The detection of larger complex organic molecules, such as molecules consisting of several functional groups or those which show conformational flexibility, in the interstellar medium could lead to insights into the availability of biomolecules in space. We present the rotational spectroscopic study of three amino alcohols: alaninol, valinol, and leucinol. The spectra were recorded over the 2–110 GHz region, which included the utilization of a newly developed instrument operating between 18–26 GHz. We report accurately determined line lists, rotational constants, centrifugal distortion constants, and nuclear quadrupole coupling constants for two conformers of alaninol, four conformers of valinol, and three conformers of leucinol, as well as...
Context. Aminoacetonitrile has been detected in the interstellar medium, and the Strecker-type synth...
Context. The acetaldehyde molecule is ubiquitous in the interstellar medium of our galaxy, and due t...
Author Institution: Dipartimento di Chimica Ciamician, Universita di Bologna, via Selmi 2,40126 Bolo...
The interplay between laboratory spectroscopy and observational astronomy has allowed for the chemic...
Aminoethanol is a predicted precursor to the amino acid alanine in the interstellar medium and is th...
Author Institution: Division of Chemistry, Graduate School of Science, Kyoto University, Kyoto 606-8...
It is important to study possible precursors of amino acids such as glycine to enable future searche...
The detection of molecules in space, is based on their spectroscopic features and high resolution sp...
Flexible molecules show a complex conformational space, generally shaped by non bonding interactions...
The enhancing sensibility of radioastronomical observations allows for detec- tion of complex organi...
The enhancing sensibility of radioastronomical observations allows for detec- tion of complex organi...
Author Institution: Department of Environmental Science, Toho University, 2-2-1 Miyama, Funabashi, 2...
It is commonly believed that accumulation of organic molecules of increasing complexity is an import...
Complex molecules have been identified in star-forming regions and their formation is linked to the ...
Aims. Methoxyamine is a potential interstellar amine that has been predicted by gas-grain chemical m...
Context. Aminoacetonitrile has been detected in the interstellar medium, and the Strecker-type synth...
Context. The acetaldehyde molecule is ubiquitous in the interstellar medium of our galaxy, and due t...
Author Institution: Dipartimento di Chimica Ciamician, Universita di Bologna, via Selmi 2,40126 Bolo...
The interplay between laboratory spectroscopy and observational astronomy has allowed for the chemic...
Aminoethanol is a predicted precursor to the amino acid alanine in the interstellar medium and is th...
Author Institution: Division of Chemistry, Graduate School of Science, Kyoto University, Kyoto 606-8...
It is important to study possible precursors of amino acids such as glycine to enable future searche...
The detection of molecules in space, is based on their spectroscopic features and high resolution sp...
Flexible molecules show a complex conformational space, generally shaped by non bonding interactions...
The enhancing sensibility of radioastronomical observations allows for detec- tion of complex organi...
The enhancing sensibility of radioastronomical observations allows for detec- tion of complex organi...
Author Institution: Department of Environmental Science, Toho University, 2-2-1 Miyama, Funabashi, 2...
It is commonly believed that accumulation of organic molecules of increasing complexity is an import...
Complex molecules have been identified in star-forming regions and their formation is linked to the ...
Aims. Methoxyamine is a potential interstellar amine that has been predicted by gas-grain chemical m...
Context. Aminoacetonitrile has been detected in the interstellar medium, and the Strecker-type synth...
Context. The acetaldehyde molecule is ubiquitous in the interstellar medium of our galaxy, and due t...
Author Institution: Dipartimento di Chimica Ciamician, Universita di Bologna, via Selmi 2,40126 Bolo...