The structure of RuO2(110) and the mechanism for catalytic carbon monoxide oxidation on this surface were studied by Low-energy electron diffraction, scanning tunneling microscopy, and density-functional calculations. The RuO2(110) surface exposes bridging oxygen atoms and ruthenium atoms not capped by oxygen, The Latter act as coordinatively unsaturated sites-a hypothesis introduced Long ago to account for the catalytic activity of oxide surfaces-onto which carbon monoxide can chemisorb and from where it can react with neighboring Lattice-oxygen to carbon dioxide, Under steady-state conditions, the consumed Lattice-oxygen is continuously restored by oxygen uptake from the gas phase. The results provide atomic-scale verification of a genera...
The primary reason why the RuO2(1 1 0) surface is much more active in the oxidation of CO than the c...
The primary reason why the RuO2(1 1 0) surface is much more active in the oxidation of CO than the c...
The reaction between adsorbed CO molecules and O atoms on epitaxially grown RuO2(110) was investigat...
The structure and reactivity of the oxygen phases on Ru(0001) and Ru(100) and the bulk RuO2(101) sur...
Over the past few years, RuO2 has developed into one of the best-characterized late transition metal...
Over the past few years, RuO2 has developed into one of the best-characterized late transition metal...
The structure and reactivity of the oxygen phases on Ru(0001) and Ru(100) and the bulk RuO2(101) sur...
The structure and reactivity of the oxygen phases on Ru(0001) and Ru(100) and the bulk RuO2(101) sur...
The stoichiometric RuO2(110) surface is terminated by bridge-coordinated oxygen atoms (Oâ) and by co...
The stoichiometric RuO2(110) surface is terminated by bridge-coordinated oxygen atoms (O-beta) and b...
Employing temperature-programmed reaction and desorption, we studied the reduction of RuO2(110) by C...
The primary reason why the RuO2(1 1 0) surface is much more active in the oxidation of CO than the c...
Employing temperature-programmed reaction and desorption, we studied the reduction of RuO2(110) by C...
Employing temperature-programmed reaction and desorption, we studied the reduction of RuO2(110) by C...
The stoichiometric RuO2(110) surface is terminated by bridge-coordinated oxygen atoms (O-beta) and b...
The primary reason why the RuO2(1 1 0) surface is much more active in the oxidation of CO than the c...
The primary reason why the RuO2(1 1 0) surface is much more active in the oxidation of CO than the c...
The reaction between adsorbed CO molecules and O atoms on epitaxially grown RuO2(110) was investigat...
The structure and reactivity of the oxygen phases on Ru(0001) and Ru(100) and the bulk RuO2(101) sur...
Over the past few years, RuO2 has developed into one of the best-characterized late transition metal...
Over the past few years, RuO2 has developed into one of the best-characterized late transition metal...
The structure and reactivity of the oxygen phases on Ru(0001) and Ru(100) and the bulk RuO2(101) sur...
The structure and reactivity of the oxygen phases on Ru(0001) and Ru(100) and the bulk RuO2(101) sur...
The stoichiometric RuO2(110) surface is terminated by bridge-coordinated oxygen atoms (Oâ) and by co...
The stoichiometric RuO2(110) surface is terminated by bridge-coordinated oxygen atoms (O-beta) and b...
Employing temperature-programmed reaction and desorption, we studied the reduction of RuO2(110) by C...
The primary reason why the RuO2(1 1 0) surface is much more active in the oxidation of CO than the c...
Employing temperature-programmed reaction and desorption, we studied the reduction of RuO2(110) by C...
Employing temperature-programmed reaction and desorption, we studied the reduction of RuO2(110) by C...
The stoichiometric RuO2(110) surface is terminated by bridge-coordinated oxygen atoms (O-beta) and b...
The primary reason why the RuO2(1 1 0) surface is much more active in the oxidation of CO than the c...
The primary reason why the RuO2(1 1 0) surface is much more active in the oxidation of CO than the c...
The reaction between adsorbed CO molecules and O atoms on epitaxially grown RuO2(110) was investigat...