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Molecular Characterization of Volatiles and Petrochemical Base Oils by Photo-Ionization GCxGC-TOF-MS

机译:通过光电离子GCXGC-TOF-MS的挥发物和石化基础油的分子表征

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摘要

The characterization of organic mixtures by comprehensive two-dimensional gas chromatography (GCxGC) coupled to electron impact (El) ionization time of-flight mass spectrometry (TOF-MS) allows the detection of thousands of compounds. However, owing to the exhaustive fragmentation following EI ionization, despite the use of mass spectral libraries, a majority of the compounds remains unidentified because of the lack of parent ion preservation. Thus, soft-ionization energies leading to organic compounds being ionized with limited or no fragmentation, retaining the molecular ion, has been of interest for many years. In this study, photoionization (PI) was evaluated as the ion source for GCxGC-TOF-MS measurements. First, capabilities and limitations of PI were tested using an authentic mixture of compounds of several chemical classes. Ionization energy exhibited by PI, equivalent to 10.8 eV, resulted in significant retention of molecular ion information; [M](+center dot) for alkanes, ketones, FAMEs, aromatics, [M-H](+center dot) for chloroalkanes, and [M-H2O](+center dot) for alcohols. Second, considering the potential of PI for hydrocarbons, base oils, complex mixtures of saturated and unsaturated hydrocarbons blended for finished lubricant formulations, were extensively evaluated. Several chemical classes of hydrocarbons were positively identified including a large number of isomeric compounds, both aliphatics and cyclics. Interestingly, branched-alkanes were ionized with lower excess internal energy, not only retaining the molecular ions but also exhibiting unique fragmentation patterns. The results presented herein offer a unique perspective into the detailed molecular characterization of base oils. Such unprecedented identification power of PI coupled with GCxGC-TOF-MS is the first report covering volatiles to low-volatile organic mixtures.
机译:通过全面的二维气相色谱(GCXGC)表征有机混合物(GCXGC),耦合到电子冲击(EL)电离时间的飞行质谱(TOF-MS)允许检测成千上万的化合物。然而,由于EI电离后的穷害破碎,尽管使用质谱文库,因此由于缺乏母体离子保存,因此大多数化合物仍未识别。因此,导致有机化合物的软离子化能量被电离为有限或无碎片,保持分子离子多年来一直感兴趣。在该研究中,将光离子化(PI)评价为GCXGC-TOF-MS测量的离子源。首先,使用若干化学类化合物的真实混合物测试PI的能力和限制。 PI表现出的电离能量,相当于10.8eV,导致分子离子信息的显着保留;用于烷烃,酮,丙酮,芳烃,氯烷烃的芳烃,[M-H](+中心点)和醇的乙烷,[M-H2O](+中心点)的烷烃。其次,考虑到碳氢化合物PI的潜力,广泛地评估基础油,基础油,混合成品润滑剂配制的不饱和烃的复杂混合物,得到评价。阳性鉴定几种化学类烃类,包括大量异构化合物,脂肪层和循环。有趣的是,支链烷烃具有较低的内能量,不仅保持分子离子,而且还具有均有独特的碎裂模式。本文提出的结果提供了一种独特的视角,进入基础油的详细分子表征。与GCXGC-TOF-MS偶联的PI的这种前所未有的鉴定能力是覆盖低挥发性有机混合物挥发物的第一个报告。

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  • 来源
    《Analytical chemistry》 |2017年第10期|共9页
  • 作者单位

    Univ Liege Dept Chem Organ &

    Biol Analyt Chem Grp Allee 6 Aout B6c B-4000 Liege Sart Tilman Belgium;

    Ctr Rech Solaize Total Mkt Serv Chemin Canal BP 22 F-69360 Solaize France;

    Ctr Rech Solaize Total Mkt Serv Chemin Canal BP 22 F-69360 Solaize France;

    Jeol USA 11 Dearborn Rd Peabody MA 01960 USA;

    Jeol USA 11 Dearborn Rd Peabody MA 01960 USA;

    Jeol USA 11 Dearborn Rd Peabody MA 01960 USA;

    Univ Liege Dept Chem Organ &

    Biol Analyt Chem Grp Allee 6 Aout B6c B-4000 Liege Sart Tilman Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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