Gas-phase formation of acetaldehyde: review and new theoretical computations
Fanny Vazart, Cecilia Ceccarelli, Nadia Balucani, Eleonora Bianchi and, Dimitrios Skouteris

TL;DR
This paper reviews and investigates gas-phase formation routes of acetaldehyde in space, using new quantum chemistry computations and kinetics modeling to identify the most plausible pathways for its formation in the interstellar medium.
Contribution
It provides the first low-temperature quantum chemistry computations for two key formation routes and clarifies which pathways are viable for acetaldehyde synthesis in space.
Findings
Reaction with C2H5 + O is efficient in forming acetaldehyde.
Reaction with CH3OH + CH is ineffective at low temperatures.
Path (4) may be the dominant formation route in space.
Abstract
Among all the interstellar complex organic molecules (iCOMs), acetaldehyde is one of the most widely detected species. The question of its formation route(s) is, therefore, of a major interest regarding astrochemical models. In this paper, we provide an extensive review of the gas-phase formation paths that were, or are, reported in the literature and the major astrochemical databases. Four different gas-phase formation routes stand out : (1) CHOCH + H / CHCHOH + e, (2) CH + O(P), (3) CHOH + CH and (4) CHCHOH + OH / CHCHOH + O(P). Paths (2) and (3) were not studied neither via laboratory or theoretical works in the low temperature and density regime valid for the ISM. Thus, we carried out new accurate quantum chemistry computations. A theoretical kinetics study at low temperatures (7-300 K), adopting the RRKM scheme, was also…
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