Excitation and fragmentation of the dielectric gas C4F7N: Electrons vs photons

Author:

Ovad Tomáš1ORCID,Sapunar Marin1ORCID,Sršeň Štěpán1ORCID,Slavíček Petr1ORCID,Mašín Zdeněk2ORCID,Jones Nykola C.3ORCID,Hoffmann Søren Vrønning3ORCID,Ranković Miloš4ORCID,Fedor Juraj4ORCID

Affiliation:

1. Department of Physical Chemistry, University of Chemistry and Technology, Technická 5, Prague 6, Czech Republic

2. Faculty of Mathematics and Physics, Charles University, Institute of Theoretical Physics, V Holešovičkách 2, 18000 Prague, Czech Republic

3. ISA, Department of Physics and Astronomy, Aarhus University, Ny Munkegade 120, 8000 Aarhus C, Denmark

4. J. Heyrovský Institute of Physical Chemistry, Czech Academy of Sciences, Dolejškova 3, Prague 8, Czech Republic

Abstract

C4F7N is a promising candidate for the replacement of sulfur hexafluoride as an insulating medium, and it is important to understand the chemical changes initiated in the molecule by collision with free electrons, specifically the formation of neutral fragments. The first step of neutral fragmentation is electronic excitation, yet neither the absorption spectrum in the vacuum ultraviolet (VUV) region nor the electron energy loss spectrum have previously been reported. Here, we experimentally probed the excited states by VUV photoabsorption spectroscopy and electron energy loss spectroscopy (EELS). We found that the distribution of states populated upon electron impact with low-energy electrons is significantly different from that following photoabsorption. This difference was confirmed and interpreted with ab initio modeling of both VUV and EELS spectra. We propose here a new computational protocol for the simulation of EELS spectra combining the Born approximation with approximate forms of correlated wave functions, which allows us to calculate the (usually very expensive) scattering cross sections at a cost similar to the calculation of oscillator strengths. Finally, we perform semi-classical non-adiabatic dynamics simulations to investigate the possible neutral fragments of the molecule formed through electron-induced neutral dissociation. We show that the product distribution is highly non-statistical.

Funder

Grantová agentura České Republiky

Technologická Agentura České Republiky

Univerzita Karlova v Praze

Publisher

AIP Publishing

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

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