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February 14, 2026SHILAP Revista de lepidopterología0 citationsOpen Access

Millimeter-wave Rotational Spectroscopy and Interstellar Search for 2-Mercaptoethanol (HSCH 2 CH 2 OH)

HBHayley BunnBEBrian J. EsselmanSSSilvia Spezzano

Key Points

  • The aim is to identify the presence of 2-mercaptoethanol in the interstellar medium and improve its spectral catalog.
  • Extended laboratory spectral measurements of 2-mercaptoethanol from ∼82 to 450 GHz.
  • Conducted searches for its rotational emission in multiple high-mass star-forming regions.
  • Performed an extensive analysis of 8584 rotational transitions.
  • No detection of 2-mercaptoethanol in studied interstellar regions.
  • Provided upper limits on column density for chemical modeling.
  • Improved spectral catalog aids in potential future identifications.

Abstract

Abstract Sulfur is one of the most abundant elements in the interstellar medium (ISM) and a key component for life, yet little is understood about its chemistry in the ISM. While increasingly larger molecules containing sulfur and oxygen are being observed in the ISM, the largest organic molecule containing oxygen and sulfur, monothioformic acid (HC(O)SH), was only recently detected. There is still no identification of a complex organic molecule (COM, carbon-bearing molecule with six or more atoms) containing both oxygen- and sulfur-bearing functional groups. We extended the laboratory rotational spectrum of 2-mercaptoethanol (HSCH 2 CH 2 OH), one of the simplest saturated COMs containing both oxygen and sulfur, into millimeter/submillimeter wavelengths, providing an improved spectral catalog at frequencies required for its interstellar identification. Millimeter/submillimeter transitions were measured for 2-mercaptoethanol from ∼82 to 450 GHz. Using the resulting spectral catalog, we searched for its rotational emission toward the Galactic Center molecular cloud G+0.693-0.027, the high-mass star-forming region Sgr B2(N), the cold dark core TMC-1, the hot core in Orion, and toward the hot corino surrounding the low-mass protostar IRAS 16293-2422B. An extensive analysis of 8584 transitions of 2-mercaptoethanol with J max ″ = 104, and K a max ″ = 64 is provided. The resulting fit includes a full set of quartic, sextic, and octic distortion constants. We report the nondetection of 2-mercaptoethanol and provide column density upper limits toward each source. While our interstellar search for 2-mercaptoethanol did not result in a detection, the upper limits on its column density provide important constraints for chemical models on the formation of oxygen- and sulfur-bearing COMs.

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Cite This Study

Bunn et al. (2026) studied this question.

synapsesocial.com/papers/699010382ccff479cfe56c62https://doi.org/10.3847/1538-4357/ae2254
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