Isotope Selectivity of Infrared Laser-Driven Unimolecular Dissociation of a Volatile Uranyl Compound
- 27 July 1979
- journal article
- other
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 205 (4404) , 390-394
- https://doi.org/10.1126/science.205.4404.390
Abstract
Isotope-selective photodissociation of the volatile complex uranyl hexafluoroacetylacetonate · tetrahydrofuran [UO2(hfacac)2 · THF] has been achieved with both a continuous-wave and a pulsed carbon dioxide laser. The photodissociation was carried out in a low-density molecular beam under collisionless conditions. Transitions of the laser are in resonance with the asymmetric O-U-O stretch of the uranyl moiety, a vibrational mode whose frequency is sensitive to the masses of the uranium and oxygen isotopes. Unimolecular dissociation is observed mass spectrometrically at an extremely low energy fluence, with no evidence of an energy fluence or intensity threshold. The dissociation yield increases nearly linearly with increasing energy fluence. At constant fluence the dissociation yield is independent of contact time between the radiation field and the molecule, indicating that the decomposition is driven by laser energy fluence and not laser intensity. The oxygen and uranium isotope selectivities measured in these experiments are nearly those predicted by the ratio of the linear absorption cross sections for the respective isotopes. Thus, essentially complete selectivity is observed for oxygen isotopes, while a selectivity of only about 1.25 is measured for the uranium isotopes. A model presented to describe these results is based on rapid intramolecular vibrational energy flow from the pumped mode into a limited number of closely coupled modes.Keywords
This publication has 9 references indexed in Scilit:
- Infrared laser chemistry of large moleculesJournal of the American Chemical Society, 1979
- Infrared multiphoton dissociation of UF6Optics Communications, 1978
- Multiphoton dissociation of molecules with low power continuous wave infrared laser radiationJournal of the American Chemical Society, 1978
- Energy threshold effects in the collisionless dissociation of polyatomic molecules by ir laser radiationApplied Physics Letters, 1977
- Molecular dissociation of SF6 by ultra-short CO2 laser pulsesOptics Communications, 1977
- Multiphoton molecular dissociation in intense laser fieldsThe Journal of Chemical Physics, 1976
- Laser-induced rate processes in gases: Dynamics of polyatomic systemsThe Journal of Chemical Physics, 1976
- “Leakage” effect as an exciting mechanism of high vibrational levels of polyatomic molecules by a strong quasi-resonant laser ir fieldOptics Communications, 1976
- Comments on the dissociation of polyatomic molecules by intense 10.6 μm radiationOptics Communications, 1975