首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Thin film nanofibers containing ZnTiO3 nanoparticles for rapid evaporation of extraction solvent: application to the preconcentration of chlorpyrifos prior to its quantification by ion mobility spectrometry
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Thin film nanofibers containing ZnTiO3 nanoparticles for rapid evaporation of extraction solvent: application to the preconcentration of chlorpyrifos prior to its quantification by ion mobility spectrometry

机译:含有ZnTiO3纳米颗粒的薄膜纳米纤维用于快速蒸发萃取溶剂:在通过离子迁移光谱法通过离子迁移光谱法在定量之前施加紫外浓度

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摘要

Thin film nanofibers containing ZnTiO3 nanoparticles were used for rapid and efficient evaporation of solvents as used to extract analytes by dispersive liquid-liquid microextraction (DLLME). The method is referred to as thin film evaporation (TFE). A combination of DLLME and TFE was applied to the extraction and preconcentration of the pesticide chlorpyrifos (as a model compound) prior to analysis by ion mobility spectrometry. The ZnTiO3 nanoparticles were placed on polyacrylonitrile nanofibers which increases the porosity and surface area in the TFE process, thus causing fast and complete evaporation of solvents. The effects of sample pH value, extraction solvent and its volume, disperser solvent and volume, centrifugation time, evaporation time, and desorption temperature were optimized. The relative standard deviations of intra- and inter-day analyses were found to be 3% and 7%, respectively. The method has a linear dynamic range that covers the 0.10-3.0g.L-1 chlorpyrifos concentration range, the limit of detection is 0.04g.L-1, and the enrichment factor is up to 5400 in case of spiked samples. Some spiked field samples were analyzed and the relative recoveries ranged between 99 and 111%. When applied along with ion mobility spectrometry, the interferences caused by solvent are found to be reduced in the ionization source. This makes it possible to select a variety of solvents as needed for sample extraction.
机译:含有ZnTiO3纳米颗粒的薄膜纳米纤维用于通过分散液 - 液体微萃取(DLLME)提取分析物的溶剂快速有效地蒸发溶剂。该方法被称为薄膜蒸发(TFE)。在通过离子迁移光谱分析之前,将DLLME和TFE的组合应用于农药氯吡啶(作为模型化合物)的萃取和前浓缩。将ZnTiO3纳米颗粒置于聚丙烯腈纳米纤维上,该纳米纤维在TFE过程中增加孔隙率和表面积,从而引起快速且完全蒸发溶剂。优化样品pH值,提取溶剂及其体积,分散剂溶剂和体积,离心时间,蒸发时间和解吸温度的影响。发现和间间分析的相对标准偏差分别为3%和7%。该方法具有线性动态范围,覆盖0.10-3.0g.L-1氯吡啶浓度范围,检测极限为0.04g.L-1,并且在尖刺样品的情况下,富集因子高达5400。分析了一些尖锐的场样品,相对回收率在99和111%之间。当施加离子迁移光谱法时,发现由溶剂引起的干扰在电离源中减少。这使得可以根据需要选择各种溶剂以进行样品提取。

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