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Infrared Spectroscopy of Matrix-Isolated Polycyclic Aromatic Hydrocarbon Cations. 3. The Polyacenes Anthracene, Tetracene, and Pentacene

机译:基质分离的多环芳烃阳离子的红外光谱。 3.聚并蒽,蒽,四苯并五苯

摘要

Gaseous, ionized Polycyclic Aromatic Hydrocarbons (PAH's) are thought to be responsible for a very common family of interstellar infrared emission bands. Unfortunately, very little infrared spectroscopic data are available on ionized PAH's. Here we present the near- and mid-infrared spectra of the polyacene cations anthracene, tetracene, and pentacene. We also report the vibrational frequencies and relative intensities of the pentacene anion. The cation bands corresponding to the CC modes are typically about 10-20 times more intense than those of the CH out-of-plane bending vibrations. For the cations the CC stretching and CH in-plane bending modes give rise to bands which are an order of magnitude stronger than for the neutral species, and the CH out-of-plane bends produce bands which are 3-20 times weaker than in the neutral species. This behavior is similar to that found for most other PAH cations. The most intense PAH cation bands fall within the envelopes of the most intense interstellar features. The strongest absorptions in the polyacenes anthracene, tetracene, and pentacene tend to group around 1400 / cm (between about 1340 and 1500 / cm) and near 1180 /cm, regions of only moderate interstellar emission. These very strong polyacene bands tend to fall in gaps in the spectra of the other PAH cations studied to date suggesting that while PAHs with polyacene structures may contribute to specific regions of the interstellar emission spectra, they are not dominant members of the interstellar PAH family.
机译:气态,离子化的多环芳烃(PAH's)被认为是星际红外发射带非常常见的家族。不幸的是,离子化多环芳烃的红外光谱数据很少。在这里,我们介绍了多并苯阳离子蒽,并四苯和并五苯的近红外和中红外光谱。我们还报告了并五苯阴离子的振动频率和相对强度。对应于CC模式的阳离子带的强度通常比CH平面外弯曲振动的强度高大约10-20倍。对于阳离子,CC拉伸和CH面内弯曲模式会产生比中性物种强一个数量级的谱带,而CH面外弯曲会产生比中性离子弱3-20倍的谱带。中性物种。此行为类似于大多数其他PAH阳离子所发现的行为。最强的PAH阳离子带落在最强的星际特征的包络线之内。聚乙烯,蒽,并四苯和并五苯中最强的吸收趋于集中在1400 / cm(约1340和1500 / cm之间)和1180 / cm附近,只有中等的星际发射区域。这些非常强的多并苯谱带倾向于落在迄今为止研究的其他PAH阳离子光谱的间隙中,这表明尽管具有多并苯结构的PAH可能有助于星际发射光谱的特定区域,但它们不是星际PAH家族的主要成员。

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