TY - JOUR
T1 - The electronic states of 1,2,3-triazole studied by vacuum ultraviolet photoabsorption and ultraviolet photoelectron spectroscopy, and a comparison with ab initio configuration interaction methods
AU - Palmer, Michael H.
AU - Hoffmann, Søren Vrønning
AU - Jones, Nykola C.
AU - Head, Ashley R.
AU - Lichtenberger, Dennis L.
N1 - Funding Information:
We thank: (a) the UK National Grid Service (NGS) Operations Support Centre and the National Service for Computational Chemistry Software (NSCCS) for computing support; (b) Dr. P. Sherwood (Daresbury Laboratory) for maintenance of the GAMES-UK suite of programmes. D.L.L. thanks the National Science Foundation through the Project CHE-0749530. A.R.H. thanks the Department of Chemistry and Biochemistry, The University of Arizona, for support of the Molecular Photoelectron Spectroscopy facility. We thank a reviewer for helpful comments in relation to the f-Rydberg series being readily observed.
PY - 2011/2/28
Y1 - 2011/2/28
N2 - The Rydberg states in the vacuum ultraviolet photoabsorption spectrum of 1,2,3-triazole have been measured and analyzed with the aid of comparison to the UV valence photoelectron ionizations and the results of ab initio configuration interaction (CI) calculations. Calculated electronic ionization and excitation energies for singlet, triplet valence, and Rydberg states were obtained using multireference multiroot CI procedures with an aug-cc-pVTZ 5s3p3d1f basis set and a set of Rydberg 4s3p3d3f functions. Adiabatic excitation energies obtained for several electronic states using coupled-cluster (singles, doubles, and triples) and complete active space self-consistent field procedures agree well with experimental values. Variations in bond lengths with the electronic state are discussed. The lowest energy UV band (∼5.5-6.5 eV) is assigned to three electronically excited states and demonstrates the occurrence of a nonplanar upper state on the low energy side. A UV photoelectron spectrum with an improved resolution yielded adiabatic and vertical ionization energies and reorganization energies for several of the lowest cationic states. As well as excitations to the s, p, d-Rydberg states are the excitations consistent with an f-series.
AB - The Rydberg states in the vacuum ultraviolet photoabsorption spectrum of 1,2,3-triazole have been measured and analyzed with the aid of comparison to the UV valence photoelectron ionizations and the results of ab initio configuration interaction (CI) calculations. Calculated electronic ionization and excitation energies for singlet, triplet valence, and Rydberg states were obtained using multireference multiroot CI procedures with an aug-cc-pVTZ 5s3p3d1f basis set and a set of Rydberg 4s3p3d3f functions. Adiabatic excitation energies obtained for several electronic states using coupled-cluster (singles, doubles, and triples) and complete active space self-consistent field procedures agree well with experimental values. Variations in bond lengths with the electronic state are discussed. The lowest energy UV band (∼5.5-6.5 eV) is assigned to three electronically excited states and demonstrates the occurrence of a nonplanar upper state on the low energy side. A UV photoelectron spectrum with an improved resolution yielded adiabatic and vertical ionization energies and reorganization energies for several of the lowest cationic states. As well as excitations to the s, p, d-Rydberg states are the excitations consistent with an f-series.
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U2 - 10.1063/1.3549812
DO - 10.1063/1.3549812
M3 - Article
C2 - 21361541
AN - SCOPUS:79952094128
SN - 0021-9606
VL - 134
JO - Journal of Chemical Physics
JF - Journal of Chemical Physics
IS - 8
M1 - 084309
ER -