The microporous layer (MPL) is a key cathodic component in proton exchange membrane fuel cells owing to its beneficial influence on two‐phase mass transfer. However, its performance is highly dependent on material properties such as morphology, porous structure, and electrical resistance. To improve water management and performance, electrochemically exfoliated graphene (EGN) microsheets are considered as an alternative to the conventional carbon black (CB) MPLs. The EGN‐based MPLs decrease the kinetic overpotential and the Ohmic potential loss, whereas the addition of CB to form a composite EGN+CB MPL improves the mass‐transport limiting current density drastically. This is reflected by increases of approximately 30 and 70 % in peak power ...
The microporous layer (MPL) is a key component of polymer electrolyte membrane fuel cells (PEM-FCs),...
Microbial fuel cells (MFCs) present promising options for environmentally sustainable power generati...
The cathode microporous layer (MPL), as one of the key components of the proton exchange membrane fu...
Water management is one of the major issues hindering the employment of Polymer Electrolyte Membrane...
High efficiencies and reduced greenhouse gas emissions promote proton exchange membrane fuel cells (...
In this work, the employability of graphene nanoplatelets in the Microporous Layer (MPL) of Polymer ...
Novel graphene-based microporous layers (MPLs) have been developed as a possible alternative to conv...
In this paper, the effect of different carbonaceous phases in microporous layers (MPLs) for polymer ...
This thesis first aims at developing an electrochemical approach for low temperature, simple, and co...
The final publication is available at Elsevier via http://dx.doi.org/10.1016/j.renene.2018.03.065 © ...
The microporous layer (MPL) constitutes a critical component of the gas diffusion layer within the m...
Graphene has been suggested as a potential support material to replace commercial carbon black due t...
The microporous layer (MPL) is a key component of polymer electrolyte membrane fuel cells (PEM-FCs),...
Microbial fuel cells (MFCs) present promising options for environmentally sustainable power generati...
The cathode microporous layer (MPL), as one of the key components of the proton exchange membrane fu...
Water management is one of the major issues hindering the employment of Polymer Electrolyte Membrane...
High efficiencies and reduced greenhouse gas emissions promote proton exchange membrane fuel cells (...
In this work, the employability of graphene nanoplatelets in the Microporous Layer (MPL) of Polymer ...
Novel graphene-based microporous layers (MPLs) have been developed as a possible alternative to conv...
In this paper, the effect of different carbonaceous phases in microporous layers (MPLs) for polymer ...
This thesis first aims at developing an electrochemical approach for low temperature, simple, and co...
The final publication is available at Elsevier via http://dx.doi.org/10.1016/j.renene.2018.03.065 © ...
The microporous layer (MPL) constitutes a critical component of the gas diffusion layer within the m...
Graphene has been suggested as a potential support material to replace commercial carbon black due t...
The microporous layer (MPL) is a key component of polymer electrolyte membrane fuel cells (PEM-FCs),...
Microbial fuel cells (MFCs) present promising options for environmentally sustainable power generati...
The cathode microporous layer (MPL), as one of the key components of the proton exchange membrane fu...