MULTICONFIGURATIONAL 2ND-ORDER PERTURBATION-THEORY APPLIED TO THE CALCULATION OF ELECTRONIC-SPECTRA OF CONJUGATED SYSTEMS

Citation
Bo. Roos et al., MULTICONFIGURATIONAL 2ND-ORDER PERTURBATION-THEORY APPLIED TO THE CALCULATION OF ELECTRONIC-SPECTRA OF CONJUGATED SYSTEMS, Pure and applied chemistry, 65(8), 1993, pp. 1693-1698
Citations number
21
Categorie Soggetti
Chemistry
Journal title
ISSN journal
00334545
Volume
65
Issue
8
Year of publication
1993
Pages
1693 - 1698
Database
ISI
SICI code
0033-4545(1993)65:8<1693:M2PATT>2.0.ZU;2-L
Abstract
A newly proposed method for the calculation of complex electronic stru ctures in molecules is applied to the calculation of excited states. T he method is a two step procedure: The Complete Active Space (CAS) SCF method is used to calculate the molecular orbitals and a reference fu nction. This step thus takes care of the basic interactions including the coupling of nearly degenerate configurations, which is very common for excited states. Dynamic electron correlation effects are added in the second step, where second order perturbation theory is used with the CASSCF wave function constituting the reference function. The proc edure has been successfully applied to a number of electronic spectra, yielding results of much higher accuracy than has been possible to ob tain with traditional CI based methods. The lectures will give example s from studies of benzene, the azabenzenes, short polyenes, and three hetero-cyclic pentadienes. In several of these studies have the theore tical results provided a new understanding of the spectra and suggeste d a number of new assignments.