Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
9582412 | Chemical Physics Letters | 2005 | 6 Pages |
Abstract
The theoretical calculations on magnetic exchange of the title complex are carried out by using multiconfigurational second-order perturbation theory, CASPT2, and density functional theory combined with broken-symmetry approach, DFT-BS. The CASPT2 calculated quartet ground state, stabilized by 8.02Â cmâ1 compared with the nearest excited doublet state, is close to 5Â cmâ1 of the experimental measurement. The dependence of energy levels on the ratio J23/J12,13 validates occurrence of the spin frustration phenomenon. Both CASPT2 and DFT-BS calculations reproduce well experimentally coupling constants of J12,13Â =Â â9.35Â cmâ1, J23Â =Â â3.95Â cmâ1, for CASPT2 J12,13Â =Â â6Â cmâ1, J23Â =Â â2Â cmâ1 and for DFT-BS J12,13Â =Â â11.31Â cmâ1, J23Â =Â â4.20Â mâ1. The methodological comparison is briefly discussed.
Related Topics
Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
Haiyan Wei, Bingwu Wang, Zhida Chen,