Jr. Alvarezidaboy et al., THEORETICAL INVESTIGATION OF THE ETHENE ETHENE RADICAL-CATION ADDITION-REACTION, Journal of physical chemistry, 97(49), 1993, pp. 12737-12741
The addition reaction of an ethene radical cation and a neutral ethene
molecule, as previously observed in low-temperature matrix isolation
ESR measurements, has been studied using a number of computational met
hods, ranging from the semiempirical AMI and PM3 methods to ab initio
UHF, MP2, and MP4 calculations using different basis sets, with and wi
thout spin projection included. An intermediate addition complex is ob
served as a local minimum on the potential energy surface of the react
ion. The transition state between this local minimum and the final pro
duct, the 1-butene radical cation, is identified as having a hydrogen
partly transferred between the carbons in the 2- and 4-positions, the
activation energy calculated at the PMP4/6-31G*//MP2/6-31G** level be
ing 6 kcal/mol. Spin projection is found to be important for the addit
ion complex, which has one very long (1.9 angstrom) carbon-carbon bond
, but not at the other stationary points of the potential energy surfa
ce.