Vibrational state-resolved study of the O−+H2 reaction: Isotope effects on the product energy partitioning
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.480057
Reference50 articles.
1. Dynamic isotope effect on the product energy partitioning in CH2OH+→CHO++H2
2. Vibrational excitation of H2O and HOD molecules produced by reactions of OH and OD with cyclo-C6H12, n-C4H10, neo-C5H12, HCl, DCl and NH3 as studied by infrared chemiluminescence
3. Infrared chemiluminescence studies of atomic chlorine + hydrogen iodide, hydrogen bromide, deuterium bromide, phosphine, perdeuterophosphine, and germane: vibrational energy disposal and rate constants
4. Reactions of the O– negative ion with hydrogen and the lower hydrocarbons
5. Flow‐drift technique for ion mobility and ion‐molecule reaction rate constant measurements. III. Negative ion reactions of O− with CO, NO, H2, and D2
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1. Imaging Frontside and Backside Attack in Radical Ion–Molecule Reactive Scattering;The Journal of Physical Chemistry A;2023-06-24
2. Isotopic effects in the interaction of O− with D2 and H2 at low temperatures;Physical Review A;2017-12-07
3. Interaction of O− and H2 at low temperatures;The Journal of Chemical Physics;2015-01-07
4. Determining the energy distribution of electrons produced in associative detachment: The electron spectrometer with multipole trap;International Journal of Mass Spectrometry;2013-10
5. A novel merged beams apparatus to study anion-neutral reactions;Review of Scientific Instruments;2010-01
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