Vibrational relaxation of NO+(υ) by O2(1Δg) molecules
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Reference13 articles.
1. Collisional relaxation of vibrationally excited O2+ ions
2. Energy dependence of the rate constant for the reaction O++ NO → NO++ O
3. Afterglow Studies of the Reactions He+, He(23S), and O+ with Vibrationally Excited N2
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1. Ion‐molecule studies of energetic oxygen allotropes in flow tubes: O2(v),O2(aΔg1),O3,andO ${{\rm{O}}}_{2}({\rm{v}}),{{\rm{O}}}_{2}({\rm{a}}{}^{1}{\rm{\Delta }}_{{\rm{g}}}),{{\rm{O}}}_{3},\mathrm{and}{\rm{O}}$;Mass Spectrometry Reviews;2023-07-02
2. Reactions of Deprotonated Tyrosine and Tryptophan with Electronically Excited Singlet Molecular Oxygen (a1Δg): A Guided-Ion-Beam Scattering, Statistical Modeling, and Trajectory Study;The Journal of Physical Chemistry B;2012-05-29
3. Dissociative Excitation Energy Transfer in the Reactions of Protonated Cysteine and Tryptophan with Electronically Excited Singlet Molecular Oxygen (a1Δg);The Journal of Physical Chemistry B;2011-07-28
4. Experimental and Trajectory Study on the Reaction of Protonated Methionine with Electronically Excited Singlet Molecular Oxygen (a1Δg): Reaction Dynamics and Collision Energy Effects;The Journal of Physical Chemistry B;2011-02-28
5. Reexamination of the Quenching of NO+ Vibrations by O2(a 1Δg);The Journal of Physical Chemistry A;2010-06-28
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