对分析物定量回收的影响。在优化条件下,富集因子为310,校准图在甲基苯丙胺浓度范围内为1至60 μg l ?1 ,相关系数为0.9998。六种复制测量的相对标准偏差为5.2%。 ]]>

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