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Application of a supramolecular solvent as the carrier for ferrofluid based liquid-phase microextraction for spectrofluorimetric determination of levofloxacin in biological samples

机译:超分子溶剂作为载体在铁磁流体液相微萃取中用于荧光测定生物样品中的左氧氟沙星

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In the present study, a novel and environmentally friendly liquid-phase microextraction method based on the application of a supramolecular solvent as a carrier for ferrofluid was proposed for spectrofluorimetric determination of levofloxacin (LEVO). The ferrofluid was composed of oleic acid-coated magnetic particles and the supramolecular solvent as the extraction solvent. The supramolecular solvent is water-immiscible nanostructured liquid that was produced from coacervation of decanoic acid aqueous vesicles in the presence of tetrabutyl ammonium (Bu4N+). As the ferrofluid can be attracted by using a magnet, no special devices and complicated operations were needed for phase separation. The important parameters affecting the microextraction efficiency including pH, volume of the extraction solvent, salt effect and extraction time were investigated and optimized. Under optimum conditions, the calibration curve for LEVO determination showed good linearity in the range of 1a€“200.0 ng mLa?’1 (R2 = 0.9987). The repeatability and reproducibility (RSD%) of 20 ng mLa?’1 LEVO were 2.9% and 4.4%, respectively and the limit of detection (S/N = 3) was estimated to be 0.2 ng mLa?’1. The proposed method was successfully applied to the extraction and determination of levofloxacin in biological samples.
机译:在本研究中,提出了一种基于超分子溶剂作为铁磁流体载体的新型环保液相微萃取方法,用于荧光荧光法测定左氧氟沙星(LEVO)。铁磁流体由油酸包覆的磁性粒子和作为萃取溶剂的超分子溶剂组成。超分子溶剂是与水不混溶的纳米结构液体,该液体是在四丁基铵(Bu4N +)存在下,癸酸水溶液囊泡凝聚而产生的。由于使用磁铁可以吸引铁磁流体,因此不需要特殊的装置和复杂的操作进行相分离。研究和优化了影响微萃取效率的重要参数,包括pH,萃取溶剂的量,盐效应和萃取时间。在最佳条件下,用于LEVO测定的校准曲线在1a“ 200.0 ng mLa?1”(R2 = 0.9987)的范围内表现出良好的线性。 20 ng mLa?-1 LEVO的重复性和重现性(RSD%)分别为2.9%和4.4%,检出限(S / N = 3)估计为0.2 ng mLa?-1。该方法成功用于生物样品中左氧氟沙星的提取和测定。

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