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Electronic Characterization of Glycolaldehyde: Experimental and Theoretical Insights from the Core- and Valence-Level Spectroscopy.

Sarai Dery FolkestadAlexander C PaulAurora PonziCesare GrazioliMarcello CorenoMonica de SimoneEirik F KjønstadSonia Coriani
Published in: The journal of physical chemistry. A (2023)
The core-level electron excitation and ionization spectra of glycolaldehyde have been investigated by photoabsorption and photoemission spectroscopy at both carbon and oxygen K -edges; the valence ionization spectra were also recorded by photoelectron spectroscopy in the UV-vis region. The spectra are interpreted by means of ab initio calculations based on the equation-of-motion coupled cluster singles and doubles (EOM-CCSD) and coupled cluster singles, doubles, and perturbative are in good agreement with the experimental results, and many of the observed features are assigned. The photoabsorption spectra are not only dominated by transitions from core-level orbitals to unoccupied π and σ orbitals but also show structures due to Rydberg transitions.
Keyphrases
  • density functional theory
  • high resolution
  • molecular dynamics
  • single molecule
  • solid state
  • atomic force microscopy
  • mass spectrometry
  • high speed
  • energy transfer
  • electron transfer