The collimation angle shift of desorbing product N2 in a steady-state N2O+CO reaction on Rh(110)
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.2352744
Reference61 articles.
1. Nanostructured catalysts for NO x storage–reduction and N 2 O decomposition
2. Spatial distributions of desorbing products in basic catalytic processes and surface nano-structures
3. The translational energy of desorbing products in NO and N2O decomposition on Pd (110)
4. Two-directional N2 desorption in thermal dissociation of N2O on Rh(110), Ir(110), and Pd(110) at low temperatures
5. Recent developments in angle-resolved electron-stimulated desorption of ions from surfaces
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1. N 2 emission in steady-state N 2 O + CO and NO + CO reactions on Ir(110) by means of angle-resolved desorption;Applied Surface Science;2017-08
2. Density Functional Theory Study of RhnS0,± and Rhn+10,± (n = 1–9);The Journal of Physical Chemistry A;2014-05-08
3. Effect of co-adsorbed CO and reaction temperature on the dynamics of N2 desorption under steady-state N2O–CO reaction on Rh(110);The Journal of Chemical Physics;2011-05-28
4. Angle resolved intensity and velocity distributions of N2 desorbed by N2O decomposition on Rh(110);The Journal of Chemical Physics;2010-04-07
5. Surface reaction dynamics and energy partitioning;Journal of Molecular Catalysis A: Chemical;2010-01-15
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