Literature DB >> 19947606

Determination of the absolute photoionization cross sections of CH3 and I produced from a pyrolysis source, by combined synchrotron and vacuum ultraviolet laser studies.

Bérenger Gans1, Luiz A Vieira Mendes, Séverine Boyé-Péronne, Stéphane Douin, Gustavo Garcia, Héloïse Soldi-Lose, Barbara K Cunha de Miranda, Christian Alcaraz, Nathalie Carrasco, Pascal Pernot, Dolores Gauyacq.   

Abstract

A pyrolysis source coupled to a supersonic expansion has been used to produce the CH3 radical from two precursors, iodomethane CH3I and nitromethane CH3NO2. The relative ionization yield of CH3 has been recorded at the SOLEIL Synchrotron Radiation source in the range 9.0-11.6 eV, and its ionization threshold has been modeled by taking into account the vibrational and rotational temperature of the radical in the molecular beam. The relative photoionization yield has been normalized to an absolute cross section scale at a fixed wavelength (118.2 nm, sigma(i)(CH3) = 6.7(-1.8)(+2.4) Mb, 95% confidence interval) in an independent laboratory experiment using the same pyrolysis source, a vacuum ultraviolet (VUV) laser, and a carefully calibrated detection chain. The resulting absolute cross section curve is in good agreement with the recently published measurements by Taatjes et al., although with an improved signal-to-noise ratio. The absolute photoionization cross section of CH3I at 118.2 nm has also been measured to be sigma(i)(CH3I) = (48.2 +/- 7.9) Mb, in good agreement with previous electron impact measurements. Finally, the photoionization yield of the iodine atom in its ground state 2P(3/2) has been recorded using the synchrotron source and calibrated for the first time on an absolute cross section scale from our fixed 118.2 nm laser measurement, sigma(i)(I2P(3/2)) = 74(-23)(+33) Mb (95% confidence interval). The ionization curve of atomic iodine is in good agreement, although with slight variations, with the earlier relative ionization yield measured by Berkowitz et al. and is also compared to an earlier calculation of the iodine cross section by Robicheaux and Greene. It is demonstrated that, in the range of pyrolysis temperature used in this work, all the ionization cross sections are temperature-independent. Systematic care has been taken to include all uncertainty sources contributing to the final confidence intervals for the reported results.

Entities:  

Year:  2010        PMID: 19947606     DOI: 10.1021/jp909414d

Source DB:  PubMed          Journal:  J Phys Chem A        ISSN: 1089-5639            Impact factor:   2.781


  3 in total

1.  On the absolute photoionization cross section and threshold photoelectron spectrum of two reactive ketenes in lignin valorization: fulvenone and 2-carbonyl cyclohexadienone.

Authors:  Zeyou Pan; Andras Bodi; Jeroen A van Bokhoven; Patrick Hemberger
Journal:  Phys Chem Chem Phys       Date:  2022-02-09       Impact factor: 3.676

2.  The chemistry of disks around T Tauri and Herbig Ae/Be stars.

Authors:  Marcelino Agúndez; Evelyne Roueff; Franck Le Petit; Jacques Le Bourlot
Journal:  Astron Astrophys       Date:  2018-08-07       Impact factor: 5.802

3.  The reaction of hydroxyl and methylperoxy radicals is not a major source of atmospheric methanol.

Authors:  Rebecca L Caravan; M Anwar H Khan; Judit Zádor; Leonid Sheps; Ivan O Antonov; Brandon Rotavera; Krupa Ramasesha; Kendrew Au; Ming-Wei Chen; Daniel Rösch; David L Osborn; Christa Fittschen; Coralie Schoemaecker; Marius Duncianu; Asma Grira; Sebastien Dusanter; Alexandre Tomas; Carl J Percival; Dudley E Shallcross; Craig A Taatjes
Journal:  Nat Commun       Date:  2018-10-19       Impact factor: 14.919

  3 in total

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