The mechanisms for the dehydrogenation reaction of cyclohexaphenylene at a copper surface are investigated with the help of density functional theory and metadynamics. Our results represent a showcase for an approach that describes the surface using many-body classical potentials and molecule-surface interactions with a van der Waals model. Starting from the experimental observation that dispersion-assisted mechanisms are at least as important as catalytic processes for the description of the reaction, we fully describe the former, we identify intermediate states and estimate the free energy barriers that characterize the reaction
Catalytic dehydrogenation, or the selective removal of hydrogen from hydrocarbons, is an economicall...
Although there is much interest in developing liquid organic hydrogen carriers (LOHCs) and new metal...
We investigate and discuss spin polarization effects on cyclohexane (C 6H12) dehydrogenation using a...
The mechanisms for the dehydrogenation reaction of cyclohexaphenylene at a copper surface are invest...
We investigate and discuss the catalytic reactivity of a transition metal M (M: Pt, Pd, Ni and Cu) a...
The possible C2Hy (y = 2-6) formation reactions (CHx + CHz -> C2Hy (y = x + z)) and activated second...
The influence of hydrogen for CH4 dissociation on Cu(1 1 1) and Ni(1 1 1) surfaces has been investig...
To investigate cyclohexane dehydrogenation by a transition metal M (M: Pt, Pd, Ni and Cu) atom, we p...
International audienceBy using density functional theory (DFT) and ab initio molecular dynamics, we ...
Recent theoretical progress in gas-surface reaction dynamics, a field relevant to heterogeneous cata...
Catalysis is of extreme relevance in the production of everyday materials and plays a ce...
New nanoarchitectures can be built from polycyclic aromatic hydrocarbons (PAHs) by exploiting the ca...
In this present study, we investigate cyclohexane (C6H 12) dehydrogenation process using a Pt cluste...
Density functional theory calculations are used to investigate the catalytic hydrogenation of ethyle...
The first two steps of methane dissociation on Rh(111) have been investigated using density-function...
Catalytic dehydrogenation, or the selective removal of hydrogen from hydrocarbons, is an economicall...
Although there is much interest in developing liquid organic hydrogen carriers (LOHCs) and new metal...
We investigate and discuss spin polarization effects on cyclohexane (C 6H12) dehydrogenation using a...
The mechanisms for the dehydrogenation reaction of cyclohexaphenylene at a copper surface are invest...
We investigate and discuss the catalytic reactivity of a transition metal M (M: Pt, Pd, Ni and Cu) a...
The possible C2Hy (y = 2-6) formation reactions (CHx + CHz -> C2Hy (y = x + z)) and activated second...
The influence of hydrogen for CH4 dissociation on Cu(1 1 1) and Ni(1 1 1) surfaces has been investig...
To investigate cyclohexane dehydrogenation by a transition metal M (M: Pt, Pd, Ni and Cu) atom, we p...
International audienceBy using density functional theory (DFT) and ab initio molecular dynamics, we ...
Recent theoretical progress in gas-surface reaction dynamics, a field relevant to heterogeneous cata...
Catalysis is of extreme relevance in the production of everyday materials and plays a ce...
New nanoarchitectures can be built from polycyclic aromatic hydrocarbons (PAHs) by exploiting the ca...
In this present study, we investigate cyclohexane (C6H 12) dehydrogenation process using a Pt cluste...
Density functional theory calculations are used to investigate the catalytic hydrogenation of ethyle...
The first two steps of methane dissociation on Rh(111) have been investigated using density-function...
Catalytic dehydrogenation, or the selective removal of hydrogen from hydrocarbons, is an economicall...
Although there is much interest in developing liquid organic hydrogen carriers (LOHCs) and new metal...
We investigate and discuss spin polarization effects on cyclohexane (C 6H12) dehydrogenation using a...