Literature DB >> 11538457

Infrared spectroscopy of matrix-isolated polycyclic aromatic hydrocarbon cations. 2. The members of the thermodynamically most favorable series through coronene.

D M Hudgins1, L J Allamandola.   

Abstract

Gaseous, ionized polycyclic aromatic hydrocarbons (PAHs) are thought to be responsible for a very common family of interstellar infrared emission bands. Here the near- and mid-infrared spectra of the cations of the five most thermodynamically favored PAHs up to coronene:phenanthrene, pyrene, benzo[e]pyrene, benzo[ghi]perylene, and coronene, are presented to test this hypothesis. For those molecules that have been studied previously (pyrene, pyrene-d10, and coronene), band positions and relative intensities are in agreement. In all of these cases we report additional features. Absolute integrated absorbance values are given for the phenanthrene, perdeuteriophenanthrene, pyrene, benzo[ghi]perylene, and coronene cations. With the exception of coronene, the cation bands corresponding to the CC modes are typically 2-5 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 that are an order of magnitude stronger than those of the neutral species, and the CH out-of-plane bends produce bands that are 5-20 times weaker than those of the neutral species. This behavior is similar to that found in most other PAH cations studied to date. The astronomical implications of these PAH cation spectra are also discussed.

Entities:  

Keywords:  NASA Center ARC; NASA Discipline Exobiology; NASA Discipline Number 52-10; NASA Program Exobiology

Mesh:

Substances:

Year:  1995        PMID: 11538457     DOI: 10.1021/j100010a011

Source DB:  PubMed          Journal:  J Phys Chem        ISSN: 0022-3654


  3 in total

1.  The Infrared Spectra of Polycyclic Aromatic Hydrocarbons with Excess Peripheral H Atoms (Hn-PAHs) and their Relation to the 3.4 and 6.9 µm PAH Emission Features.

Authors:  Scott A Sandford; Max P Bernstein; Christopher K Materese
Journal:  Astrophys J Suppl Ser       Date:  2013-03-01       Impact factor: 8.136

2.  Photochemistry of coronene in cosmic water ice analogs at different concentrations.

Authors:  A L F de Barros; A L Mattioda; A Ricca; G Cruz; L J Allamandola
Journal:  Astrophys J       Date:  2017-10-20       Impact factor: 5.874

3.  Infrared Spectroscopy of Matrix-Isolated Neutral and Ionized Anthracoronene in Argon.

Authors:  A L F de Barros; A L Mattioda; J M Korsmeyer; A Ricca
Journal:  J Phys Chem A       Date:  2018-02-27       Impact factor: 2.781

  3 in total

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