Attempts to model neutral solitons in polyacetylene by ab initio and density functional methods. The nature of the spin distribution in polyenyl radicals
T. Bally et al., Attempts to model neutral solitons in polyacetylene by ab initio and density functional methods. The nature of the spin distribution in polyenyl radicals, PHYS CHEM P, 2(15), 2000, pp. 3363-3371
Different quantum chemical methods have been examined, in order to test the
ir abilities to model long polyenyl radicals and, in the limit, a neutral s
oliton in polyacetylene. For polyenyl radicals up to C9H11, it was possible
to use a range of methods up to CCSD(T). A number of interesting features
of the geometries and spin distributions were found in these radicals. Coup
led cluster methods reproduced rather well the experimental ratios of the s
pins at each of the carbons in allyl, pentadienyl, and heptatrienyl radical
s. In contrast, both restricted and unrestricted Hartree-Fock methods gave
very poor results. CASSCF gave good geometries and pi spin distributions, b
ut only if all the pi MOs were included in the active space. Both pure (BLY
P) and hybrid (B3LYP) DFT methods were found to over-estimate the widths of
solitons in long polyenyl chains.