Reaction of HOD+ with NO2: Effects of OD and OH Stretching, Bending, and Collision Energy on Reactions on the Singlet and Triplet Potential Surfaces
Author:
Affiliation:
1. Chemistry DepartmentUniversity of Utah
2. Hanscom Air Force Base
Publisher
American Chemical Society (ACS)
Subject
Physical and Theoretical Chemistry
Link
https://pubs.acs.org/doi/pdf/10.1021/jp110523s
Reference42 articles.
1. Bond‐specific chemistry: OD:OH product ratios for the reactions H+HOD(100) and H+HOD(001)
2. Comparison of reagent stretch vs bend excitation in the hydrogen atom + water-d2 reaction: an example of mode-selective chemistry
3. Effect of reagent vibration on the hydrogen atom + water-d reaction: an example of bond-specific chemistry
4. Bond‐selected bimolecular chemistry: H+HOD(4νOH)→OD+H2
5. Controlling bimolecular reactions: Mode and bond selected reaction of water with translationally excited chlorine atoms
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1. Computational Chemistry;Computing Handbook, Third Edition;2014-05-08
2. Effects of Translational and Vibrational Excitation on the Reaction of HOD+ with C2H2 and C2D2: Mode- and Bond-Specific Effects in Exoergic Proton Transfer;The Journal of Physical Chemistry A;2014-04-11
3. Vibrationally enhanced charge transfer and mode/bond-specific H+ and D+ transfer in the reaction of HOD+ with N2O;The Journal of Chemical Physics;2013-09-21
4. Effects of Collisional and Vibrational Velocity on Proton and Deuteron Transfer in the Reaction of HOD+ with CO;The Journal of Physical Chemistry A;2012-08-08
5. H+ versus D+ transfer from HOD+ to N2: Mode- and bond-selective effects;The Journal of Chemical Physics;2011-07-28
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