Bond breaking without barriers: Photofragmentation of ketene at the singlet threshold
- 1 July 1988
- journal article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 89 (1) , 314-328
- https://doi.org/10.1063/1.455472
Abstract
Ketene (CH2CO) in a supersonic free jet was photodissociated by a tunable pulsed laser in the frequency range just above the threshold for production of singlet methylene, CH2 (ã 1A1). CH2 was detected by laser‐induced fluorescence (LIF). The appearance threshold and yield curve of individual 1CH2 rotational states were obtained by scanning the photolysis laser frequency with a fixed LIF probe laser frequency. The dissociation occurs on the ground electronic state potential energy surface. The threshold for CH2CO→1CH2+CO is found to be 30 116.2±0.4 cm−1. By varying the delay between the photolysis and probe pulses, a lower bound of 7×107 s−1 was set for the dissociation rate on the triplet surface at the singlet energy threshold. The yield curves, or photofragment excitation (PHOFEX) spectra, exhibit sharp steps spaced by the CO rotational term values. The experimental data provide a rigorous test of theoretical models of photofragment dynamics. The data clearly show that nuclear spin is conserved through the photodissociation. PHOFEX curves calculated from phase space theory (PST) are in excellent agreement with the experiment and show that there is no barrier along the reaction coordinate. The singlet/triplet branching ratio as a function of photolysis laser frequency is inferred from PST fits to the PHOFEX data. Comparisons with the statistical adiabatic channel model (SACM) are also presented. The data show that the only dynamical constraints on product state rotational energy distributions are conservation of energy, angular momentum, and nuclear spin.Keywords
This publication has 55 references indexed in Scilit:
- Rotational state distribution of CO photofragments from triplet keteneThe Journal of Chemical Physics, 1986
- The potential surface of X̃ 3B1 methylene (CH2) and the singlet–triplet splittingThe Journal of Chemical Physics, 1986
- Energy distributions in the CN(X2Σ+) fragment from the infrared multiple-photon dissociation of CF3CN. A comparison between experimental results and the predictions of statistical theoriesFaraday Discussions of the Chemical Society, 1983
- Information, Memory and Statistical Theories of Elementary Chemical ReactionsBerichte der Bunsengesellschaft für physikalische Chemie, 1976
- Unimolecular Processes IV: Product State Distributions after DissociationBerichte der Bunsengesellschaft für physikalische Chemie, 1975
- Complex Formation in Reactive and Inelastic Scattering: Statistical Adiabatic Channel Model of Unimolecular Processes IIIBerichte der Bunsengesellschaft für physikalische Chemie, 1975
- Specific Rate Constants of Unimolecular Processes II. Adiabatic Channel ModelBerichte der Bunsengesellschaft für physikalische Chemie, 1974
- The enthalpy of formation of keteneThe Journal of Chemical Thermodynamics, 1971
- Vapor pressure of keteneJournal of Chemical & Engineering Data, 1969
- Absorption spectrum of ketene in the visible and near ultra-violetTransactions of the Faraday Society, 1966