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Computational study of the ro-vibrational spectrum of CO–CO2
Author(s) -
Eduardo Castro-Juárez,
Xiaogang Wang,
Tucker Carrington,
Ernesto QuintasSánchez,
Richard Dawes
Publication year - 2019
Publication title -
the journal of chemical physics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.071
H-Index - 357
eISSN - 1089-7690
pISSN - 0021-9606
DOI - 10.1063/1.5119762
Subject(s) - vibrational spectrum , spectrum (functional analysis) , chemistry , computational chemistry , environmental chemistry , physics , molecule , organic chemistry , quantum mechanics
An accurate ab initio ground-state intermolecular potential energy surface (PES) was determined for the CO-CO van der Waals dimer. The Lanczos algorithm was used to compute rovibrational energies on this PES. For both the C-in and O-in T-shaped isomers, the fundamental transition frequencies agree well with previous experimental results. We confirm that the in-plane states previously observed are geared states. In addition, we have computed and assigned many other vibrational states. The rotational constants we determine from J = 1 energy levels agree well with their experimental counterparts. Planar and out-of-plane cuts of some of the wavefunctions we compute are quite different, indicating strong coupling between the bend and torsional modes. Because the stable isomers are T-shaped, vibration along the out-of-plane coordinates is very floppy. In CO-CO, when the molecule is out-of-plane, interconversion of the isomers is possible, but the barrier height is higher than the in-plane geared barrier height.

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