Density functional theory (DFT) calculations have been carried out to investigate the structural sensitivity of the elementary processes in CO methanation at low coverage of 0.25 ML, including CO dissociation via either direct or H-assisted path and CHx (x = 0-3) hydrogenation, on Co (0 0 0 1), (1 0(-)1 2) and (1 1(-)2 0) surfaces. CO direct dissociation was found to be structurally most sensitive, whereas CHx hydrogenation is structurally least sensitive. Specifically, the barrier of CO direct dissociation, H-assisted dissociation and CHx hydrogenation on different surfaces varies in range of 1.12, 0.54 and 0.34 eV, respectively. Regardless of Co surfaces considered, the CO activation is the rate-limiting step of methanation reactions, whi...
CO activation to generate CH groups is a key reaction step in Fischer−Tropsch synthesis. While sever...
In the context of climate change mitigation, CO2 methanation is an important option for the producti...
Keywords: CO dissociation; density functional calculations; Fischer–Tropsch mechanism; iron; surface...
Using periodic self-consistent density functional calculations it is shown that the barrier for CO d...
Using periodic self-consistent density functional calculations it is shown that the barrier for CO d...
Using periodic self-consistent density functional calculations it is shown that the barrier for CO d...
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...
Keywords: CO dissociation; density functional calculations; Fischer–Tropsch mechanism; iron; surface...
Keywords: CO dissociation; density functional calculations; Fischer–Tropsch mechanism; iron; surface...
Keywords: CO dissociation; density functional calculations; Fischer–Tropsch mechanism; iron; surface...
Keywords: CO dissociation; density functional calculations; Fischer–Tropsch mechanism; iron; surface...
Keywords: CO dissociation; density functional calculations; Fischer–Tropsch mechanism; iron; surface...
The Fischer–Tropsch (FT) process consists of the reaction of a synthesis gas (syngas) mixture contai...
Graduation date: 2016Access restricted to the OSU Community, at author's request, from March 14, 201...
CO activation to generate CH groups is a key reaction step in Fischer−Tropsch synthesis. While sever...
In the context of climate change mitigation, CO2 methanation is an important option for the producti...
Keywords: CO dissociation; density functional calculations; Fischer–Tropsch mechanism; iron; surface...
Using periodic self-consistent density functional calculations it is shown that the barrier for CO d...
Using periodic self-consistent density functional calculations it is shown that the barrier for CO d...
Using periodic self-consistent density functional calculations it is shown that the barrier for CO d...
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...
Keywords: CO dissociation; density functional calculations; Fischer–Tropsch mechanism; iron; surface...
Keywords: CO dissociation; density functional calculations; Fischer–Tropsch mechanism; iron; surface...
Keywords: CO dissociation; density functional calculations; Fischer–Tropsch mechanism; iron; surface...
Keywords: CO dissociation; density functional calculations; Fischer–Tropsch mechanism; iron; surface...
Keywords: CO dissociation; density functional calculations; Fischer–Tropsch mechanism; iron; surface...
The Fischer–Tropsch (FT) process consists of the reaction of a synthesis gas (syngas) mixture contai...
Graduation date: 2016Access restricted to the OSU Community, at author's request, from March 14, 201...
CO activation to generate CH groups is a key reaction step in Fischer−Tropsch synthesis. While sever...
In the context of climate change mitigation, CO2 methanation is an important option for the producti...
Keywords: CO dissociation; density functional calculations; Fischer–Tropsch mechanism; iron; surface...