The CO oxidation reaction on the Pd(111) model catalyst at various temperatures (200–400 °C) under hundreds mTorr pressure conditions has been monitored by in situ ambient pressure X-ray photoelectron spectroscopy and mass spectroscopy. In situ observation of the reaction revealed that the Pd(111) surface is covered by CO molecules at a lower temperature (200 °C), while at higher temperatures (300–400 °C) several oxide phases are formed on the surface. We found that the reactivity is enhanced in the presence of a surface oxide and significantly suppressed by formation of a cluster oxide and the PdO bulk oxide. CO titration experiments suggest that less coordinated oxygen atoms are more reactive for CO oxidation
The reaction between O atoms and CO molecules on Pd(111) was investigated by scanning tunneling micr...
The reaction between O atoms and CO molecules on Pd(111) was investigated by scanning tunneling micr...
CO oxidation on O-precovered Pd(111) surfaces exhibits remarkably different reactivities at differen...
The CO oxidation reaction on the Pd(111) model catalyst at various temperatures (200-400 degrees C) ...
We studied the mechanism of CO oxidation on O-precovered Pd(111) surfaces by means of fast x-ray pho...
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 ...
Catalytic CO oxidation reaction on a Pd(100) single-crystal surface under several hundred mTorr pres...
The main theme of this thesis is the catalytic oxidation of CO, which we have investigated on severa...
ABSTRACT: Under technologically relevant oxygen-rich conditions, the reaction mechanism of CO oxidat...
The surface structure of Pd(100) during CO oxidation was measured using a combination of a flow reac...
Carbon monoxide (CO) oxidation on Pd(111) surfaces has been studied by molecular beam methods with m...
This thesis describes the development of a combined high-pressure/ultrahigh-vacuum flow reactor for ...
CO and O(2). co-adsorption and the catalytic oxidation of CO on a Pt(1 1 0) surface under various pr...
The reaction between O atoms and CO molecules on Pd(111) was investigated by scanning tunneling micr...
The reaction between O atoms and CO molecules on Pd(111) was investigated by scanning tunneling micr...
CO oxidation on O-precovered Pd(111) surfaces exhibits remarkably different reactivities at differen...
The CO oxidation reaction on the Pd(111) model catalyst at various temperatures (200-400 degrees C) ...
We studied the mechanism of CO oxidation on O-precovered Pd(111) surfaces by means of fast x-ray pho...
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 ...
Catalytic CO oxidation reaction on a Pd(100) single-crystal surface under several hundred mTorr pres...
The main theme of this thesis is the catalytic oxidation of CO, which we have investigated on severa...
ABSTRACT: Under technologically relevant oxygen-rich conditions, the reaction mechanism of CO oxidat...
The surface structure of Pd(100) during CO oxidation was measured using a combination of a flow reac...
Carbon monoxide (CO) oxidation on Pd(111) surfaces has been studied by molecular beam methods with m...
This thesis describes the development of a combined high-pressure/ultrahigh-vacuum flow reactor for ...
CO and O(2). co-adsorption and the catalytic oxidation of CO on a Pt(1 1 0) surface under various pr...
The reaction between O atoms and CO molecules on Pd(111) was investigated by scanning tunneling micr...
The reaction between O atoms and CO molecules on Pd(111) was investigated by scanning tunneling micr...
CO oxidation on O-precovered Pd(111) surfaces exhibits remarkably different reactivities at differen...