The charge transfer reaction Ar+ + N2 → N+2 + Ar. Crossed-beam measurements of the integral cross section as a function of the collision energy
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Reference28 articles.
1. Charge-transfer reactionAr++N2⇄N2++ Ar at thermal energies
2. A state‐to‐state study of the electron transfer reactions Ar+(2P3/2,1/2)+N2(X̃,v=0)→Ar(1S0) +N+2(X̃,v’)
3. Crossed-Molecular beam studies of the state-to-state reaction dynamics of charge transfer at low and intermediate energy
4. Evidence for an influence of rotational energy on the rate constants for the reaction of Ar+(2P3/2) with N2
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1. Photodissociation of [Ar–N2]+ induced by near-IR femtosecond laser fields by ion-trap time-of-flight mass spectrometry;The Journal of Chemical Physics;2021-05-07
2. Probing the Charge-Transfer Potential Energy Surfaces by the Photodissociation of [Ar–N2]+;The Journal of Physical Chemistry Letters;2021-04-20
3. Rovibrationally selected ion-molecule collision study using the molecular beam vacuum ultraviolet laser pulsed field ionization-photoion method: Charge transfer reaction of N2+(X 2Σg+; v+ = 0–2; N+ = 0–9) + Ar;The Journal of Chemical Physics;2012-09-12
4. Communication: Rovibrationally selected study of the N2+(X; v+ = 1, N+ = 0−8) + Ar charge transfer reaction using the vacuum ultraviolet laser pulsed field ionization-photoion method;The Journal of Chemical Physics;2011-05-28
5. Ion collision cross sections with transport and reaction coefficients in Ar, Cl2and N2and their mixtures for photonic crystal applications;Journal of Physics D: Applied Physics;2010-12-16
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