On molecular origin of mass-independent fractionation of oxygen isotopes in the ozone forming recombination reaction.
basic_science · Level V
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- Record sourced from PubMed, PMID 23431175.
- Also identified by DOI 10.1073/pnas.1215464110 and PMC identifier 3816404.
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Abstract
Theoretical treatment of ozone forming reaction is developed within the framework of mixed quantum/classical dynamics. Formation and stabilization steps of the energy transfer mechanism are both studied, which allows simultaneous capture of the delta zero-point energy effect and η-effect and identification of the molecular level origin of mass-independent isotope fractionation. The central role belongs to scattering resonances; dependence of their lifetimes on rotational excitation, asymmetry; and connection of their vibrational wave functions to two different reaction channels. Calculations, performed within the dimensionally reduced model of ozone, are in semiquantitative agreement with experiment.
Medical subject headings
- Atmosphere
- Models, Chemical
- Oxygen Isotopes
- Ozone