Ly-$α$ processing of solid-state Ethanolamine: Potential Precursors to Sugar and Peptide Derivatives

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Hauptverfasser: Suhasaria, T., Wee, S. M., Basalgète, R., Krasnokutski, S., Jäger, C., Schwarz, K., Henning, Th.
Format: Preprint
Veröffentlicht: 2025
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author Suhasaria, T.
Wee, S. M.
Basalgète, R.
Krasnokutski, S.
Jäger, C.
Schwarz, K.
Henning, Th.
author_facet Suhasaria, T.
Wee, S. M.
Basalgète, R.
Krasnokutski, S.
Jäger, C.
Schwarz, K.
Henning, Th.
contents Ethanolamine (EA), a key component of phospholipids, has recently been detected in the interstellar medium within molecular clouds. To understand this observation, laboratory studies of its formation and destruction are essential and should be complemented by astrochemical models. This study investigates the photostability of EA ice under Lyman (Ly)-$α$ (10.2 eV) irradiation at 10 K, and explores its potential role in the formation of simple and complex organic molecules in molecular clouds. The UV destruction cross section of EA was estimated to be ($4.7\pm0.3)\times10^{-18}$ cm$^2$, providing insight into its half-life of $6.5\times10^{7}$ yr in dense interstellar clouds. Fourier transform infrared spectroscopy and quadrupole mass spectrometry were used to identify various photoproducts, with their formation pathways discussed. Ethylene glycol and serine were tentatively detected during the warming up process following irradiation, suggesting that EA could contribute to the formation of prebiotic molecules such as sugars, peptides and their derivatives. High mass signals detected in the mass spectrometer suggest the presence of several complex organic molecules, and further analysis of residues at room temperature is planned for future work. The results suggest that EA could contribute to the formation of prebiotic molecules in space, with implications for the origin of life.
format Preprint
id arxiv_https___arxiv_org_abs_2502_07970
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Ly-$α$ processing of solid-state Ethanolamine: Potential Precursors to Sugar and Peptide Derivatives
Suhasaria, T.
Wee, S. M.
Basalgète, R.
Krasnokutski, S.
Jäger, C.
Schwarz, K.
Henning, Th.
Astrophysics of Galaxies
Ethanolamine (EA), a key component of phospholipids, has recently been detected in the interstellar medium within molecular clouds. To understand this observation, laboratory studies of its formation and destruction are essential and should be complemented by astrochemical models. This study investigates the photostability of EA ice under Lyman (Ly)-$α$ (10.2 eV) irradiation at 10 K, and explores its potential role in the formation of simple and complex organic molecules in molecular clouds. The UV destruction cross section of EA was estimated to be ($4.7\pm0.3)\times10^{-18}$ cm$^2$, providing insight into its half-life of $6.5\times10^{7}$ yr in dense interstellar clouds. Fourier transform infrared spectroscopy and quadrupole mass spectrometry were used to identify various photoproducts, with their formation pathways discussed. Ethylene glycol and serine were tentatively detected during the warming up process following irradiation, suggesting that EA could contribute to the formation of prebiotic molecules such as sugars, peptides and their derivatives. High mass signals detected in the mass spectrometer suggest the presence of several complex organic molecules, and further analysis of residues at room temperature is planned for future work. The results suggest that EA could contribute to the formation of prebiotic molecules in space, with implications for the origin of life.
title Ly-$α$ processing of solid-state Ethanolamine: Potential Precursors to Sugar and Peptide Derivatives
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2502.07970