M. Merchan et R. Gonzalezluque, AB-INITIO STUDY ON THE LOW-LYING EXCITED-STATES OF RETINAL, The Journal of chemical physics, 106(3), 1997, pp. 1112-1122
Ab initio results for the electronic spectrum of all-trans-retinal and
its truncated model 3-methyl-all-trans (10-s-cis)-2,4,6,8,10-undecape
ntaen-1-al are presented. The study includes geometry determination of
the ground state. Vertical excitation energies have been computed usi
ng multiconfigurational second-order perturbation theory through the C
ASPT2 formalism. The lowest singlet excited state in gas phase is pred
icted to be of n pi character. The lowest triplet state corresponds,
however, to a pi pi state. The most intense feature of the spectrum i
s due to the strongly dipole-allowed pi pi transition, in accordance
with the observed maximum in the one-photon spectra. The vertical exci
tation energies of the B-u- and A(g)-like states are found close, the
latter approximate to 1 eV higher than the maximum in the two-photon s
pectra. Solvent effects and nonvertical nature of the observed maximum
in the two-photon spectra are invoked in rationalizing the deviation
with respect to the best present estimate for the A(g)-like state. In
addition, qualitative aspects of the one-bond photoisomerization about
the C-11=C-12 double bond of retinal are considered. The overall isom
erization picture from 11-cis into all-trans-retinal, as taking place
mainly along the triplet manifold, agrees with experimental evidence.
(C) 1996 American Institute of Physics.