Published October 20, 1984 | Version v1
Journal article

An isotope dependent study of acetone in its lowest excited triplet state

  • 1. Muenchen Univ. (Germany, F.R.). Inst. fuer Physikalische Chemie

Description

The lowest excited triplet state T1 of acetone-h6 and acetone-d6 was investigated with a pulsed dye laser equipped ODMR spectrometer. Acetone is found to be bent in T1 and the out-of-plane distortion angle is estimated to be approx.= 380. The observed zero-field splitting (ZFS) is surprisingly small. Both the spin-spin and the spin-orbit (SO) contribution to the ZFS are evaluated. The SO tensor contribution is calculated from a correlation between the deuterium effects on the ZFS parameters and the population rates. The sub-level selective kinetics of the acetone T1 is largely determined by the mixing of the x- and z-level characteristics owing to magnetic axis rotation caused by the excited state out-of-plane distortion. Considerable deuterium effects are observed on the kinetic data and on the microwave transition frequencies. In all cases the spin-specific isotope effects (due to the promoting modes) and the global effects (due to the Franck-Condon factors) are specified. For the population rates and the SO contribution to ZFS, the inverse global isotope effects (deuterium factor > 1) was found for the first time. Based on the isotope dependence of the rates, the mechanisms of (vibrationally induced) SO coupling in acetone are discussed. It is concluded that non-adiabatic contributions have to be taken into account for the smallest population rate only, but that otherwise the adiabatic SO coupling mechanisms by far dominates in the acetone photophysics. (author)

Additional details

Publishing Information

Journal Title
Mol. Phys.
Journal Volume
53
Journal Issue
3
Series
Mol. Phys.
Journal Page Range
769-793
ISSN
0026-8976