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多环芳烃阳离子的红外光谱。1. 基质隔离的萘和全氘代萘。

Infrared spectroscopy of polycyclic aromatic hydrocarbon cations. 1. Matrix-isolated naphthalene and perdeuterated naphthalene.

作者信息

Hudgins D M, Sandford S A, Allamandola L J

机构信息

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

出版信息

J Phys Chem. 1994 Apr 21;98(16):4243-53. doi: 10.1021/j100067a008.

Abstract

Ionized polycyclic aromatic hydrocarbons (PAHs) are thought to constitute an important component of the interstellar medium. Despite this fact, the infrared spectroscopic properties of ionized PAHs are almost unknown. The results we present here derive from our ongoing spectroscopic study of matrix isolated PAH ions and include the spectra of the naphthalene cation, C10H8+, and its fully deuterated analog, C10D8+, between 4000 and 200 cm-1. Ions are generated in situ Lyman-alpha photoionization of the neutral precursor. Bands of the C10H8+ ion are observed at 1525.7, 1518.8, 1400.9, 1218.0, 1216.9, 1214.9, 1023.2, and 758.7 cm-1. Positions and relative intensities of these bands agree well with those in the available literature. The 758.7 cm-1 band has not previously been reported. C10D8+ ion bands appear at 1466.2, 1463.8, 1379.4, 1373.8, 1077.3, 1075.4, and 1063.1 cm-1. Compared to the analogous modes in the neutral molecule, the intensities of the cation's CC modes are enhanced by an order of magnitude, while CH modes are depressed by this same factor. Integrated absorption intensities are calculated for the strongest bands of C10H8 and for the observed bands of C10H8+. Absolute intensities derived for the naphthalene cation differ from earlier experimental results by a factor of approximately 50, and from theoretical predictions by a factor of approximately 300. Reasons for these discrepancies and from the astronomical implications of PAH cation spectra are discussed.

摘要

离子化多环芳烃(PAHs)被认为是星际介质的重要组成部分。尽管如此,离子化PAHs的红外光谱特性几乎无人知晓。我们在此展示的结果源自我们正在进行的对基质隔离PAH离子的光谱研究,包括萘阳离子C10H8+及其完全氘代类似物C10D8+在4000至200厘米-1之间的光谱。离子通过中性前体的原位莱曼α光电离产生。在1525.7、1518.8、1400.9、1218.0、1216.9、1214.9、1023.2和758.7厘米-1处观察到C10H8+离子的谱带。这些谱带的位置和相对强度与现有文献中的数据吻合良好。758.7厘米-1的谱带此前尚未见报道。C10D8+离子的谱带出现在1466.2、1463.8、1379.4、1373.8、1077.3、1075.4和1063.1厘米-1处。与中性分子中的类似模式相比,阳离子的CC模式强度增强了一个数量级,而CH模式强度则降低了相同的倍数。计算了C10H8最强谱带以及C10H8+观测谱带的积分吸收强度。萘阳离子的绝对强度与早期实验结果相差约50倍,与理论预测相差约300倍。讨论了这些差异的原因以及PAH阳离子光谱的天文学意义。

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