The polymer electrolyte fuel cell (PEFC) consists of disparate porous media microstructures, e.g. catalyst layer, microporous layer, gas diffusion layer, as the key components for achieving the desired performance attributes. The microstructure-transport interactions are of paramount importance to the performance and durability of the PEFC. In this chapter, a systematic description of the stochastic microstructure reconstruction techniques along with the numerical methods to estimate effective transport properties and to study the influence of the porous structures on the underlying transport behavior is presented
A full morphology (FM) model has been developed for studying the two-phase characteristics of the ga...
Water management is an important challenge for commercialization of polymer electrolyte membrane fue...
The diffusion media (DM) in polymer electrolyte fuel cells (PEFCs) consists of an electrically condu...
This paper combines the stochastic-model-based reconstruction of the gas diffusion layer (GDL) of po...
The polymer electrolyte fuel cell (PEFC) is an electrochemical device which holds great promise as a...
We reconstruct a proton exchange membrane fuel cell (PEMFC) catalyst layer (CL) and a non-woven carb...
There has been a rapidly growing interest in three-dimensional micro-structural reconstruction of fu...
Gas diffusion layers (GDLs) play a significant role in the efficient operation of high-temperature p...
A microporous layer (MPL) is a transition layer with a porous material structure, located between th...
In polymer electrolyte fuel cells of the types PEFC, DMFC and HT-PEFC, the gas diffusion layer (GDL)...
Polymer electrolyte fuel cells (PEFCs), as promising clean energy power sources, are potential subst...
In a proton exchange membrane fuel cell (PEMFC), the microstructure of cathode catalyst layer (CL) i...
Physical properties affecting transport processes inside the gas diffusion layer (GDL) in polymer el...
The microstructure of catalyst layers (CLs) is a naturally random medium and changes in it greatly a...
Investigation of the role in which the microporous layer (MPL) affects the overall diffusion of gase...
A full morphology (FM) model has been developed for studying the two-phase characteristics of the ga...
Water management is an important challenge for commercialization of polymer electrolyte membrane fue...
The diffusion media (DM) in polymer electrolyte fuel cells (PEFCs) consists of an electrically condu...
This paper combines the stochastic-model-based reconstruction of the gas diffusion layer (GDL) of po...
The polymer electrolyte fuel cell (PEFC) is an electrochemical device which holds great promise as a...
We reconstruct a proton exchange membrane fuel cell (PEMFC) catalyst layer (CL) and a non-woven carb...
There has been a rapidly growing interest in three-dimensional micro-structural reconstruction of fu...
Gas diffusion layers (GDLs) play a significant role in the efficient operation of high-temperature p...
A microporous layer (MPL) is a transition layer with a porous material structure, located between th...
In polymer electrolyte fuel cells of the types PEFC, DMFC and HT-PEFC, the gas diffusion layer (GDL)...
Polymer electrolyte fuel cells (PEFCs), as promising clean energy power sources, are potential subst...
In a proton exchange membrane fuel cell (PEMFC), the microstructure of cathode catalyst layer (CL) i...
Physical properties affecting transport processes inside the gas diffusion layer (GDL) in polymer el...
The microstructure of catalyst layers (CLs) is a naturally random medium and changes in it greatly a...
Investigation of the role in which the microporous layer (MPL) affects the overall diffusion of gase...
A full morphology (FM) model has been developed for studying the two-phase characteristics of the ga...
Water management is an important challenge for commercialization of polymer electrolyte membrane fue...
The diffusion media (DM) in polymer electrolyte fuel cells (PEFCs) consists of an electrically condu...