Literature DB >> 20113036

A quasiclassical trajectory study of the OH+SO reaction: The role of rotational energy.

M Y Ballester1, Y Orozco-Gonzalez, J D Garrido, H F Dos Santos.   

Abstract

A full dimensional quasiclassical trajectory study of the OH+SO reaction is presented with the aim of investigating the role of the reactants rotational energy in the reactivity. Different energetic combinations with one and both reactants rotationally excited are studied. A passive method is used to correct zero-point-energy leakage in the classical calculations. The reactive cross sections, for each combination, are calculated and fitted to a capturelike model combined with a factor accounting for recrossing effects. Reactivity decreases as rotational energy is increased in any of both reactants. This fact provides a theoretical support for the experimental dependence of the rate constant on temperature.

Year:  2010        PMID: 20113036     DOI: 10.1063/1.3303202

Source DB:  PubMed          Journal:  J Chem Phys        ISSN: 0021-9606            Impact factor:   3.488


  1 in total

1.  Gas phase Elemental abundances in Molecular cloudS (GEMS): I. The prototypical dark cloud TMC 1.

Authors:  A Fuente; D G Navarro; P Caselli; M Gerin; C Kramer; E Roueff; T Alonso-Albi; R Bachiller; S Cazaux; B Commercon; R Friesen; S García-Burillo; B M Giuliano; J R Goicoechea; P Gratier; A Hacar; I Jiménez-Serra; J Kirk; V Lattanzi; J C Loison; J Malinen; N Marcelino; R Martín-Doménech; G Muñoz-Caro; J Pineda; M Tafalla; B Tercero; D Ward-Thompson; S P Treviño-Morales; P Riviére-Marichalar; O Roncero; T Vidal; Maikel Y Ballester
Journal:  Astron Astrophys       Date:  2019-04-19       Impact factor: 5.802

  1 in total

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