As a first step towards mechanistic studies of fuel cell electrodes with both well-defined and functionally representative structural features, two-dimensional anti-dot metal films with tunable features are prepared. The fabrication employs a facile, sacrificial templating method, known as polymer sphere lithography, and the resulting metal films are fully connected, yet fully porous. Using initial bead sizes in the range of 500 nm to 3.2 m and oxygen plasma etching to remove from ¼ to ¾ of the original bead diameter, computed triple phase boundary densities in the porous films of 2,000 to 43,500 cm cm-2 are achieved. Image analysis shows the computed (theoretical) and experimental structural features to be in good agreement, demonstrating ...
Within composite electrodes for solid oxide fuel cells (SOFCs), electrochemical reactions take place...
Within composite electrodes for solid oxide fuel cells (SOFCs), electrochemical reactions take place...
Global demands for energy storage, supply and portability has seen continual increase. Meeting these...
As a first step towards mechanistic studies of fuel cell electrodes with both well-defined and funct...
The growth of 3D printing has opened the scope for designing microstructures for solid oxide fuel ce...
The recent growth of 3D printing has opened the scope for designing microstructures for solid oxide ...
Solid oxide fuel cells are among the most thermodynamically efficient energy conversion devices. The...
Solid oxide fuel cells are among the most thermodynamically efficient energy conversion devices. The...
The fabrication and characterization of homogenous multiscale porous mixed ionic/electronic conducto...
The growth of 3D printing has opened the scope for designing microstructures for solid oxide fuel ce...
The authors acknowledge the EPSRC Hydrogen and Fuel Cells Supergen Fuels Cells Challenge Programme p...
Within composite electrodes for solid oxide fuel cells (SOFCs), electrochemical reactions take place...
Within composite electrodes for solid oxide fuel cells (SOFCs), electrochemical reactions take place...
Solid oxide cells (SOCs) are promising energy conversion devices in which the chemical energy of fue...
In this work, the triple phase boundary (TPB) characteristics of the platinum (Pt)/yttria-stabilized...
Within composite electrodes for solid oxide fuel cells (SOFCs), electrochemical reactions take place...
Within composite electrodes for solid oxide fuel cells (SOFCs), electrochemical reactions take place...
Global demands for energy storage, supply and portability has seen continual increase. Meeting these...
As a first step towards mechanistic studies of fuel cell electrodes with both well-defined and funct...
The growth of 3D printing has opened the scope for designing microstructures for solid oxide fuel ce...
The recent growth of 3D printing has opened the scope for designing microstructures for solid oxide ...
Solid oxide fuel cells are among the most thermodynamically efficient energy conversion devices. The...
Solid oxide fuel cells are among the most thermodynamically efficient energy conversion devices. The...
The fabrication and characterization of homogenous multiscale porous mixed ionic/electronic conducto...
The growth of 3D printing has opened the scope for designing microstructures for solid oxide fuel ce...
The authors acknowledge the EPSRC Hydrogen and Fuel Cells Supergen Fuels Cells Challenge Programme p...
Within composite electrodes for solid oxide fuel cells (SOFCs), electrochemical reactions take place...
Within composite electrodes for solid oxide fuel cells (SOFCs), electrochemical reactions take place...
Solid oxide cells (SOCs) are promising energy conversion devices in which the chemical energy of fue...
In this work, the triple phase boundary (TPB) characteristics of the platinum (Pt)/yttria-stabilized...
Within composite electrodes for solid oxide fuel cells (SOFCs), electrochemical reactions take place...
Within composite electrodes for solid oxide fuel cells (SOFCs), electrochemical reactions take place...
Global demands for energy storage, supply and portability has seen continual increase. Meeting these...