Hydrogen produced by water electrolysis is a promising storage medium for renewable energy. Reducing the capital cost of proton exchange membrane (PEM) electrolyzers without losing efficiency is one of its most pressing challenges. Gas diffusion layers (GDL), such as felts, foams, meshes and sintered plates, are key stack components, but these are either inefficient or expensive. This study presents a new type of GDL produced via vacuum plasma spraying (VPS), which offers a large potential for cost reduction. With this technology, it is possible to introduce a gradient in the pore-size distribution along the thickness of the GDL by varying the plasma parameters and titanium powder particle sizes. This feature was confirmed by cross-section ...
AbstractThis paper presents the first part of a complete ex-situ characterisation of a wide range of...
Hydrogen is expected to play an important role as a crosslinking technology between power generation...
Lowering the Pt loading in catalyst layers of high temperature proton exchange membrane fuel cells (...
Hydrogen produced via water electrolysis powered by renewable electricity or green H2 offers new dec...
Energy from renewable sources are in a quest to replace fossil fuels. In Europe it is expected an el...
Decarbonizing society’s energy infrastructure is foundational for a sustainable future and can be re...
Hydrogen produced by proton exchange membrane (PEM) electrolysis technology is a promising solution ...
Proton exchange membrane (PEM) based technologies (fuel cells and electrolysers) offer promising sus...
The development of improved water management strategies for the polymer electrolyte membrane fuel ce...
Current energy policies require the urgent replacement of fossil energy carriers by carbon neutral o...
The microporous layer (MPL) is a key component of polymer electrolyte membrane fuel cells (PEM-FCs),...
sity p depo technical and scientific locks must be solved to compete with (35 kg/cm2). The interface...
Proton exchange membrane (PEM) electrolysers are promising systems for generating high purity hydrog...
Hydrogen is expected to play an important role as a crosslinking technology between power generation...
Proton exchange membrane (PEM) electrolysers are promising systems for generating high purity hydrog...
AbstractThis paper presents the first part of a complete ex-situ characterisation of a wide range of...
Hydrogen is expected to play an important role as a crosslinking technology between power generation...
Lowering the Pt loading in catalyst layers of high temperature proton exchange membrane fuel cells (...
Hydrogen produced via water electrolysis powered by renewable electricity or green H2 offers new dec...
Energy from renewable sources are in a quest to replace fossil fuels. In Europe it is expected an el...
Decarbonizing society’s energy infrastructure is foundational for a sustainable future and can be re...
Hydrogen produced by proton exchange membrane (PEM) electrolysis technology is a promising solution ...
Proton exchange membrane (PEM) based technologies (fuel cells and electrolysers) offer promising sus...
The development of improved water management strategies for the polymer electrolyte membrane fuel ce...
Current energy policies require the urgent replacement of fossil energy carriers by carbon neutral o...
The microporous layer (MPL) is a key component of polymer electrolyte membrane fuel cells (PEM-FCs),...
sity p depo technical and scientific locks must be solved to compete with (35 kg/cm2). The interface...
Proton exchange membrane (PEM) electrolysers are promising systems for generating high purity hydrog...
Hydrogen is expected to play an important role as a crosslinking technology between power generation...
Proton exchange membrane (PEM) electrolysers are promising systems for generating high purity hydrog...
AbstractThis paper presents the first part of a complete ex-situ characterisation of a wide range of...
Hydrogen is expected to play an important role as a crosslinking technology between power generation...
Lowering the Pt loading in catalyst layers of high temperature proton exchange membrane fuel cells (...