Density functional theory (DFT) was used to calculate the step-by-step hydrogenation of carbon monoxide (CO) to form methanol over a Co4 cluster/Al2O3 surface. A three-dimensional Co4 tetrahedral structure was selected to explore its interaction with the supporting Al2O3 (104) surface. Co4 chemically reacted with Al2O3 to form a new chemical system. The calculated results show that Al2O3 support has strengthened the Co4 catalyst during the reaction since the formation of the Co–O bond. Loading Co4 on the Al2O3 surface increases CO adsorption ability but decreases the dissociation ability of C–O to produce hydrocarbons. As such, CH3OH formation becomes more favorable both kinetically and thermodynamically on Co4/Al2O3. In CO hydr...
Reaction of CO with carbonaceous surfaces was investigated using B3LYP density functional theory lev...
Density functional theory (DFT) calculations were used to study the mechanisms of hydrogenation of c...
Graduation date: 2016Access restricted to the OSU Community, at author's request, from March 14, 201...
The Fischer–Tropsch (FT) process consists of the reaction of a synthesis gas (syngas) mixture contai...
The Fischer-Tropsch (FT) process consists of the reaction of a synthesis gas (syngas) mixture contai...
Supported metal catalysts have shown to be efficient for CO 2 conversion due to their multifunctiona...
Typical Fischer-Tropsch catalysts display different selectivity and activity in catalyzing CO hydrog...
Density functional methods are applied to explore the reaction mechanism for CO₂ hydrogenation to me...
Methanol synthesis from CO<sub>2</sub> hydrogenation on the defective In<sub>2</sub>O<sub>3</sub>(11...
CO hydrogenation and CO oxidation are two important processes addressing the energy and environmenta...
Cobalt carbide based catalyst shows a promising activity and selectivity in the direct conversion of...
Density functional theory (DFT) calculations have been carried out to investigate the structural sen...
A direct hydride transfer mechanism with three cascade cycles for the conversion of carbon dioxide a...
CoCu-based catalysts are promising candidates for the large-scale application of CO hydrogenation to...
In this work, the reaction mechanism for the conversion of CO2 and H2 to methanol has been researche...
Reaction of CO with carbonaceous surfaces was investigated using B3LYP density functional theory lev...
Density functional theory (DFT) calculations were used to study the mechanisms of hydrogenation of c...
Graduation date: 2016Access restricted to the OSU Community, at author's request, from March 14, 201...
The Fischer–Tropsch (FT) process consists of the reaction of a synthesis gas (syngas) mixture contai...
The Fischer-Tropsch (FT) process consists of the reaction of a synthesis gas (syngas) mixture contai...
Supported metal catalysts have shown to be efficient for CO 2 conversion due to their multifunctiona...
Typical Fischer-Tropsch catalysts display different selectivity and activity in catalyzing CO hydrog...
Density functional methods are applied to explore the reaction mechanism for CO₂ hydrogenation to me...
Methanol synthesis from CO<sub>2</sub> hydrogenation on the defective In<sub>2</sub>O<sub>3</sub>(11...
CO hydrogenation and CO oxidation are two important processes addressing the energy and environmenta...
Cobalt carbide based catalyst shows a promising activity and selectivity in the direct conversion of...
Density functional theory (DFT) calculations have been carried out to investigate the structural sen...
A direct hydride transfer mechanism with three cascade cycles for the conversion of carbon dioxide a...
CoCu-based catalysts are promising candidates for the large-scale application of CO hydrogenation to...
In this work, the reaction mechanism for the conversion of CO2 and H2 to methanol has been researche...
Reaction of CO with carbonaceous surfaces was investigated using B3LYP density functional theory lev...
Density functional theory (DFT) calculations were used to study the mechanisms of hydrogenation of c...
Graduation date: 2016Access restricted to the OSU Community, at author's request, from March 14, 201...