4.7 Article

Gas-phase formation of the prebiotic molecule formamide: insights from new quantum computations

Journal

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY
Volume 453, Issue 1, Pages L31-L35

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/mnrasl/slv094

Keywords

ISM: abundances; ISM: molecules

Funding

  1. COST Action [CM 1401]
  2. Universite Grenoble Alpes
  3. Observatoire de Grenoble
  4. European Research Council under the European Union's Seventh Framework Programme (FP) [320951]

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New insights into the formation of interstellar formamide, a species of great relevance in prebiotic chemistry, are provided by electronic structure and kinetic calculations for the reaction NH2 + H2CO -> NH2CHO + H. Contrarily to what previously suggested, this reaction is essentially barrierless and can, therefore, occur under the low temperature conditions of intestellar objects thus providing a facile formation route of formamide. The rate coefficient parameters for the reaction channel leading to NH2CHO + H have been calculated to bA = 2.6 x 10(-12) cm(3) s(-1), beta = -2.1 and gamma = 26.9 K in the range of temperatures 10-300 K. Including these new kinetic data in a refined astrochemical model, we show that the proposed mechanism can well reproduce the abundances of formamide observed in two very different interstellar objects: the cold envelope of the Sun-like protostar IRAS16293-2422 and the molecular shock L1157-B2. Therefore, the major conclusion of this Letter is that there is no need to invoke grain-surface chemistry to explain the presence of formamide provided that its precursors, NH2 and H2CO, are available in the gas phase.

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