Broadband Microwave Spectroscopy of 2’-Hydroxyacetophenone: A Complex Oxygenated Ring for Interstellar Searches

We report the laboratory rotational spectroscopy of 2’-hydroxyacetophenone, a promising candidate for the first detection of a complex oxygenated aromatic ring in the interstellar medium. The molecule is stabilized by a strong intramolecular hydrogen bond and is dominated by a single conformer with a favorable electric dipole moment (μa=0.77 D, μb=3.15 D). Spectra were recorded using chirped-pulse pulsed-jet Fourier-transform microwave spectroscopy in the 2–8 GHz region and combined with previously reported free-jet millimeter-wave absorption data. A global least-squares analysis of both data sets yields highly accurate spectroscopic constants, including the rotational constants A=2277.0739(5) MHz, B=1212.1098(3) MHz, and C=795.2762(3) MHz, while accounting for the methyl internal rotation barrier (V3=546.8(4) cm−1). These parameters were then used to generate a comprehensive set of predicted transition frequencies extending up to 163 GHz (ALMA Band 4), providing a solid foundation for future astronomical searches in cold sources.

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Journal
Physchem
Published
2026-09-16
DOI
https://doi.org/10.3390/physchem6030059
Primary Topic
Molecular Spectroscopy and Structure
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article
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article

Broadband Microwave Spectroscopy of 2’-Hydroxyacetophenone: A Complex Oxygenated Ring for Interstellar Searches

Filippo Baroncelli, Assimo Maris, Susana Blanco, Riccardo Stanganini
Physchem
Molecular Spectroscopy and Structure
article

Broadband Microwave Spectroscopy of 2’-Hydroxyacetophenone: A Complex Oxygenated Ring for Interstellar Searches

Filippo Baroncelli, Assimo Maris, Susana Blanco, Riccardo Stanganini
article en

Abstract

We report the laboratory rotational spectroscopy of 2’-hydroxyacetophenone, a promising candidate for the first detection of a complex oxygenated aromatic ring in the interstellar medium. The molecule is stabilized by a strong intramolecular hydrogen bond and is dominated by a single conformer with a favorable electric dipole moment (μa=0.77 D, μb=3.15 D). Spectra were recorded using chirped-pulse pulsed-jet Fourier-transform microwave spectroscopy in the 2–8 GHz region and combined with previously reported free-jet millimeter-wave absorption data. A global least-squares analysis of both data sets yields highly accurate spectroscopic constants, including the rotational constants A=2277.0739(5) MHz, B=1212.1098(3) MHz, and C=795.2762(3) MHz, while accounting for the methyl internal rotation barrier (V3=546.8(4) cm−1). These parameters were then used to generate a comprehensive set of predicted transition frequencies extending up to 163 GHz (ALMA Band 4), providing a solid foundation for future astronomical searches in cold sources.

PhyschemVol. 6(3)
Universidad de Valladolid (ES), University of Bologna (IT)
Openalex Percentile: Top 21%
Molecular Spectroscopy and Structure
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Broadband Microwave Spectroscopy of 2’-Hydroxyacetophenone: A Complex Oxygenated Ring for Interstellar Searches — Filippo Baroncelli, Assimo Maris, et al. · Physchem (2026) | TGRS Research Map | TGRS