CO oxidation is one of the most studied heterogeneous reactions, being scientifically and industrially important, particularly for removal of CO from exhaust streams and preferential oxidation for hydrogen purification in fuel cell applications. The precious metals Ru, Rh, Pd, Pt, and Au are most commonly used for this reaction because of their high activity and stability. Despite the wealth of experimental and theoretical data, it remains unclear what is the active surface for CO oxidation under catalytic conditions for these metals. In this communication, we utilize in situ synchrotron ambient pressure X-ray photoelectron spectroscopy (APXPS) to monitor the oxidation state at the surface of Rh nanoparticles during CO oxidation and demonst...
We have studied the oxidation and reduction of Rh(100) and SiO2 supported Rh particles using high pr...
Recent progress in colloidal synthesis of nanoparticles with well-Controlled size, shape, and compos...
Using a combined experimental and theoretical approach, we show that a thin RhO2 oxide film forms on...
(Graph Presented) The smaller, the better: In situ synchrotron ambient pressure X-ray photoelectron ...
Pt-Rh alloy nanoparticles on oxide supports are widely employed in heterogeneous catalysis with appl...
Pt-Rh alloy nanoparticles on oxide supports are widely employed in heterogeneous catalysis with appl...
Pt-Rh alloy nanoparticles on oxide supports are widely employed in heterogeneous catalysis with appl...
Pt-Rh alloy nanoparticles on oxide supports are widely employed in heterogeneous catalysis with appl...
Surface oxide layers formed on transition metal catalysts are well known as one of the controlling f...
Recent studies suggest that surface oxides on transition metal nanoparticles play an important role ...
Recent studies suggest that surface oxides on transition metal nanoparticles play an important role ...
Surface oxide layers formed on transition metal catalysts are well known as one of the controlling f...
Spatially and temporally resolved energy dispersive EXAFS (EDE) has been utilised in situ to study s...
Using a combination of experimental and theoretical techniques, we show that a thin RhO2 surface oxi...
Recent progress in colloidal synthesis of nanoparticles with well-Controlled size, shape, and compos...
We have studied the oxidation and reduction of Rh(100) and SiO2 supported Rh particles using high pr...
Recent progress in colloidal synthesis of nanoparticles with well-Controlled size, shape, and compos...
Using a combined experimental and theoretical approach, we show that a thin RhO2 oxide film forms on...
(Graph Presented) The smaller, the better: In situ synchrotron ambient pressure X-ray photoelectron ...
Pt-Rh alloy nanoparticles on oxide supports are widely employed in heterogeneous catalysis with appl...
Pt-Rh alloy nanoparticles on oxide supports are widely employed in heterogeneous catalysis with appl...
Pt-Rh alloy nanoparticles on oxide supports are widely employed in heterogeneous catalysis with appl...
Pt-Rh alloy nanoparticles on oxide supports are widely employed in heterogeneous catalysis with appl...
Surface oxide layers formed on transition metal catalysts are well known as one of the controlling f...
Recent studies suggest that surface oxides on transition metal nanoparticles play an important role ...
Recent studies suggest that surface oxides on transition metal nanoparticles play an important role ...
Surface oxide layers formed on transition metal catalysts are well known as one of the controlling f...
Spatially and temporally resolved energy dispersive EXAFS (EDE) has been utilised in situ to study s...
Using a combination of experimental and theoretical techniques, we show that a thin RhO2 surface oxi...
Recent progress in colloidal synthesis of nanoparticles with well-Controlled size, shape, and compos...
We have studied the oxidation and reduction of Rh(100) and SiO2 supported Rh particles using high pr...
Recent progress in colloidal synthesis of nanoparticles with well-Controlled size, shape, and compos...
Using a combined experimental and theoretical approach, we show that a thin RhO2 oxide film forms on...