Multireference coupled-cluster calculations on the energy of activation inthe automerization of cyclobutadiene: Assessment of the state-specific multireference Brillouin-Wigner theory

Citation
Jc. Sancho-garcia et al., Multireference coupled-cluster calculations on the energy of activation inthe automerization of cyclobutadiene: Assessment of the state-specific multireference Brillouin-Wigner theory, J CHEM PHYS, 112(20), 2000, pp. 8785-8788
Citations number
18
Categorie Soggetti
Physical Chemistry/Chemical Physics
Journal title
JOURNAL OF CHEMICAL PHYSICS
ISSN journal
00219606 → ACNP
Volume
112
Issue
20
Year of publication
2000
Pages
8785 - 8788
Database
ISI
SICI code
0021-9606(20000522)112:20<8785:MCCOTE>2.0.ZU;2-9
Abstract
Hilbert-space state-universal multireference coupled-cluster (MR CC) data o n cyclobutadiene [A. Balkova and R. J. Bartlett, J. Chem. Phys. 101, 8972 ( 1994)] were used as a benchmark for testing our recently developed state-sp ecific (single-root) multireference Brillouin-Wigner coupled-cluster (MR BW CC) theory. For the energy of activation in the automerization of cyclobuta diene (i.e., the energy difference between the square and rectangular struc tures) at the CCSD/[3s2p1d/2s] level of theory, our MR BWCCSD method gives the value of 6.2 kcal/mol, compared to 6.5 kcal/mol given by MR CCSD. With the cc-pVDZ and cc-pVTZ/cc-pVDZ basis sets, the MR BWCCSD activation barrie r is 6.4 and 7.0 kcal/mol, respectively. The effect of the triple excitatio ns [in MR CCSD(T)] and of the frozen core approximation were estimated prev iously to be below 0.1 kcal/mol and in the opposite direction. This shows t he way of how to arrive at a more accurate automerization barrier in future calculations: extension of the basis set seems to be more important than g oing beyond the CCSD(T) or MB BWCCSD level of the theory. (C) 2000 American Institute of Physics. [S0021-9606(00)30415-9].