Catalytic CO oxidation reaction on a Pd(100) single-crystal surface under several hundred mTorr pressure conditions has been studied by ambient pressure X-ray photoelectron spectroscopy and mass spectroscopy. In-situ observation of the reaction reveals that two reaction pathways switch over alternatively depending on the surface temperature. At lower temperatures, the Pd(100) surface is covered by CO molecules and the CO<sub>2</sub> formation rate is low, indicating CO poisoning. At higher temperatures above 190 °C, an O–Pd–O trilayer surface oxide phase is formed on the surface and the CO<sub>2</sub> formation rate drastically increases. It is likely that the enhanced rate of CO<sub>2</sub> formation is associated with an active oxygen spe...
n situ high-energy surface X-ray diffraction was employed to determine the surface structure dynamic...
The study of CO oxidation on Pt(1 1 0) surface is revisited using ambient pressure x-ray photoemissi...
The study of CO oxidation on Pt(1 1 0) surface is revisited using ambient pressure x-ray photoemissi...
Catalytic CO oxidation reaction on a Pd(100) single-crystal surface under several hundred mTorr pres...
The surface chemical states of Pd(100) during CO oxidation were investigated using ambient pressure ...
The surface chemical states of Pd(100) during CO oxidation were investigated using ambient pressure ...
The surface structure of Pd(100) during CO oxidation was measured using a combination of a flow reac...
In situ high-energy surface X-ray diffraction was employed to determine the surface structure dynami...
In situ high-energy surface X-ray diffraction was employed to determine the surface structure dynami...
CO oxidation on Pt(100) at oxygen pressures of 9.0×10−2 mbar was studied. An unusual decrease in cat...
The main theme of this thesis is the catalytic oxidation of CO, which we have investigated on severa...
CO oxidation on Pt(100) at oxygen pressures of 9.0×10−2 mbar was studied. An unusual decrease in cat...
The CO oxidation reaction on the Pd(111) model catalyst at various temperatures (200–400 °C) under h...
The CO oxidation reaction on the Pd(111) model catalyst at various temperatures (200-400 degrees C) ...
n situ high-energy surface X-ray diffraction was employed to determine the surface structure dynamic...
n situ high-energy surface X-ray diffraction was employed to determine the surface structure dynamic...
The study of CO oxidation on Pt(1 1 0) surface is revisited using ambient pressure x-ray photoemissi...
The study of CO oxidation on Pt(1 1 0) surface is revisited using ambient pressure x-ray photoemissi...
Catalytic CO oxidation reaction on a Pd(100) single-crystal surface under several hundred mTorr pres...
The surface chemical states of Pd(100) during CO oxidation were investigated using ambient pressure ...
The surface chemical states of Pd(100) during CO oxidation were investigated using ambient pressure ...
The surface structure of Pd(100) during CO oxidation was measured using a combination of a flow reac...
In situ high-energy surface X-ray diffraction was employed to determine the surface structure dynami...
In situ high-energy surface X-ray diffraction was employed to determine the surface structure dynami...
CO oxidation on Pt(100) at oxygen pressures of 9.0×10−2 mbar was studied. An unusual decrease in cat...
The main theme of this thesis is the catalytic oxidation of CO, which we have investigated on severa...
CO oxidation on Pt(100) at oxygen pressures of 9.0×10−2 mbar was studied. An unusual decrease in cat...
The CO oxidation reaction on the Pd(111) model catalyst at various temperatures (200–400 °C) under h...
The CO oxidation reaction on the Pd(111) model catalyst at various temperatures (200-400 degrees C) ...
n situ high-energy surface X-ray diffraction was employed to determine the surface structure dynamic...
n situ high-energy surface X-ray diffraction was employed to determine the surface structure dynamic...
The study of CO oxidation on Pt(1 1 0) surface is revisited using ambient pressure x-ray photoemissi...
The study of CO oxidation on Pt(1 1 0) surface is revisited using ambient pressure x-ray photoemissi...