Prebiotic Synthesis and Isomerization in Interstellar Analog Ice: Glycinal, Acetamide, and Their Enol Tautomers

Author:

Marks Joshua H.12ORCID,Wang Jia12ORCID,Kleimeier N. Fabian12ORCID,Turner Andrew M.12,Eckhardt André K.3ORCID,Kaiser Ralf I.12ORCID

Affiliation:

1. Department of Chemistry University of Hawaii at Manoa Honolulu HI 96822 USA

2. W. M. Keck Research Laboratory in Astrochemistry University of Hawaii at Manoa Honolulu HI 96822 USA

3. Lehrstuhl für Organische Chemie II Ruhr-Universität Bochum 44801 Bochum Germany

Abstract

AbstractGlycinal (HCOCH2NH2) and acetamide (CH3CONH2) are simple molecular building blocks of biomolecules in prebiotic chemistry, though their origin on early Earth and formation in interstellar media remain a mystery. These molecules are formed with their tautomers in low temperature interstellar model ices upon interaction with simulated galactic cosmic rays. Glycinal and acetamide are accessed via barrierless radical‐radical reactions of vinoxy (⋅CH2CHO) and acetyl (⋅C(O)CH3), and then undergo keto‐enol tautomerization. Exploiting tunable photoionization reflectron time‐of‐flight mass spectroscopy and photoionization efficiency (PIE) curves, these results demonstrate fundamental reaction pathways for the formation of complex organics through non‐equilibrium ice reactions in cold molecular cloud environments. These molecules demonstrate an unconventional starting point for abiotic synthesis of organics relevant to contemporary biomolecules like polypeptides and cell membranes in deep space.

Funder

National Science Foundation

Deutsche Forschungsgemeinschaft

W. M. Keck Foundation

Fonds der Chemischen Industrie

Publisher

Wiley

Subject

General Medicine

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