English

Superoxide anion (O$_{2}\negthinspace^{-}$) collisions with CO$_{2}$ molecules in the energy range 50-950 eV

Chemical Physics 2025-01-15 v1 Atomic Physics

Abstract

A novel gas-phase molecular scattering study is reported for O2 ⁣_{2}\negthinspace^{-} colliding with CO2_{2} for impact energies ranging from 50 to 950 eV. The absolute total electron detachment, relative total and partial ionization cross sections have been measured within this energy range and the positive ion yield of those produced during the collisions has been obtained. The primary anionic beam projectile is produced in a pulsed hollow cathode discharge induced plasma, and its interactions with the neutral molecular target occur in a gas cell at a well-known constant pressure. For impact energies above 500 eV high mass (m >> 44 u) charged complexes have been detected. With the aid of a theoretical study, using ab initio methods, we propose a mechanism to infer on the formation of these cationic species, which have been assigned as projectile-target stable compounds (CO3 ⁣+_{3}\negthinspace^{+} and CO4 ⁣+_{4}\negthinspace^{+}).

Keywords

Cite

@article{arxiv.2501.08107,
  title  = {Superoxide anion (O$_{2}\negthinspace^{-}$) collisions with CO$_{2}$ molecules in the energy range 50-950 eV},
  author = {C. Guerra and M. Leiferman and A. I. Lozano and F. Aguilar-Galindo and S. Díaz-Tendero and J. C. Oller and P. Limão-Vieira and G. García},
  journal= {arXiv preprint arXiv:2501.08107},
  year   = {2025}
}

Comments

16 pages, 7 figures and 3 tables. This article has been submitted to the Journal of Chemical Physics