Irradiated benzene ice provides clues to meteoritic organic chemistry

Michael P. Callahan, Perry A. Gerakines, Mildred G. Martin, Zan Peeters, Reggie L. Hudson

Research output: Contribution to journalArticlepeer-review

26 Scopus citations

Abstract

Aromatic hydrocarbons account for a significant portion of the organic matter in carbonaceous chondrite meteorites, as a component of both the low molecular weight, solvent-extractable compounds and the insoluble organic macromolecular material. Previous work has suggested that the aromatic compounds in carbonaceous chondrites may have originated in the radiation-processed icy mantles of interstellar dust grains. Here we report new studies of the organic residue made from benzene irradiated at 19. K by 0.8. MeV protons. Polyphenyls with up to four rings were unambiguously identified in the residue by gas chromatography-mass spectrometry. Atmospheric pressure photoionization Fourier transform mass spectrometry was used to determine molecular composition, and accurate mass measurements suggested the presence of polyphenyls, partially hydrogenated polyphenyls, and other complex aromatic compounds. The profile of low molecular weight compounds in the residue compared well with extracts from the Murchison and Orgueil meteorites. These results are consistent with the possibility that solid phase radiation chemistry of benzene produced some of the complex aromatics found in meteorites.

Original languageEnglish
Pages (from-to)1201-1209
Number of pages9
JournalIcarus
Volume226
Issue number2
DOIs
StatePublished - Nov 2013

Keywords

  • Astrobiology
  • Cosmic rays
  • Cosmochemistry
  • Experimental techniques
  • Ices, IR spectroscopy

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