Determination of the translational, rotational and vibrational degree of freedom for H2 and D2 desorbing from vanadium(100)+O
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Surfaces, Coatings and Films,Surfaces and Interfaces,Condensed Matter Physics
Reference22 articles.
1. Laser spectroscopy of desorbing molecules
2. State-selective studies of the associative desorption of hydrogen from Pd(100) and Cu(100)
3. State-specific dynamics ofD2desorption from Cu(111): The role of molecular rotational motion in activated adsorption-desorption dynamics
4. Effect of rotation on the translational and vibrational energy dependence of the dissociative adsorption of D2on Cu(111)
5. Translational energy release in the recombinative desorption of H2 from Ag(111)
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1. Determination of the rotational population of H2 and D2 including high-N states in low temperature plasmas via the Fulcher-α transition;Journal of Quantitative Spectroscopy and Radiative Transfer;2017-01
2. An Experimental Approach to Transition States of Surface Reactions; Energy Partitioning in Repulsive Desorption;e-Journal of Surface Science and Nanotechnology;2013
3. Effects of bulk impurity concentration on the reactivity of metal surface: Sticking of hydrogen molecules and atoms to polycrystalline Nb containing oxygen;The Journal of Chemical Physics;2007-11-28
4. Time-of-flight studies on catalytic model reactions;Topics in Catalysis;2007-09
5. Dynamics of D2 released from the dissociation of D2O on a zirconium surface;The Journal of Chemical Physics;2006-03-28
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