Cu/ZrO<sub>2</sub> catalysts obtained by impregnation of ZrO<sub>2</sub> and complexation with citric acid were studied for CO<sub>2</sub> hydrogenation to methanol. The catalyst structure, texture, and active copper surface were determined using XRD, BET, and reactive adsorption of N<sub>2</sub>O, respectively. The XPS and Auger spectroscopies were used to determine the surface structure and copper electronic state. FT-IR pyridine adsorption was studied to determine acidity of the catalysts. The results of quantum-chemical calculations concerning the formation of oxygen vacancies in monoclinic and tetragonal ZrO<sub>2</sub> have been also presented. It was found that selection of the appropriate conditions of the catalyst preparation influ...
Hydrogen can be used in fuel cells to provide energy. For mobile applications methanol may be employ...
The effects of Ce incorporation into ZrO2 on the catalytic performance of Cu/ZrO2 for the hydrogena...
We examined the formation mechanism of active sites on Cu/ZrO<sub>2</sub> specific toward CO<sub>2</...
Cu/ZrO2 catalysts obtained by impregnation of ZrO2 and complexation with citric acid were studied fo...
The effect of zirconia phase on the activity and selectivity of Cu/ZrO2 for the hydrogenation of CO...
Previous investigations have shown that Cu/ZrO2 is an active catalyst for the hydrogenation of CO to...
We prepared Cu/a-ZrO<sub>2</sub> (a-ZrO<sub>2</sub>: amorphous ZrO<sub>2</sub>), Cu/m-ZrO<sub>2</sub...
Abstract The interactions of CO, CO/H 2 , H 2 , D 2 , and CH 3 OH with t-ZrO 2 , m-ZrO 2 , Cu/t-ZrO ...
The interactions of CO, CO/H2, H2, D2, and CH3OH with t-ZrO2, m-ZrO2, Cu/t-ZrO2, and Cu/m-ZrO2 have ...
The effect of amorphous (am-), monoclinic (m-), and tetragonal (t-) ZrO2 phase on the physicochemica...
The development of active catalysts for carbon dioxide (CO 2) hydrogenation to methanol is intimatel...
Hydrogen can be used in fuel cells to provide energy. For mobile applications methanol may be employ...
Hydrogen can be used in fuel cells to provide energy. For mobile applications methanol may be employ...
The development of active catalysts for carbon dioxide (CO2) hydrogenation to methanol is intimately...
Active sites and structure–activity relationships for methanol synthesis from a stoichiometric mixtu...
Hydrogen can be used in fuel cells to provide energy. For mobile applications methanol may be employ...
The effects of Ce incorporation into ZrO2 on the catalytic performance of Cu/ZrO2 for the hydrogena...
We examined the formation mechanism of active sites on Cu/ZrO<sub>2</sub> specific toward CO<sub>2</...
Cu/ZrO2 catalysts obtained by impregnation of ZrO2 and complexation with citric acid were studied fo...
The effect of zirconia phase on the activity and selectivity of Cu/ZrO2 for the hydrogenation of CO...
Previous investigations have shown that Cu/ZrO2 is an active catalyst for the hydrogenation of CO to...
We prepared Cu/a-ZrO<sub>2</sub> (a-ZrO<sub>2</sub>: amorphous ZrO<sub>2</sub>), Cu/m-ZrO<sub>2</sub...
Abstract The interactions of CO, CO/H 2 , H 2 , D 2 , and CH 3 OH with t-ZrO 2 , m-ZrO 2 , Cu/t-ZrO ...
The interactions of CO, CO/H2, H2, D2, and CH3OH with t-ZrO2, m-ZrO2, Cu/t-ZrO2, and Cu/m-ZrO2 have ...
The effect of amorphous (am-), monoclinic (m-), and tetragonal (t-) ZrO2 phase on the physicochemica...
The development of active catalysts for carbon dioxide (CO 2) hydrogenation to methanol is intimatel...
Hydrogen can be used in fuel cells to provide energy. For mobile applications methanol may be employ...
Hydrogen can be used in fuel cells to provide energy. For mobile applications methanol may be employ...
The development of active catalysts for carbon dioxide (CO2) hydrogenation to methanol is intimately...
Active sites and structure–activity relationships for methanol synthesis from a stoichiometric mixtu...
Hydrogen can be used in fuel cells to provide energy. For mobile applications methanol may be employ...
The effects of Ce incorporation into ZrO2 on the catalytic performance of Cu/ZrO2 for the hydrogena...
We examined the formation mechanism of active sites on Cu/ZrO<sub>2</sub> specific toward CO<sub>2</...