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Electron-driven processes for perfluoronitriles
by
Chauhan, Dhaval
, Limbachiya, Chetan
, Parikh, Smruti
, Thakkar, Nirav
in
Applications of Nonlinear Dynamics and Chaos Theory
/ Atomic
/ Energy
/ Gas discharges
/ Gases
/ Ionization cross sections
/ Ionization potentials
/ Literature reviews
/ Molecular
/ Optical and Plasma Physics
/ Parameters
/ Physical Chemistry
/ Physics
/ Physics and Astronomy
/ Quantum Information Technology
/ Quantum Physics
/ Regular Article - Molecular Physics and Chemical Physics
/ Spectroscopy/Spectrometry
/ Spintronics
2024
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Electron-driven processes for perfluoronitriles
by
Chauhan, Dhaval
, Limbachiya, Chetan
, Parikh, Smruti
, Thakkar, Nirav
in
Applications of Nonlinear Dynamics and Chaos Theory
/ Atomic
/ Energy
/ Gas discharges
/ Gases
/ Ionization cross sections
/ Ionization potentials
/ Literature reviews
/ Molecular
/ Optical and Plasma Physics
/ Parameters
/ Physical Chemistry
/ Physics
/ Physics and Astronomy
/ Quantum Information Technology
/ Quantum Physics
/ Regular Article - Molecular Physics and Chemical Physics
/ Spectroscopy/Spectrometry
/ Spintronics
2024
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Electron-driven processes for perfluoronitriles
by
Chauhan, Dhaval
, Limbachiya, Chetan
, Parikh, Smruti
, Thakkar, Nirav
in
Applications of Nonlinear Dynamics and Chaos Theory
/ Atomic
/ Energy
/ Gas discharges
/ Gases
/ Ionization cross sections
/ Ionization potentials
/ Literature reviews
/ Molecular
/ Optical and Plasma Physics
/ Parameters
/ Physical Chemistry
/ Physics
/ Physics and Astronomy
/ Quantum Information Technology
/ Quantum Physics
/ Regular Article - Molecular Physics and Chemical Physics
/ Spectroscopy/Spectrometry
/ Spintronics
2024
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Journal Article
Electron-driven processes for perfluoronitriles
2024
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Overview
We report the results of the study on electron-driven molecular processes for the perfluoronitriles, C
3
F
5
N and C
4
F
7
N for a wide energy range, from the ionisation potential to 5000 eV. These compounds have been shown to have extremely low global warming potential, suggesting they could be useful in gas discharges and plasma reactors. Calculations of ionisation cross sections (
Q
ion
) are made using the complex scattering potential-ionisation contribution (CSP-ic) method and are shown to be in good agreement with the available data. Elastic (
Q
el
), inelastic (
Q
inel
) and total (
Q
T
) cross sections are computed through spherical complex optical potential formalism. We have recently developed two-parameter semi-empirical method (2p-SEM) for large molecules with 55 < Z < 95 to report
Q
el
and
Q
T
. This work is a maiden report of
Q
el
and
Q
T
for C
3
F
5
N and C
4
F
7
N. We present various correlation studies between the cross sections and target parameters, leading to a prediction of polarizability. We have derived dielectric constant using number density and molar mass and have correlated
Q
ion
(max) with dielectric constant.
Graphical abstract
Publisher
Springer Berlin Heidelberg,Springer Nature B.V
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