论文标题

使用红外离子光谱研究的气态多环芳烃的分解产物

Breakdown products of gaseous polycyclic aromatic hydrocarbons investigated with infrared ion spectroscopy

论文作者

Petrignani, A., Vala, M., Eyler, J. R., Tielens, A. G. G. M., Berden, G., van der Meer, A. F. G., Redlich, B., Oomens, J.

论文摘要

我们报告在电子离子诱导的三个不同的三环芳香族烃(PAHS),氟化(C $ _ {13} $ _ {13} $ h $ _ {10} $),9,10-dihydrophenanthrene(C $ _ {14} $ _ {14} $ ________________________2) 9,10-dihydroanthracene(C $ _ {14} $ H $ _ {12} $)。在傅立叶转换离子旋转式谐振质谱仪中获得了$ m/z = 165 $的质量分散产物离子的红外光谱,其细胞放置在红外自由电子激光器的光腔内,从而提供了有效的高光子流量,以提供有效的红外高光子流量。发现从三个不同前体产生的$ m/z的红外光谱是相似的,这表明形成了单个c $ _ {13} $ h $ _ {9}^+$ isomer。使用密度函数理论(DFT)的理论计算表明,片段的身份是封闭的壳氟苯基阳离子。根据DFT计算,提出了从每个母体前体到氟离子的分解途径。来自三种不同PAH的单个破碎产物的鉴定支持了PAHS的共同分解途径的概念,并可以帮助理解天文学PAH物种的碎片化学。

We report on a common fragment ion formed during the electron-ionization-induced fragmentation of three different three-ring polycyclic aromatic hydrocarbons (PAHs), fluorene (C$_{13}$H$_{10}$), 9,10-dihydrophenanthrene (C$_{14}$H$_{12}$), and 9,10-dihydroanthracene (C$_{14}$H$_{12}$). The infrared spectra of the mass-isolated product ions with $m/z=165$ were obtained in a Fourier transform ion cyclotron resonance mass spectrometer whose cell was placed inside the optical cavity of an infrared free-electron laser, thus providing the high photon fluence required for efficient infrared multiple-photon dissociation. The infrared spectra of the $m/z=165$ species generated from the three different precursors were found to be similar, suggesting the formation of a single C$_{13}$H$_{9}^+$ isomer. Theoretical calculations using density functional theory (DFT) revealed the fragment's identity as the closed-shell fluorenyl cation. Decomposition pathways from each parent precursor to the fluorenyl ion are proposed on the basis of DFT calculations. The identification of a single fragmentation product from three different PAHs supports the notion of the existence of common decomposition pathways of PAHs in general and can aid in understanding the fragmentation chemistry of astronomical PAH species.

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