International audienceAmorphous platinum clusters supported on porous carbon have been envisaged for high-performance fuel cell electrodes. For this application, it is crucial to control the morphology of the Pt layer and the Pt - substrate interaction to maximize activity and stability. We thus investigate the morphology evolution during Pt cluster growth on a porous carbon substrate employing atomic scale molecular dynamics simulations. The simulations are based on the Pt-C interaction potential using parameters derived from Density Functional Theory and are found to yield a Pt cluster morphology similar to that observed in low loaded fuel cell electrodes prepared by plasma sputtering. Moreover, the simulations show amorphous Pt cluster g...
The catalyst layer (CL) of a proton exchange membrane fuel cell involves various particles and pores...
Improving the durability and utilization efficiency of the platinum-on-carbon (Pt/C) catalyst is of ...
The study of small clusters, particles composed of only a few atoms, is not only interesting becaus...
The effect of Pt nano-particles size on the microstructure of catalyst layers in a Polymer Electroly...
The typical catalyst layers (CLs) in proton exchange membrane fuel cells (PEMFCs) are fabricated as ...
This work comprises an extensive coarse-grained molecular dynamics study of self-organization proces...
International audienceMagnetron sputtering deposition has already demonstrated its ability for the f...
Understanding the factors that control microstructure formation in catalyst layers (CLs) of polymer ...
This study explores how the morphology of nanostructured carbons impacts the morphological stability...
Local transport losses limit high-current density performance of fuel-cells, especially at low Pt-lo...
Polymer electrolyte membrane fuel cells (PEMFCs) fueled by hydrogen are considered to be most suitab...
Molecular simulation is used to model the structural change of carbon nanoparticles in terms of tota...
This work is comprised of a versatile multiscale modeling of carbon corrosion processes in catalyst ...
This thesis attempts to bridge science with technology applications by developing two lines of resea...
Nitrogen-enriched porous carbons have been discussed as supports for Pt nanoparticle catalysts deplo...
The catalyst layer (CL) of a proton exchange membrane fuel cell involves various particles and pores...
Improving the durability and utilization efficiency of the platinum-on-carbon (Pt/C) catalyst is of ...
The study of small clusters, particles composed of only a few atoms, is not only interesting becaus...
The effect of Pt nano-particles size on the microstructure of catalyst layers in a Polymer Electroly...
The typical catalyst layers (CLs) in proton exchange membrane fuel cells (PEMFCs) are fabricated as ...
This work comprises an extensive coarse-grained molecular dynamics study of self-organization proces...
International audienceMagnetron sputtering deposition has already demonstrated its ability for the f...
Understanding the factors that control microstructure formation in catalyst layers (CLs) of polymer ...
This study explores how the morphology of nanostructured carbons impacts the morphological stability...
Local transport losses limit high-current density performance of fuel-cells, especially at low Pt-lo...
Polymer electrolyte membrane fuel cells (PEMFCs) fueled by hydrogen are considered to be most suitab...
Molecular simulation is used to model the structural change of carbon nanoparticles in terms of tota...
This work is comprised of a versatile multiscale modeling of carbon corrosion processes in catalyst ...
This thesis attempts to bridge science with technology applications by developing two lines of resea...
Nitrogen-enriched porous carbons have been discussed as supports for Pt nanoparticle catalysts deplo...
The catalyst layer (CL) of a proton exchange membrane fuel cell involves various particles and pores...
Improving the durability and utilization efficiency of the platinum-on-carbon (Pt/C) catalyst is of ...
The study of small clusters, particles composed of only a few atoms, is not only interesting becaus...