Multiscale simulation study results of multilayer structures consisting of graphene sheets with embedded Pt nanoparticles is reported. Density functional theory is used to understand the energetics of Pt–graphene interfaces and provide reference data for the parameterization of a Pt–graphene interaction potential. Molecular dynamics simulations then provide the conformation and energetics of graphene sheets with embedded Pt nanoparticles of varying density, form, and size. These results are interpreted using a continuum mechanical model of sheet deformation, and serve to parameterize a meso‐scale Monte Carlo model to investigate the question under which conditions the free volume around the Pt nanoparticles forms a percolating cluster, such...
We studied catalytic performance, particularly tolerance against CO poisoning and particle migration...
Due to its special electronic and ballistic transport properties, graphene has attracted much intere...
Graphitic nanomaterials have been some of the most widely studied materials of the last decade. The ...
State-of-the-art catalysts are often created via deposition of monolayers, sub-monolayers or nanopar...
Carbon materials are predominantly used as catalytic supports due to their high surface area, excell...
In this study, we used a combination of diffusion Monte Carlo and density functional theory calculat...
Atomic structures of Pt nanoclusters on graphene/Pt(111) were investigated with various techniques t...
International audienceControlling the size, dispersion, and shape of nanoparticles (NPs) in the high...
Understanding the factors controlling a catalyst activity, selectivity, and stability is a complicat...
Controlling the size, dispersion, and shape of nanoparticles (NPs) in the high-temperature range is ...
Catalytic systems based on sub-nanoclusters deposited over different supports are promising for very...
Moiré superlattices formed by graphene-covered Ru(0001) are known as excellent templates for the sy...
The interaction of platinum nanoparticles from a size of a few atoms up to 1 nm with extended carbon...
The mechanism of CO oxidation was catalyzed by Pt nanoparticles on graphene through first-principle ...
We have investigated the atomic structure of graphene/Ir(111) supported platinum clusters with on av...
We studied catalytic performance, particularly tolerance against CO poisoning and particle migration...
Due to its special electronic and ballistic transport properties, graphene has attracted much intere...
Graphitic nanomaterials have been some of the most widely studied materials of the last decade. The ...
State-of-the-art catalysts are often created via deposition of monolayers, sub-monolayers or nanopar...
Carbon materials are predominantly used as catalytic supports due to their high surface area, excell...
In this study, we used a combination of diffusion Monte Carlo and density functional theory calculat...
Atomic structures of Pt nanoclusters on graphene/Pt(111) were investigated with various techniques t...
International audienceControlling the size, dispersion, and shape of nanoparticles (NPs) in the high...
Understanding the factors controlling a catalyst activity, selectivity, and stability is a complicat...
Controlling the size, dispersion, and shape of nanoparticles (NPs) in the high-temperature range is ...
Catalytic systems based on sub-nanoclusters deposited over different supports are promising for very...
Moiré superlattices formed by graphene-covered Ru(0001) are known as excellent templates for the sy...
The interaction of platinum nanoparticles from a size of a few atoms up to 1 nm with extended carbon...
The mechanism of CO oxidation was catalyzed by Pt nanoparticles on graphene through first-principle ...
We have investigated the atomic structure of graphene/Ir(111) supported platinum clusters with on av...
We studied catalytic performance, particularly tolerance against CO poisoning and particle migration...
Due to its special electronic and ballistic transport properties, graphene has attracted much intere...
Graphitic nanomaterials have been some of the most widely studied materials of the last decade. The ...