Polymer-Electrolyte-Fuel-Cells (PEFCs) are promising candidates for powering vehicles and portable devices using renewable-energy sources. The core of a PEFC is the solid electrolyte membrane that conducts protons from anode to cathode, where water is generated. The conductivity of the membrane, however, depends on the water content of the membrane, which is strongly related to the cell operating conditions. The membrane and other cell components are typically compressed to minimize various contact resistances. Moreover, the swelling of a somewhat constrained membrane in the cell due to the humidity changes generates additional compressive stresses in the membrane. These external stresses are balanced by the internal swelling pressure of th...
A key factor in Polymer Electrolyte Membrane (PEM) fuel cell performance is the compression due to e...
Gas permeation through a membrane electrode assembly (MEA) is an important issue in the development ...
Polymer electrolyte fuel cells (PEFC) remain the main fuel cell technology for electric power trains...
Accurate characterization of polymer-electrolyte fuel cells (PEFCs) requires understanding the impac...
A fundamental understanding of polymer electrolyte membrane (PEM) fuel cell material degradation and...
A fundamental understanding of polymer electrolyte membrane (PEM) fuel cell material degradation and...
The mechanical durability of membranes used in proton exchange membrane fuel cells (PEMFC) is direct...
The polymer electrolyte membrane (PEM) fulfills vital functions as separator, proton conductor, and ...
A two dimensional, half-cell, non-isothermal, multi-phase model of a polymer electrolyte fuel cell (...
In the electrolysis of water it is convenient and advantageous to directly compress hydrogen at the ...
The mechanical compression used in the construction of PEFCs improves effective current collection a...
AbstractWater management and flooding play an important role in the performance and durability of po...
A two-dimensional study of an idealised fibrous medium representing the gas diffusion layer of a PEM...
The relationship between the mechanical behavior and water transport in the membrane electrode assem...
Due to water uptake, the polymer membrane of polymer electrolyte membrane water electrolyzers (PEMWE...
A key factor in Polymer Electrolyte Membrane (PEM) fuel cell performance is the compression due to e...
Gas permeation through a membrane electrode assembly (MEA) is an important issue in the development ...
Polymer electrolyte fuel cells (PEFC) remain the main fuel cell technology for electric power trains...
Accurate characterization of polymer-electrolyte fuel cells (PEFCs) requires understanding the impac...
A fundamental understanding of polymer electrolyte membrane (PEM) fuel cell material degradation and...
A fundamental understanding of polymer electrolyte membrane (PEM) fuel cell material degradation and...
The mechanical durability of membranes used in proton exchange membrane fuel cells (PEMFC) is direct...
The polymer electrolyte membrane (PEM) fulfills vital functions as separator, proton conductor, and ...
A two dimensional, half-cell, non-isothermal, multi-phase model of a polymer electrolyte fuel cell (...
In the electrolysis of water it is convenient and advantageous to directly compress hydrogen at the ...
The mechanical compression used in the construction of PEFCs improves effective current collection a...
AbstractWater management and flooding play an important role in the performance and durability of po...
A two-dimensional study of an idealised fibrous medium representing the gas diffusion layer of a PEM...
The relationship between the mechanical behavior and water transport in the membrane electrode assem...
Due to water uptake, the polymer membrane of polymer electrolyte membrane water electrolyzers (PEMWE...
A key factor in Polymer Electrolyte Membrane (PEM) fuel cell performance is the compression due to e...
Gas permeation through a membrane electrode assembly (MEA) is an important issue in the development ...
Polymer electrolyte fuel cells (PEFC) remain the main fuel cell technology for electric power trains...