Ce–Cu and Ce–Zr–Cu oxide systems with a flower-like morphology were prepared by slow co-precipitation in the absence of any structure directing agent. For the sake of comparison, Ce–Cu and Ce–Zr–Cu oxide samples were also prepared by a classic co-precipitation method. All the samples were calcined in air flow at 650 °C. The materials were characterized by SEM and TEM microscopy, quantitative X-ray diffraction, N2 physisorption, H2-TPR, O2-TPD and XPS. The catalytic activity of the prepared samples was evaluated in the preferential oxidation of CO in excess of H2 (CO-PROX), in the 40–190 °C temperature range
CuO supported on CeO2, Ce0.8Zr0.2O2 and Ce0.8Al0.2O2 based catalysts (6%wt Cu) were synthesized and ...
Ce-Zr-Cu mixed oxide systems, with different contents of ZrO2 and CuO, were prepared by slow co-prec...
Ce-Zr-Cu mixed oxide systems, with different contents of ZrO2 and CuO, were prepared by slow co-prec...
Ce–Cu and Ce–Zr–Cu oxide systems with a flower-like morphology were prepared by slow co-precipitatio...
Ce–Cu and Ce–Zr–Cu oxide systems with a flower-like morphology were prepared by slow co-precipitatio...
Ce–Cu and Ce–Zr–Cu oxide systems with a flower-like morphology were prepared by slow co-precipitatio...
Ce–Cu and Ce–Zr–Cu oxide systems with a flower-like morphology were prepared by slow co-precipitatio...
Ce–Cu and Ce–Zr–Cu oxide systems with a flower-like morphology were prepared by slow co-precipitatio...
A Ce–Zr–Cu oxide system with a flower-like morphology was prepared by a slow co-precipitation method...
A Ce–Zr–Cu oxide system with a flower-like morphology was prepared by a slow co-precipitation method...
A Ce–Zr–Cu oxide system with a flower-like morphology was prepared by a slow co-precipitation method...
A Ce–Zr–Cu oxide system with a flower-like morphology was prepared by a slow co-precipitation method...
A Ce–Zr–Cu oxide system with a flower-like morphology was prepared by a slow co-precipitation method...
A Ce–Zr–Cu oxide system with a flower-like morphology was prepared by a slow co-precipitation method...
tCe–Zr–Cu mixed oxide systems, with different contents of ZrO2and CuO, were prepared by slow co-prec...
CuO supported on CeO2, Ce0.8Zr0.2O2 and Ce0.8Al0.2O2 based catalysts (6%wt Cu) were synthesized and ...
Ce-Zr-Cu mixed oxide systems, with different contents of ZrO2 and CuO, were prepared by slow co-prec...
Ce-Zr-Cu mixed oxide systems, with different contents of ZrO2 and CuO, were prepared by slow co-prec...
Ce–Cu and Ce–Zr–Cu oxide systems with a flower-like morphology were prepared by slow co-precipitatio...
Ce–Cu and Ce–Zr–Cu oxide systems with a flower-like morphology were prepared by slow co-precipitatio...
Ce–Cu and Ce–Zr–Cu oxide systems with a flower-like morphology were prepared by slow co-precipitatio...
Ce–Cu and Ce–Zr–Cu oxide systems with a flower-like morphology were prepared by slow co-precipitatio...
Ce–Cu and Ce–Zr–Cu oxide systems with a flower-like morphology were prepared by slow co-precipitatio...
A Ce–Zr–Cu oxide system with a flower-like morphology was prepared by a slow co-precipitation method...
A Ce–Zr–Cu oxide system with a flower-like morphology was prepared by a slow co-precipitation method...
A Ce–Zr–Cu oxide system with a flower-like morphology was prepared by a slow co-precipitation method...
A Ce–Zr–Cu oxide system with a flower-like morphology was prepared by a slow co-precipitation method...
A Ce–Zr–Cu oxide system with a flower-like morphology was prepared by a slow co-precipitation method...
A Ce–Zr–Cu oxide system with a flower-like morphology was prepared by a slow co-precipitation method...
tCe–Zr–Cu mixed oxide systems, with different contents of ZrO2and CuO, were prepared by slow co-prec...
CuO supported on CeO2, Ce0.8Zr0.2O2 and Ce0.8Al0.2O2 based catalysts (6%wt Cu) were synthesized and ...
Ce-Zr-Cu mixed oxide systems, with different contents of ZrO2 and CuO, were prepared by slow co-prec...
Ce-Zr-Cu mixed oxide systems, with different contents of ZrO2 and CuO, were prepared by slow co-prec...