首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Determination of high-molecular weight polycyclic aromatic hydrocarbons in high performance liquid chromatography fractions of coal tar standard reference material 1597a via solid-phase nanoextraction and laser-excited time-resolved Shpol'skii spectroscopy
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Determination of high-molecular weight polycyclic aromatic hydrocarbons in high performance liquid chromatography fractions of coal tar standard reference material 1597a via solid-phase nanoextraction and laser-excited time-resolved Shpol'skii spectroscopy

机译:固相纳米萃取和激光激发时间分辨Shpol'skii光谱法测定煤焦油标准参考物质1597a的高效液相色谱馏分中的高分子多环芳烃

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This article presents an alternative approach for the analysis of high molecular weight - polycyclic aromatic hydrocarbons (HMW-PAHs) with molecular mass 302 Da in complex environmental samples. This is not a trivial task due to the large number of molecular mass 302 Da isomers with very similar chromatographic elution times and similar, possibly even virtually identical, mass fragmentation patterns. The method presented here is based on 4.2 K laser-excited time-resolved Shpol'skii spectroscopy, a high resolution spectroscopic technique with the appropriate selectivity for the unambiguous determination of PAHs with the same molecular mass. The potential of this approach is demonstrated here with the analysis of a coal tar standard reference material (SRM) 1597a. Liquid chromatography fractions were submitted to the spectroscopic analysis of five targeted isomers, namely dibenzo[a,l]pyrene, dibenzo[a,e] pyrene, dibenzo[a,i]pyrene, naphtho[2,3-a]pyrene and dibenzo[a,h]pyrene. Prior to analyte determination, the liquid chromatographic fractions were pre-concentrated with gold nanoparticles. Complete analysis was possible with microliters of chromatographic fractions and organic solvents. The limits of detection varied from 0.05 (dibenzo[a,l]pyrene) to 0.24 mu g L-1 (dibenzo[a,e]pyrene). The excellent analytical figures of merit associated to its non-destructive nature, which provides ample opportunity for further analysis with other instrumental methods, makes this approach an attractive alternative for the determination of PAH isomers in complex environmental samples. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文提出了一种在复杂环境样品中分析分子量为302 Da的高分子量多环芳烃(HMW-PAHs)的替代方法。由于大量的分子量302 Da异构体具有非常相似的色谱洗脱时间和相似的​​(甚至可能实际上是相同的)质量裂解模式,因此这并不是一件容易的事。此处介绍的方法基于4.2 K激光激发的时间分辨Shpol'skii光谱学,这是一种高分辨率光谱技术,具有适当的选择性,可以毫无疑问地确定相同分子量的PAHs。此处通过分析煤焦油标准参考材料(SRM)1597a证明了这种方法的潜力。将液相色谱馏分提交给五种目标异构体的光谱分析,即二苯并[a,l]],二苯并[a,e] pyr,二苯并[a,i] py,萘[2,3-a] py和二苯并[a,h] py。在确定分析物之前,将液相色谱部分用金纳米颗粒进行预浓缩。使用微升色谱级分和有机溶剂可以进行完全分析。检测限从0.05(二苯并[a,l] py)到0.24μgL-1(二苯并[a,e] py)不等。与非破坏性相关的优异的品质因数,为其他仪器方法的进一步分析提供了充足的机会,使这种方法成为测定复杂环境样品中PAH异构体的有吸引力的替代方法。 (C)2015 Elsevier B.V.保留所有权利。

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