Astrochemical model to study the abundances of branched carbon-chain molecules in a hot molecular core with realistic binding energies
arXiv:2208.03531 · doi:10.1093/mnras/stac1904
Abstract
Straight-chain (normal-propyl cyanide, n - C3H7CN) and branched-chain (iso-propyl cyanide, i - C3H7CN) alkyl cyanides are recently identified in the massive star-forming regions (Sgr B2(N) and Orion). These branched-chain molecules indicate that the key amino acids (side-chain structures) may also be present in a similar region. The process by which this branching could propagate towards the higher-order (butyl cyanide, C4H9CN) is an active field of research. Since the grain catalysis process could have formed a major portion of these species, considering a realistic set of binding energies are indeed essential. We employ quantum chemical calculations to estimate the binding energy of these species considering water as a substrate because water is the principal constituent of this interstellar ice. We find significantly lower binding energy values for these species than were previously used. It is noticed that the use of realistic binding energy values can significantly change the abundance of these species. The branching is more favorable for the higher-order alkyl cyanides with the new binding energies. With the inclusion of our new binding energy values and one essential destruction reaction (i - C3H7CN + H -> CH3C(CH3)CN + H2, having an activation barrier of 947 K), abundances of t - C4H9CN dramatically increased.
16 pages, 16 figures, 8 tables, accepted for publication in MNRAS
References in corpus (17)
- Detection of Two Interstellar Polycyclic Aromatic Hydrocarbons via Spectral Matched Filtering
- Discovery of the Interstellar Chiral Molecule Propylene Oxide (CHCHCHO)
- Detection of a branched alkyl molecule in the interstellar medium: iso-propyl cyanide
- Discovery of the Pure Polycyclic Aromatic Hydrocarbon Indene (-CH) with GOTHAM Observations of TMC-1
- A new modified-rate approach for gas-grain chemical simulations
- Discovery in space of ethanolamine, the simplest phospholipid head group
- Discovery of two isomers of ethynyl cyclopentadiene in TMC-1: Abundances of CCH and CN derivatives of hydrocarbon cycles
- First detection of the pre-biotic molecule glycolonitrile (HOCH2CN) in the interstellar medium
- Propargylimine in the laboratory and in space: millimetre-wave spectroscopy and first detection in the ISM
- Search for Interstellar monohydric Thiols
- Formation of water and methanol in star forming molecular clouds
- Effects of Initial Condition and Cloud Density on the Composition of the Grain Mantle
- Chemical complexity of phosphorous bearing species in various regions of the Interstellar medium
- The Possibility of Forming Propargyl Alcohol in the Interstellar Medium
- Effect of binding energies on the encounter desorption
- C5H9N Isomers: Pointers to Possible Branched Chain Interstellar Molecules
- A Systematic Study on the Absorption Features of Interstellar Ices in Presence of Impurities