Probing the chemical complexity of amines in the ISM: detection of vinylamine (C$_2$H$_3$NH$_2$) and tentative detection of ethylamine (C$_2$H$_5$NH$_2$)
Shaoshan Zeng, Izaskun Jim\'enez-Serra, V\'ictor M. Rivilla, Jes\'us, Mart\'in-Pintado, Lucas F. Rodr\'iguez-Almeida, Bel\'en Tercero, Pablo de, Vicente, Fernando Rico-Villas, Laura Colzi, Sergio Mart\'in, Miguel A., Requena-Torres

TL;DR
This study reports the first detection of vinylamine and tentative detection of ethylamine in the interstellar medium, providing insights into amino compound chemistry relevant to prebiotic molecule formation.
Contribution
It presents the first interstellar detection of vinylamine and a tentative detection of ethylamine, expanding knowledge of amine complexity in space.
Findings
Vinylamine detected with abundance ~3.3×10⁻¹⁰ relative to H₂.
Tentative detection of ethylamine with abundance ~1.9×10⁻¹⁰.
Comparison of amine abundances across different star-forming regions.
Abstract
Amines, in particular primary amines (R-NH) are closely related to the primordial synthesis of amino acids since they share the same structural backbone. However, only limited number of amines has been identified in the ISM which prevents us from studying their chemistry as well as their relation to pre-biotic species that could lead to the emergence of life. In this letter, we report the first interstellar detection of vinylamine (CHNH) and tentative detection of ethylamine (CHNH) towards the Galactic Centre cloud G+0.693-0.027. The derived abundance with respect to H is (3.30.4)10 and (1.90.5)10, respectively. The inferred abundance ratios of CHNH and CHNH with respect to methylamine (CHNH) are 0.02 and 0.008 respectively. The derived abundance of CHNH,…
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