Journal of Physical Chemistry A, Vol.109, No.51, 11673-11678, 2005
Vibrational energy flow rates for cis- and trans-stilbene isomers in solution
Transient electronic absorption following excitation of the first C-H stretching overtone (2 nu(CH)) or a C-H stretch-bend combination (nu(CH) + nu bend) monitors the flow of vibrational energy in cis-stilbene and in trans-stilbene. Following a rapid initial rise as energy flows into states interrogated by the probe pulse, the absorption decays with two time constants, which are about a factor of 2 longer for the cis-isomer than for the trans-isomer. The decay times for cis-stilbene are tau(2)(cis) = (2.6 +/- 1.5) ps and tau(3)(cis) = (24.1 +/- 2.1) ps, and those for traps-stilbene are tau(2)(cis) = (1.4 +/- 0.6) ps and tau(3)(cis) = (10.2 +/- 1 1.1) ps. The decay times are essentially the same in different solvents, suggesting that the relaxation is primarily intramolecular. The two decay times are consistent with the sequential flow of energy through sets of coupled states within the molecule, and the difference in the rates for the two isomers likely reflects differences in coupling among the states arising from the different structures of the isomers. The similarity of the time evolution following excitation of the first C-H overtone at 5990 cm(-1) and the stretch-bend combination at 4650 cm(-1) is consistent with a subset of states, whose structure is similar for the two vibrational excitation energies, controlling the observed flow of energy.