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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Analysis of co-eluted isomers of high-molecular weight polycyclic aromatic hydrocarbons in high performance liquid chromatography fractions via solid-phase nanoextraction and time-resolved Shpol'skii spectroscopy
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Analysis of co-eluted isomers of high-molecular weight polycyclic aromatic hydrocarbons in high performance liquid chromatography fractions via solid-phase nanoextraction and time-resolved Shpol'skii spectroscopy

机译:固相纳米萃取和时间分辨Shpol'skii光谱法分析高效液相色谱馏分中的高分子量多环芳烃共洗脱异构体

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摘要

We present an accurate method for the determination of isomers of high-molecular weight polycyclic aromatic hydrocarbons co-eluted in HPLC fractions. The feasibility of this approach is demonstrated with two isomers of molecular weight 302 with identical mass fragmentation patterns, namely dibenzo[a,i]pyrene and naphtho[2,3-a]pyrene. Qualitative and quantitative analysis is carried out via laser-excited time-resolved Shpol'skii spectroscopy at liquid helium temperature. Unambiguous identification of co-eluted isomers is based on their characteristic 4.2K line-narrowed spectra in n-octane as well as their fluorescence lifetimes. Pre-concentration of HPLC fractions prior to spectroscopic analysis is performed with the aid of gold nanoparticles via an environmentally friendly procedure. In addition to the two co-eluted isomers, the analytical figures of merit of the entire procedure were evaluated with dibenzo[a,l]pyrene, dibenzo[a,h]pyrene and dibenzo[a,e]pyrene. The analytical recoveries from drinking water samples varied between 98.2±5.5 (dibenzo[a,l]pyrene) and 102.7±3.2% (dibenzo[a,i]pyrene). The limits of detection ranged from 51.1ngL~(-1) (naphtho[2,3-a]pyrene) to 154ngL~(-1) (dibenzo[a,e]pyrene). The excellent analytical figures of merit associated to its HPLC compatibility makes this approach an attractive alternative for the analysis of co-eluted isomers with identical mass spectra.
机译:我们提供了一种测定HPLC馏分中共洗脱的高分子量多环芳烃异构体的准确方法。用具有相同质量裂解模式的两个分子量为302的异构体,即二苯并[a,i] py和萘并[2,3-a] py证明了该方法的可行性。通过在液氦温度下通过激光激发的时间分辨Shpol'skii光谱进行定性和定量分析。共洗脱异构体的明确鉴定是基于其在正辛烷中的特征性4.2K谱线窄光谱以及其荧光寿命。在光谱分析之前,通过金纳米颗粒的环保步骤对HPLC馏分进行预浓缩。除了两种共洗脱的异构体外,还用二苯并[a,l] py,二苯并[a,h] py和二苯并[a,e] py评估了整个过程的品质因数。饮用水样品的分析回收率在98.2±5.5(二苯并[a,l] py)和102.7±3.2%(二苯并[a,i] py)之间变化。检测范围从51.1ngL〜(-1)(萘并[2,3-a] py)到154ngL〜(-1)(二苯并[a,e] py)。与HPLC相容性相关的出色分析品质因数使该方法成为分析具有相同质谱图的共洗脱异构体的有吸引力的替代方法。

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