We use ambient-pressure X-ray photoelectron spectroscopy (APXPS) to study chemical changes, including hydroxylation and water adsorption, at copper oxide surfaces from ultrahigh vacuum to ambient relative humidities of ∼5%. Polycrystalline CuO and Cu2O surfaces were prepared by selective oxidation of metallic copper foils. For both oxides, hydroxylation occurs readily, even at high-vacuum conditions. Hydroxylation on both oxides plateaus near ∼0.01% relative humidity (RH) at a coverage of ∼1 monolayer. In contrast to previous studies, neither oxide shows significant accumulation of molecular water; rather, both surfaces show a high affinity for adventitious carbon contaminants. Results of isobaric and isothermic experiments are compared, an...
Copper-based catalysts have different catalytic properties depending on the oxidation states of Cu. ...
Copper-based catalysts have different catalytic properties depending on the oxidation states of Cu. ...
Copper-based catalysts have different catalytic properties depending on the oxidation states of Cu. ...
We use ambient-pressure X-ray photoelectron spectroscopy (APXPS) to study chemical changes, includin...
We investigated the room-temperature chemisorption of oxygen on Cu(1 0 0) and Cu(1 1 1) using ambien...
We investigated the room-temperature chemisorption of oxygen on Cu(1 0 0) and Cu(1 1 1) using ambien...
The interaction of water vapor and sulfur dioxide (SO2) with single crystal cuprous oxide (Cu2O) sur...
Copper materials are widely used in heterogeneous catalysis, including CO2 reduction, but the precis...
X-ray photoelectron spectroscopy (XPS) is a powerful tool for surface and interface analysis, provid...
The interaction of water vapor and sulfur dioxide (SO<sub>2</sub>) with single crystal cuprous oxide...
X-ray photoelectron spectroscopy (XPS) is a powerful tool for surface and interface analysis, provid...
Copper materials are widely used in heterogeneous catalysis, including CO2 reduction, but the precis...
We investigated the room-temperature chemisorption of oxygen on Cu(1 0 0) and Cu(1 1 1) using ambien...
X-ray photoelectron spectroscopy (XPS) is a powerful tool for surface and interface analysis, provid...
The interaction of water vapor with ZnO/CuOx/Cu(1 1 1) surfaces was investigated using synchrotron-b...
Copper-based catalysts have different catalytic properties depending on the oxidation states of Cu. ...
Copper-based catalysts have different catalytic properties depending on the oxidation states of Cu. ...
Copper-based catalysts have different catalytic properties depending on the oxidation states of Cu. ...
We use ambient-pressure X-ray photoelectron spectroscopy (APXPS) to study chemical changes, includin...
We investigated the room-temperature chemisorption of oxygen on Cu(1 0 0) and Cu(1 1 1) using ambien...
We investigated the room-temperature chemisorption of oxygen on Cu(1 0 0) and Cu(1 1 1) using ambien...
The interaction of water vapor and sulfur dioxide (SO2) with single crystal cuprous oxide (Cu2O) sur...
Copper materials are widely used in heterogeneous catalysis, including CO2 reduction, but the precis...
X-ray photoelectron spectroscopy (XPS) is a powerful tool for surface and interface analysis, provid...
The interaction of water vapor and sulfur dioxide (SO<sub>2</sub>) with single crystal cuprous oxide...
X-ray photoelectron spectroscopy (XPS) is a powerful tool for surface and interface analysis, provid...
Copper materials are widely used in heterogeneous catalysis, including CO2 reduction, but the precis...
We investigated the room-temperature chemisorption of oxygen on Cu(1 0 0) and Cu(1 1 1) using ambien...
X-ray photoelectron spectroscopy (XPS) is a powerful tool for surface and interface analysis, provid...
The interaction of water vapor with ZnO/CuOx/Cu(1 1 1) surfaces was investigated using synchrotron-b...
Copper-based catalysts have different catalytic properties depending on the oxidation states of Cu. ...
Copper-based catalysts have different catalytic properties depending on the oxidation states of Cu. ...
Copper-based catalysts have different catalytic properties depending on the oxidation states of Cu. ...