Please use this identifier to cite or link to this item: http://hdl.handle.net/10362/121168
Title: A complete cross section data set for electron scattering by pyridine: Modelling electron transport in the energy range 0–100 EV
Author: Costa, Filipe
Traoré-Dubuis, Ali
Álvarez, Lidia
Lozano, Ana I.
Ren, Xueguang
Dorn, Alexander
Limão-Vieira, Paulo
Blanco, Francisco
Oller, Juan C.
Muñoz, Antonio
García-Abenza, Adrián
Gorfinkiel, Jimena D.
Barbosa, Alessandra S.
Bettega, Marcio H. F.
Stokes, Peter
White, Ronald D.
Jones, Darryl B.
Brunger, Michael J.
García, Gustavo
Keywords: Electron scattering cross sections
Electron transport in gases
Molecular ionization
Catalysis
Molecular Biology
Spectroscopy
Computer Science Applications
Physical and Theoretical Chemistry
Organic Chemistry
Inorganic Chemistry
Issue Date: 22-Sep-2020
Citation: Costa, F., Traoré-Dubuis, A., Álvarez, L., Lozano, A. I., Ren, X., Dorn, A., Limão-Vieira, P., Blanco, F., Oller, J. C., Muñoz, A., García-Abenza, A., Gorfinkiel, J. D., Barbosa, A. S., Bettega, M. H. F., Stokes, P., White, R. D., Jones, D. B., Brunger, M. J., & García, G. (2020). A complete cross section data set for electron scattering by pyridine: Modelling electron transport in the energy range 0–100 EV. International Journal of Molecular Sciences, 21(18), 1-20. Article 6947. https://doi.org/10.3390/ijms21186947
Abstract: Electron scattering cross sections for pyridine in the energy range 0–100 eV, which we previously measured or calculated, have been critically compiled and complemented here with new measurements of electron energy loss spectra and double differential ionization cross sections. Experimental techniques employed in this study include a linear transmission apparatus and a reaction microscope system. To fulfill the transport model requirements, theoretical data have been recalculated within our independent atom model with screening corrected additivity rule and interference effects (IAM-SCAR) method for energies above 10 eV. In addition, results from the R-matrix and Schwinger multichannel with pseudopotential methods, for energies below 15 eV and 20 eV, respectively, are presented here. The reliability of this complete data set has been evaluated by comparing the simulated energy distribution of electrons transmitted through pyridine, with that observed in an electron-gas transmission experiment under magnetic confinement conditions. In addition, our representation of the angular distribution of the inelastically scattered electrons is discussed on the basis of the present double differential cross section experimental results.
Description: FIS2016-80440 PID2019-104727RB-C21 Project LINKA 20085 PD/00193/2012 PTDC/FISAQM/31281/2017 grant DP180101655
Peer review: yes
URI: http://hdl.handle.net/10362/121168
DOI: https://doi.org/10.3390/ijms21186947
ISSN: 1661-6596
Appears in Collections:FCT: DF - Artigos em revista internacional com arbitragem científica

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