Density functional theory is employed to investigate the Fischer-Tropsch mechanism on copper Sigma 5(310) tilt grain boundary together with Cu(111) surface. For the methanol formation, Cu Sigma 5(310) can effectively reduce each energy barrier through the preferred CH3O intermediate route as compared with Cu(111). Furthermore, Cu Sigma 5(310) provides a synergetic effect to modulate the energy landscape in the methanol synthesis, where the pathway associated with CH2OH (CH2O <-> CH2OH <-> CH3OH) presents the clear kinetic advantage than the CH3O route. Simultaneously, the kinetically assisted intermediate CH2OH enable the CH2 production both thermodynamically and kinetically on Cu Sigma 5(310). The formation of C2 oxygenates fro...
High CO<sub>2</sub> and H<sub>2</sub> selectivity are important issues for methanol steam reforming ...
The efficiency of industrial methanol synthesis from syngas results from a complex scenario of surfa...
Density function theory calculations are performed to investigate the chain growth mechanism on bime...
Synthesis gas (CO + H2) conversion is an important process in the transformation of coal, natural ga...
Density functional methods are applied to explore the reaction mechanism for CO₂ hydrogenation to me...
Typical Fischer-Tropsch catalysts display different selectivity and activity in catalyzing CO hydrog...
Ethanol synthesis from CH4 and syngas on a Cu-Co/TiO2 catalyst is studied using experiments, density...
Development of efficient catalysts for the direct hydrogenation of CO2 to methanol is essential for ...
Currently, copper is the most active monometallic catalyst to generate hydrocarbon and oxygenated pr...
Currently, copper is the most active monometallic catalyst to generate hydrocarbon and oxygenated pr...
An important industrial process is methanol steam reforming, which is typically used in conjunction ...
Density functional theory calculations have been employed to investigate the effect of promoter Mn o...
Hydrogen production from methanol steam reforming (MSR) is attracting widespread attention in provid...
In the present contribution, we investigate the catalytic cycle of the methane activation reaction o...
Determining the structure of the active Cu sites, which are associated with the methane conversion i...
High CO<sub>2</sub> and H<sub>2</sub> selectivity are important issues for methanol steam reforming ...
The efficiency of industrial methanol synthesis from syngas results from a complex scenario of surfa...
Density function theory calculations are performed to investigate the chain growth mechanism on bime...
Synthesis gas (CO + H2) conversion is an important process in the transformation of coal, natural ga...
Density functional methods are applied to explore the reaction mechanism for CO₂ hydrogenation to me...
Typical Fischer-Tropsch catalysts display different selectivity and activity in catalyzing CO hydrog...
Ethanol synthesis from CH4 and syngas on a Cu-Co/TiO2 catalyst is studied using experiments, density...
Development of efficient catalysts for the direct hydrogenation of CO2 to methanol is essential for ...
Currently, copper is the most active monometallic catalyst to generate hydrocarbon and oxygenated pr...
Currently, copper is the most active monometallic catalyst to generate hydrocarbon and oxygenated pr...
An important industrial process is methanol steam reforming, which is typically used in conjunction ...
Density functional theory calculations have been employed to investigate the effect of promoter Mn o...
Hydrogen production from methanol steam reforming (MSR) is attracting widespread attention in provid...
In the present contribution, we investigate the catalytic cycle of the methane activation reaction o...
Determining the structure of the active Cu sites, which are associated with the methane conversion i...
High CO<sub>2</sub> and H<sub>2</sub> selectivity are important issues for methanol steam reforming ...
The efficiency of industrial methanol synthesis from syngas results from a complex scenario of surfa...
Density function theory calculations are performed to investigate the chain growth mechanism on bime...