A Ce–Zr–Cu oxide system with a flower-like morphology was prepared by a slow co-precipitation method in the absence of any structure directing agent. Four portions of the oxide were thermally treated at four different temperatures (350 ◦C, 450 ◦C, 550 ◦C, 650 ◦C). The resulting materials samples were characterized by quantitative XRD, adsorption–desorption of N2 at-196 ◦C, SEM and TEM microscopy, –H2-TPR, XPS and Operando-XANES. All samples were tested in the preferential CO oxidation (CO-PROX) in the 40–190 ◦C temperature range. Thermal treatments were found to induce slight structural changes without altering the starting morphology of the samples. The samples treated at higher temperature 550–650 ◦C showed a quite interesting CO-PROX act...
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-Zr-Cu mixed oxide systems, with different contents of ZrO2 and CuO, were prepared by slow co-prec...
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...
A Ce-Zr-Cu oxide system with a flower-like morphology was prepared by a slow co-precipitation method...
Ce–Cu and Ce–Zr–Cu oxide systems with a flower-like morphology were prepared by slow co-precipitatio...
tCe–Zr–Cu mixed oxide systems, with different contents of ZrO2and 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...
Ce-Zr-Cu mixed oxide systems, with different contents of ZrO2 and CuO, were prepared by slow co-prec...
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...
A Ce-Zr-Cu oxide system with a flower-like morphology was prepared by a slow co-precipitation method...
Ce–Cu and Ce–Zr–Cu oxide systems with a flower-like morphology were prepared by slow co-precipitatio...
tCe–Zr–Cu mixed oxide systems, with different contents of ZrO2and 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...
Ce-Zr-Cu mixed oxide systems, with different contents of ZrO2 and CuO, were prepared by slow co-prec...