Molecular isotope effects in the thermal-energy charge exchange between He+ and N2
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Reference14 articles.
1. Mechanism of thermal energy gas phase charge exchange reaction: He+· + N2
2. Studies of Ion—Neutral Reactions by a Photoionization Mass‐Spectrometer Technique. IV. Reactions of He+ with N2 and O2
3. Afterglow Studies of the Reactions He+, He(23S), and O+ with Vibrationally Excited N2
4. Ion–Molecule Reactions, He++O2 and He++N2, at Thermal Energies and Above
5. A Collection of the Band-Head Wavelengths of N_{2}AND N_{2}+.
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1. Multipole-moment effects in ion–molecule reactions at low temperatures: part II – charge–quadrupole-interaction-induced suppression of the He+ + N2 reaction at collision energies below kB·10 K;Physical Chemistry Chemical Physics;2022
2. Isotopic and temperature effects on the photoemission and predissociation rates of N2+(C2Σu+);Physical Review A;2020-09-01
3. State-to-state dissociative photoionization of molecular nitrogen: the full story;Advances in Physics: X;2020-01-01
4. Isotope Effects in the Predissociation of Excited States of N2+ Produced by Photoionization of 14N2 and 15N2 at Energies Between 24.2 and 25.6 eV;Frontiers in Chemistry;2019-04-12
5. Time-dependent description of the predissociation ofN2+in theC 2Σu+state;Physical Review A;2016-11-28
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