Three different porous transport layer (PTL) structures, based on titanium sintered powders, were characterized using X-ray tomographic microscopy to determine key geometric properties such as porosity, pore and particle size distributions as well as effective transport properties. The mass transport through the PTL contributes to the voltage losses in the polymer electrolyte water electrolysis cell. Therefore, influence of the PTL structure on the mass transport overpotential is investigated as function of current densities (≤ 4 A·cm−2), operating pressures (1–100 bar) and temperatures (40–60°C), respectively. A decrease of transport losses was observed with increasing pressure and temperature for all investigated PTLs. At around 100 bar b...
Polymer electrolyte membrane (PEM) electrolysis is an ideal method for the direct conversion of rege...
In this article, we have brought a different perspective to the topic of mass transport losses in a ...
In this article, we have brought a different perspective to the topic of mass transport losses in a ...
International audienceA titanium Porous Transport Layer (PTL) is usually used at the anode side of P...
In the first paper of this series, the bulk, surface and transport properties of porous transport la...
In the first paper of this series the bulk and surface structural properties of Ti-fiber based porou...
The porous transport layer (PTL) in polymer electrolyte membrane water electrolysers (PEMWEs) has th...
While the porous-transport layer (PTL) is a key component in PEM electrolyzers, it is one of the mos...
The design of a porous transport layer (PTL) that exhibits effective two-phase transport characteris...
Abstract Interfacial and bulk properties between the catalyst layer and the porous transport layer (...
Interfacial and bulk properties between the catalyst layer and the porous transport layer (PTL) rest...
The durability of a polymer electrolyte membrane (PEM) water electrolysis single cell, assembled wit...
Interfacial and bulk properties between the catalyst layer and the porous transport layer (PTL) rest...
Development of cost-effective porous transport layers (PTLs) for polymer electrolyte membrane (PEM) ...
In this work, the mass transport in layer systems of an electrolyzer is investigated. Direct and ind...
Polymer electrolyte membrane (PEM) electrolysis is an ideal method for the direct conversion of rege...
In this article, we have brought a different perspective to the topic of mass transport losses in a ...
In this article, we have brought a different perspective to the topic of mass transport losses in a ...
International audienceA titanium Porous Transport Layer (PTL) is usually used at the anode side of P...
In the first paper of this series, the bulk, surface and transport properties of porous transport la...
In the first paper of this series the bulk and surface structural properties of Ti-fiber based porou...
The porous transport layer (PTL) in polymer electrolyte membrane water electrolysers (PEMWEs) has th...
While the porous-transport layer (PTL) is a key component in PEM electrolyzers, it is one of the mos...
The design of a porous transport layer (PTL) that exhibits effective two-phase transport characteris...
Abstract Interfacial and bulk properties between the catalyst layer and the porous transport layer (...
Interfacial and bulk properties between the catalyst layer and the porous transport layer (PTL) rest...
The durability of a polymer electrolyte membrane (PEM) water electrolysis single cell, assembled wit...
Interfacial and bulk properties between the catalyst layer and the porous transport layer (PTL) rest...
Development of cost-effective porous transport layers (PTLs) for polymer electrolyte membrane (PEM) ...
In this work, the mass transport in layer systems of an electrolyzer is investigated. Direct and ind...
Polymer electrolyte membrane (PEM) electrolysis is an ideal method for the direct conversion of rege...
In this article, we have brought a different perspective to the topic of mass transport losses in a ...
In this article, we have brought a different perspective to the topic of mass transport losses in a ...