In this study we investigate the potential of porous transport electrode (PTE) based membrane electrode assemblies (MEAs) for proton exchange membrane water electrolysis. The focus is on the overpotential determining anodic PTE for the oxygen evolution reaction. The influences of catalyst loading, ionomer content and porous titanium substrate on the polarization behavior are analyzed. The comparison of a porous fiber-sintered substrate with a powder-sintered substrate shows no significant differences in the kinetic and mass transport regions. Ohmic losses, however, are lower for fiber PTEs above a catalyst loading of 1.0 mgIrO2 cm-2. Variations of the Nafion content in the catalyst layer reveal changes of mass transport and ohmic losses and...
Interfacial and bulk properties between the catalyst layer and the porous transport layer (PTL) rest...
In this work the improvement of material interfaces at electrodes for proton exchange membrane (PEM)...
Bipolar membranejelectrode interface water electrolyzers (BPEMWE) were found to outperform a protone...
In this study we investigate the potential of porous transport electrode (PTE) based membrane electr...
So far the superior cell polarization behavior of membrane electrode assemblies (MEAs) using catalys...
Lack of commercial electrocatalysts and membrane electrode assemblies (MEA) which are efficient, dur...
The drastic loading reduction or complete elimination of Pt-group metals from PEM-based fuel cellsan...
Abstract Interfacial and bulk properties between the catalyst layer and the porous transport layer (...
The key component of a solid polymer electrolyte water electrolyser is the membrane electrode assemb...
We present a novel membrane electrode assembly (MEA) fabrication method for proton exchange membrane...
In a proton exchange membrane (PEM) water electrolyser, Pt-coated porous titanium plate always acts ...
In a proton exchange membrane (PEM) water electrolyser, Pt-coated porous titanium plate always acts ...
International audienceA titanium Porous Transport Layer (PTL) is usually used at the anode side of P...
Interfacial and bulk properties between the catalyst layer and the porous transport layer (PTL) rest...
Proton-exchange membrane water electrolyzers (PEMWEs) will play a key role in future sustainable hyd...
Interfacial and bulk properties between the catalyst layer and the porous transport layer (PTL) rest...
In this work the improvement of material interfaces at electrodes for proton exchange membrane (PEM)...
Bipolar membranejelectrode interface water electrolyzers (BPEMWE) were found to outperform a protone...
In this study we investigate the potential of porous transport electrode (PTE) based membrane electr...
So far the superior cell polarization behavior of membrane electrode assemblies (MEAs) using catalys...
Lack of commercial electrocatalysts and membrane electrode assemblies (MEA) which are efficient, dur...
The drastic loading reduction or complete elimination of Pt-group metals from PEM-based fuel cellsan...
Abstract Interfacial and bulk properties between the catalyst layer and the porous transport layer (...
The key component of a solid polymer electrolyte water electrolyser is the membrane electrode assemb...
We present a novel membrane electrode assembly (MEA) fabrication method for proton exchange membrane...
In a proton exchange membrane (PEM) water electrolyser, Pt-coated porous titanium plate always acts ...
In a proton exchange membrane (PEM) water electrolyser, Pt-coated porous titanium plate always acts ...
International audienceA titanium Porous Transport Layer (PTL) is usually used at the anode side of P...
Interfacial and bulk properties between the catalyst layer and the porous transport layer (PTL) rest...
Proton-exchange membrane water electrolyzers (PEMWEs) will play a key role in future sustainable hyd...
Interfacial and bulk properties between the catalyst layer and the porous transport layer (PTL) rest...
In this work the improvement of material interfaces at electrodes for proton exchange membrane (PEM)...
Bipolar membranejelectrode interface water electrolyzers (BPEMWE) were found to outperform a protone...