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闭壳多环芳烃阳离子:一类新型的星际多环芳烃。

Closed-shell polycyclic aromatic hydrocarbon cations: a new category of interstellar polycyclic aromatic hydrocarbons.

作者信息

Hudgins D M, Bauschlicher C W, Allamandola L J

机构信息

NASA Ames Research Center, Moffett Field, CA 94035, USA.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2001 Mar 15;57(4):907-30. doi: 10.1016/s1386-1425(00)00453-4.

DOI:10.1016/s1386-1425(00)00453-4
PMID:11345263
Abstract

Density functional theory has been employed to calculate the harmonic frequencies and intensities of a range of polycyclic aromatic hydrocarbon (PAH) cations that explore both size and electronic structure effects on the infrared spectroscopic properties of these species. The sample extends the size range of PAH species considered to more than 50 carbon atoms and includes several representatives from each of two heretofore unexplored categories of PAH cations: (1) fully benzenoid PAH cations whose carbon skeleton is composed of an odd number of carbon atoms (C(odd) PAHs); and (2) protonated PAH cations (HPAH+). Unlike the radical electronic structures of the PAH cations that have been the subject of previous theoretical and experimental work, the species in these two classes have a 'closed'-shell electronic configuration. The calculated spectra of circumcoronene, C54H18, in both neutral and (radical) cationic form are also reported and compared with those of the other species. Overall, the C(odd) PAHs spectra are dominated by strong CC stretching modes near 1600 cm(-1) and display spectra that are remarkably insensitive to molecular size. The HPAH+ species evince a more complex spectrum consistent with the added contributions of aliphatic modes and their generally lower symmetry. Finally, for both classes of closed-shell cations, the intensity of the aromatic CH stretching modes is found to increase with molecular size far out of proportion with the number of CH groups, approaching a value more typical of neutral PAHs for the largest species studied.

摘要

密度泛函理论已被用于计算一系列多环芳烃(PAH)阳离子的谐波频率和强度,这些计算探究了尺寸和电子结构对这些物质红外光谱性质的影响。该样本将所考虑的PAH物质的尺寸范围扩展到50多个碳原子,并包括了两类此前未被探索的PAH阳离子中的每一类的几个代表:(1)碳骨架由奇数个碳原子组成的全苯型PAH阳离子(C(odd) PAHs);以及(2)质子化PAH阳离子(HPAH+)。与先前理论和实验工作所研究的PAH阳离子的自由基电子结构不同,这两类物质具有“闭壳层”电子构型。还报告了并四苯(C54H18)中性和(自由基)阳离子形式的计算光谱,并与其他物质的光谱进行了比较。总体而言,C(odd) PAHs的光谱以1600 cm(-1)附近的强C-C伸缩模式为主,并且其光谱对分子尺寸明显不敏感。HPAH+物质表现出更复杂的光谱,这与脂肪族模式的额外贡献及其通常较低的对称性一致。最后,对于这两类闭壳层阳离子,发现芳香族C-H伸缩模式的强度随分子尺寸增加,其增加幅度与C-H基团的数量远不成比例,对于所研究的最大物质,该强度接近中性PAHs更典型的值。

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