首页> 外文期刊>Journal of separation science. >All-in-one solid-phase microextraction: Development of a selective solid-phase microextraction fiber assembly for the simultaneous and efficient extraction of analytes with different polarities
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All-in-one solid-phase microextraction: Development of a selective solid-phase microextraction fiber assembly for the simultaneous and efficient extraction of analytes with different polarities

机译:多合一固相微萃取:开发一种选择性固相微萃取纤维组件,可同时高效地萃取不同极性的分析物

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摘要

In the present work, for the first time, an all-in-one solid-phase microextraction technique was developed for the simultaneous and efficient extraction of analytes within a vast polarity range. A novel fiber assembly composed of two different steel components each coated with different coatings (polydimethylsiloxane and polyethylene glycol) in terms of polarity by sol-gel technology was employed for the extraction of model compounds of different polarity in a single run followed by gas chromatography with mass spectrometry. Effective parameters in the extraction step and gas chromatography with mass spectrometry analysis were optimized for all model compounds. The detection limits of the developed method for model compounds were below 0.2 ng/L. The repeatability and reproducibility of the proposed method, explained by relative standard deviation, varied between 7.22 and 9.15% and between 7.95 and 14.90 (n=5), respectively. Results showed that, under random conditions, compared to separate extractions performed by two other differently end-coated components that had not been assembled as the final dual fiber, as two individual fibers; simultaneous, efficient and relatively selective extraction of all model compounds was obtained in a single run by the proposed all-in-one technique. Finally, the optimized procedure was applied to extraction and determination of the model compounds in spiked water samples.
机译:在本工作中,首次开发了一种多合一固相微萃取技术,用于在宽广的极性范围内同时高效地提取分析物。一种新颖的纤维组件,由两种不同的钢组分组成,每种组分均通过溶胶-凝胶技术在极性上分别涂覆了不同的涂层(聚二甲基硅氧烷和聚乙二醇),用于一次萃取具有不同极性的模型化合物,然后进行气相色谱分析。质谱。针对所有模型化合物优化了萃取步骤和气相色谱质谱分析中的有效参数。所开发的模型化合物检测方法的检出限低于0.2 ng / L。用相对标准偏差解释的方法的重复性和重现性分别在7.22%和9.15%之间以及7.95%和14.90%之间变化(n = 5)。结果表明,在随机条件下,与未组装为最终双纤维的另两种不同末端涂层组分分别提取为两条单独的纤维相比,提取率更高;通过提议的多合一技术,可以在一次运行中同时,高效和相对选择性地提取所有模型化合物。最后,将优化程序应用于加标水样品中模型化合物的提取和测定。

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