Comparison of the adsorption of N2 on Ru(109) and Ru(001) – A detailed look at the role of atomic step and terrace sites
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Surfaces, Coatings and Films,Surfaces and Interfaces,Condensed Matter Physics
Reference58 articles.
1. Analysis of dipole–dipole coupling in isotopic mixtures of N2 on Ni(110)
2. Dipole-dipole coupling in the N2 overlayer on Ni(110)
3. Adsorbate ordering processes and infrared spectroscopy: An FT‐IRAS study of N2 chemisorbed on the Ni(110) surface
4. Adsorption of molecular nitrogen on clean and modified Ru(001) surfaces: The role ofσbonding
5. Interactions of N2 molecules adsorbed on smooth and roughened Ni(111) surfaces
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1. Adsorption States of N2/H2 Activated on Ru Nanoparticles Uncovered by Modulation–Excitation Infrared Spectroscopy and Density Functional Theory Calculations;ACS Nano;2021-12-03
2. Geometric and Electronic Effects Contributing to N2 Dissociation Barriers on a Range of Active Sites on Ru Nanoparticles;The Journal of Physical Chemistry C;2019-11-18
3. Mechanism and kinetics for both thermal and electrochemical reduction of N2 catalysed by Ru(0001) based on quantum mechanics;Physical Chemistry Chemical Physics;2019
4. Competitive incorporation of oxygen and nitrogen into amorphous Nb–Ru–O–N;Vacuum;2016-01
5. Geometric stability and nitrogen adsorption properties of small BaxOy cluster-modified Ru(0001) surface;Acta Physica Sinica;2015
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