Intersystem Crossing in Gaseous Molecules
- 15 September 1967
- journal article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 47 (6) , 1967-1979
- https://doi.org/10.1063/1.1712224
Abstract
The theory of electronic relaxation in the solid phase is discussed in terms of gaseous molecules. Two limits are examined—the ``small-molecule limit'' (α limit), where electronic relaxation cannot occur in the free molecule, and the ``big-molecule limit'' (ω limit), where electronic relaxation at a rate virtually identical with that in the solid can take place in the absence of any external perturbation. An ``intermediate case'' (μ case) is described where no relaxation can occur in the completely free molecule, but where only extremely minute perturbations are required to induce such a process. Intersystem crossing B2u1→B1u3 in benzene is close to the borderline between the ω limit and the μ case. Although the concepts are somewhat inexact quantitatively because of the difficulty in estimating matrix elements and the vibrational density-of-state function, the theory does indicate that the zero-point level of the 1B2u state could behave like a μ case, while the excited vibrational levels of this electronic state, those mainly reached in past experiments, may lie in the ω limit. Available experimental data support the idea that the higher vibrational levels of the 1B2u state of benzene very likely lie in the ω limit, but cannot shed light on the behavior of the zero-point level. Theoretical expressions for the rate of intersystem crossing, the fluorescence lifetime, and the fluorescence yield as functions of pressure are worked out. Theory shows that in both the α limit and in the μ case the absolute fluorescence yield approaches unity in the limit of zero pressure. For the ω limit, the absolute fluorescence yield can very well be less than unity even for a molecule in free space. Some new experiments are suggested by the theoretical conclusions.Keywords
This publication has 31 references indexed in Scilit:
- Energy Balance in the Photochemistry of BenzeneThe Journal of Chemical Physics, 1967
- Anomalously Long Radiative Lifetimes of Molecular Excited StatesThe Journal of Chemical Physics, 1966
- Comments on Fluorescence and Intersystem Crossing in Benzene VaporThe Journal of Chemical Physics, 1966
- ``Temperature Effect'' on Triplet State Lifetimes in Solid SolutionsThe Journal of Chemical Physics, 1964
- Photosensitized isomerization of olefines in the gas phaseTransactions of the Faraday Society, 1964
- The possibilities of phosphorescence measurement in chemical analysis: tests with a new instrumentThe Analyst, 1962
- Inter‐ and Intramolecular Forces and Molecular PolarizabilityAdvances in Chemical Physics, 1958
- Intensities of Electronic Transitions in Molecular Spectra I. IntroductionThe Journal of Chemical Physics, 1939
- The Resonance Fluorescence of BenzenePhysical Review B, 1932
- Hyperfeinstrukturen und Kernmomente des QuecksilbersThe European Physical Journal A, 1931