Hydrogenations of CO or CO2 are important catalytic reactions as they are interesting alternatives to produce fine chemical feedstock hence avoiding the use of fossil sources. Using monodisperse nanoparticle (NP) catalysts, we have studied the CO/H2 (i.e., Fischer-Tropsch synthesis) and CO2/H2 reactions. Exploiting synchrotron based in situ characterization techniques such as XANES and XPS, we were able to demonstrate that 10 nm Co NPs cannot be reduced at 250 C while supported on TiO2 or SiO2 and that the complete reduction of cobalt can only be achieved at 450 C. Interestingly, cobalt oxide performs better than fully reduced cobalt when supported on TiO2. In fact, the catalytic results indicate an enhancement of 10-fold for the CO2/H2 rea...
The effect of the chemical nature of the oxide support on the performance of cobalt Fischer-Tropsch ...
A state-of-the-art operando spectroscopic technique is applied to Co/TiO 2 catalysts, which account ...
Abstract: The catalytic activity for Fischer-Tropsch (FT) reaction over cobalt-based catalysts mainl...
Hydrogenations of CO or CO<sub>2</sub> are important catalytic reactions as they are interesting alt...
The catalytic hydrogenations of CO and CO2 to more useful chemicals is not only beneficial in produc...
Transforming carbon dioxide into valuable chemicals and fuels, is a promising tool for environmental...
Because of their high activity and selectivity to C5+ hydrocarbons in the Fischer-Tropsch, process, ...
Heterogeneous catalysis is an essential technology for the production of fuels and chemicals. The de...
Foregoing calcination and utilizing direct reduction of cobalt nitrate led to the formation of small...
The Fischer-Tropsch Synthesis (FTS) process is an attractive way to obtain synthetic liquid fuel fro...
The particle sizes and metal support interactions play a pivotal role in Fischer Tropsch synthesis. ...
The mechanistic role of platinum and precious metals in promoting cobalt hydrogenation catalysts of ...
Fischer-Tropsch synthesis (FTS), involves the hydrogenation of CO under high pressure and is an alte...
The effect of the chemical nature of the oxide support on the performance of cobalt Fischer-Tropsch ...
A state-of-the-art operando spectroscopic technique is applied to Co/TiO 2 catalysts, which account ...
Abstract: The catalytic activity for Fischer-Tropsch (FT) reaction over cobalt-based catalysts mainl...
Hydrogenations of CO or CO<sub>2</sub> are important catalytic reactions as they are interesting alt...
The catalytic hydrogenations of CO and CO2 to more useful chemicals is not only beneficial in produc...
Transforming carbon dioxide into valuable chemicals and fuels, is a promising tool for environmental...
Because of their high activity and selectivity to C5+ hydrocarbons in the Fischer-Tropsch, process, ...
Heterogeneous catalysis is an essential technology for the production of fuels and chemicals. The de...
Foregoing calcination and utilizing direct reduction of cobalt nitrate led to the formation of small...
The Fischer-Tropsch Synthesis (FTS) process is an attractive way to obtain synthetic liquid fuel fro...
The particle sizes and metal support interactions play a pivotal role in Fischer Tropsch synthesis. ...
The mechanistic role of platinum and precious metals in promoting cobalt hydrogenation catalysts of ...
Fischer-Tropsch synthesis (FTS), involves the hydrogenation of CO under high pressure and is an alte...
The effect of the chemical nature of the oxide support on the performance of cobalt Fischer-Tropsch ...
A state-of-the-art operando spectroscopic technique is applied to Co/TiO 2 catalysts, which account ...
Abstract: The catalytic activity for Fischer-Tropsch (FT) reaction over cobalt-based catalysts mainl...