The effect of Pt nano-particles size on the microstructure of catalyst layers in a Polymer Electrolyte Fuel Cell is investigated by means of molecular dynamics simulations. The catalyst layer model includes carbon-supported platinum, perfluorosulfonate ionomer (PFSI), hydronium ions and water molecules. Three different Pt nano-particle sizes, i.e. 1, 2 and 3 nm, are studied, and simulations provide visualization of the distinct micro-morphologies of the CL corresponding to each nano-particle size. The results are analyzed using pair correlation functions, showing that different microstructures are obtained for different Pt nano-particle sizes, and also that inclusion of PFSI in the simulations impacts significantly the final configuration o...
This work is comprised of a versatile multiscale modeling of carbon corrosion processes in catalyst ...
International audienceAmorphous platinum clusters supported on porous carbon have been envisaged for...
This thesis attempts to bridge science with technology applications by developing two lines of resea...
The catalyst layer (CL) of a proton exchange membrane fuel cell involves various particles and pores...
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...
The catalyst layers (CLs) in proton exchange membrane fuel cells (PEMFCs) are porous composites of c...
Ionomer-free ultrathin catalyst layers have shown promise to enhance the performance and reduce the ...
Understanding the factors that control microstructure formation in catalyst layers (CLs) of polymer ...
Improving the durability and utilization efficiency of the platinum-on-carbon (Pt/C) catalyst is of ...
Polymer electrolyte membrane fuel cells (PEMFCs) fueled by hydrogen are considered to be most suitab...
It is desirable if we can achieve fundamental under-standing of the three-phase system consisting of...
Improvements in durability and performance of cathode catalyst layers in polymer electrolyte fuel ce...
Classical molecular dynamics was employed to study the impact of nanoconfinement and surface nanostr...
Polymer electrolyte fuel cells (PEFCs) widespread commercialization is hindered by the devices’ limi...
This work is comprised of a versatile multiscale modeling of carbon corrosion processes in catalyst ...
International audienceAmorphous platinum clusters supported on porous carbon have been envisaged for...
This thesis attempts to bridge science with technology applications by developing two lines of resea...
The catalyst layer (CL) of a proton exchange membrane fuel cell involves various particles and pores...
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...
The catalyst layers (CLs) in proton exchange membrane fuel cells (PEMFCs) are porous composites of c...
Ionomer-free ultrathin catalyst layers have shown promise to enhance the performance and reduce the ...
Understanding the factors that control microstructure formation in catalyst layers (CLs) of polymer ...
Improving the durability and utilization efficiency of the platinum-on-carbon (Pt/C) catalyst is of ...
Polymer electrolyte membrane fuel cells (PEMFCs) fueled by hydrogen are considered to be most suitab...
It is desirable if we can achieve fundamental under-standing of the three-phase system consisting of...
Improvements in durability and performance of cathode catalyst layers in polymer electrolyte fuel ce...
Classical molecular dynamics was employed to study the impact of nanoconfinement and surface nanostr...
Polymer electrolyte fuel cells (PEFCs) widespread commercialization is hindered by the devices’ limi...
This work is comprised of a versatile multiscale modeling of carbon corrosion processes in catalyst ...
International audienceAmorphous platinum clusters supported on porous carbon have been envisaged for...
This thesis attempts to bridge science with technology applications by developing two lines of resea...