V. Barone et al., SUBSTITUENT EFFECTS IN THE HETERO-DIELS-ALDER REACTION OF THIOCARBONYL COMPOUNDS WITH BUTADIENE, Journal of organic chemistry, 61(15), 1996, pp. 5121-5129
Structural, kinetic, and thermodynamic parameters for the Diels-Alder
reactions of butadiene with different thiocarbonyl compounds have been
computed with the 6-31G(d) basis set using Hartree-Fock (HF), post HF
(MP2), and a density functional (DF) methods. In the last case, a rec
ent hybrid approach (B3LYP) has been selected, which incorporates grad
ient corrections and some HF exchange. The general trends provided by
the three methods are similar, but some test computations by the more
refined MP4 approach indicate that only the B3LYP approach provides re
liable absolute values for the activation barriers. Our results show t
hat reactivity is enhanced for electron-deficient thioaldehydes and re
duced in electron-rich thioaldehydes. The reactivity order should be d
riven by the strength of the pi C=S bond which is broken during the re
action. Since the singlet-triplet gap Delta E(ST) in the dienophile is
closely related to this quantity, it is a very good reactivity index.
This is particularly significant since Delta E(ST) values obtained at
the B3LYP level are both reliable and inexpensive. From a more practi
cal point of view, both complete computations and Delta E(ST) gaps sug
gest that substitution of aminic hydrogens in thioamides by acceptor g
roups provides effective reagents even in the absence of Lewis acid ca
talysts.