Complex Reactive Acids from Methanol and Carbon Dioxide Ice: Glycolic Acid (HOCH2COOH) and Carbonic Acid Monomethyl Ester (CH3OCOOH)

The formation of complex organic molecules by simulated secondary electrons generated in the track of galactic cosmic rays was investigated in interstellar ice analogs composed of methanol and carbon dioxide. The processed ices were subjected to temperature-programmed desorption to mimic the transit...

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Bibliographic Details
Published in:The Astrophysical Journal
Main Authors: Joshua H. Marks, Jia Wang, Mikhail M. Evseev, Oleg V. Kuznetsov, Ivan O. Antonov, Ralf I. Kaiser
Format: Article in Journal/Newspaper
Language:English
Published: IOP Publishing 2023
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Online Access:https://doi.org/10.3847/1538-4357/ac97e3
https://doaj.org/article/f58a6307df104fb79e8bea574b968fc9
Description
Summary:The formation of complex organic molecules by simulated secondary electrons generated in the track of galactic cosmic rays was investigated in interstellar ice analogs composed of methanol and carbon dioxide. The processed ices were subjected to temperature-programmed desorption to mimic the transition of a cold molecular cloud to a warmer star-forming region. Reaction products were detected as they sublime using photoionization reflectron time-of-flight mass spectrometry. By employing isotopic labeling, tunable photoionization and computed adiabatic ionization energies isomers of C _2 H _4 O _3 were investigated. Product molecules carbonic acid monomethyl ester (CH _3 OCOOH) and glycolic acid (HOCH _2 COOH) were identified. The abundance of the reactants detected in analog interstellar ices and the low irradiation dose necessary to form these products indicates that these molecules are exemplary candidates for interstellar detection. Molecules sharing a tautomeric relationship with glycolic acid, dihydroxyacetaldehyde ((OH) _2 CCHO), and the enol ethenetriol (HOCHC(OH) _2 ), were not found to form despite ices being subjected to conditions that have successfully produced tautomerization in other ice analog systems.