Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5418289 | Journal of Molecular Structure: THEOCHEM | 2006 | 6 Pages |
Abstract
The mechanism of the spin-forbidden reaction N(S4)+CS2(Xâg+1)âNS(Xâ2)+CS(X1â+) on both doublet and quartet potential energy surfaces has been investigated at B3LYP, CCSD(T) and CASSCF levels of theory. The minimum energy point (MEX-1) on the doublet-quartet crossing surface is determined using the complete-active-space-self-consistent field (CASSCF) calculations with (3,4), (5,5), (7,6), and (7,7) active spaces with a weighting of 50%/50% to the doublet and quartet states. The minimum energy point (MEX-1) has a Cs structure resembling the intermediate structure 2M-1. The intersystem crossing at the MEX-1 crossing point is taking place, and it is attributed to the stronger spin-orbit coupling (SOC)(50.2-75.5Â cmâ1) and the barrier (65.01-72.10Â kJ/mol) with respect to the ground state reactants N(S4)+CS2(Xâg+1). This is in close agreement with the experimental observation reporting large rate coefficients.
Related Topics
Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
Ling-Ling LÃ, Xiao-Fang Wang, Yong-Cheng Wang, Han-Qin Wang,