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首页> 外文期刊>Journal of mass spectrometry: JMS >Ultraviolet laser desorption/ionization mass spectrometry of single-core and multi-core polyaromatic hydrocarbons under variable conditions of collisional cooling: insights into the generation of molecular ions, fragments and oligomers
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Ultraviolet laser desorption/ionization mass spectrometry of single-core and multi-core polyaromatic hydrocarbons under variable conditions of collisional cooling: insights into the generation of molecular ions, fragments and oligomers

机译:可变碰撞冷却条件下单核和多核聚芳烃的紫外激光解吸/电离质谱:深入了解分子离子,片段和低聚物的产生

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The ultraviolet laser desorption/ionization of polyaromatic hydrocarbons (PAHs) has been investigated under different background pressures of an inert gas (up to 1.2mbar of N2) in the ion source of a hybrid, orthogonal-extracting time-of-flight mass spectrometer (oTOF-MS). The study includes an ensemble of sixmodel PAHswith isolated single polyaromatic cores and four ones with multiple cross-linked aromatic and polyaromatic cores. In combination with a weak ion extraction field, the variation of the buffer gas pressure allowed to control the degree of collisional cooling of the desorbed PAHs and, thus, to modulate their decomposition into fragments. The dominant fragmentation channels observed are related to dehydrogenation of the PAHs, in most cases through the cleavage of even numbers of C-H bonds. Breakage of C-C bonds leading to the fragmentation of rings, side chains and core linkages is also observed, in particular, at lowbuffer gas pressures. The precise patterns of the combined fragmentation processes vary significantly between the PAHs. The highest abundances of molecular PAH ions and cleanest mass spectra were consistently obtained at the highest buffer gas pressure of 1.2mbar. The effective quenching of the fragmentation pathways at this elevated pressure improves the sensitivity and data interpretation for analytical applications, although the fragmentation of side chains and of bonds between (poly)aromatic cores is not completely suppressed in all cases. Moreover, these results suggest that the detected fragments are generated through thermal equilibriumprocesses rather than as a result of rapid photolysis. This assumption is further corroborated by a laser desorption/ionization post-source decay analysis using an axial timeof- flight MS. In line with these findings, covalent oligomers of the PAHs, which are presumably formed by association of two or more dehydrogenated fragments, are detected with higher abundances at the lower buffer gas pressures.
机译:在混合,正交提取飞行时间质谱仪的离子源中,在惰性气体(最高N2,2mbar)的不同背景压力下,对聚芳烃(PAH)的紫外激光解吸/电离进行了研究( oTOF-MS)。该研究包括具有分离的单个多芳族核的四个模型PAH和具有多个交联的芳族和多芳族核的四个模型。与弱离子提取场结合,缓冲气体压力的变化允许控制解吸的PAH的碰撞冷却程度,从而调节其分解成碎片的程度。在大多数情况下,观察到的主要断裂通道与PAH的脱氢有关,在大多数情况下是通过偶数个C-H键的断裂而实现的。尤其在低缓冲气体压力下,还观察到C-C键的断裂导致环,侧链和核心键的断裂。在PAH之间,合并的碎片过程的精确模式差异很大。在1.2mbar的最高缓冲气体压力下,始终可获得最高的分子PAH离子丰度和最干净的质谱图。尽管并非在所有情况下都无法完全抑制侧链和(聚)芳烃核之间键的断裂,但在这种高压下,断裂路径的有效淬灭提高了分析应用的灵敏度和数据解释。此外,这些结果表明,检测到的碎片是通过热平衡过程生成的,而不是由于快速光解而产生的。使用轴向飞行时间质谱仪的激光解吸/电离源后衰减分析进一步证实了这一假设。符合这些发现,在较低的缓冲气体压力下,以较高的丰度检测到了可能是由两个或多个脱氢片段缔合而形成的PAHs的共价低聚物。

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