Effective microstructural properties are critical in determining the electrochemical performance of solid oxide fuel cells (SOFCs), particularly when operating at high current densities. A novel tubular SOFC anode with a hierarchical microstructure, composed of self-organized micro-channels and sponge-like regions, has been fabricated by a phase inversion technique to mitigate concentration losses. However, since pore sizes span over two orders of magnitude, the determination of the effective transport parameters using image-based techniques remains challenging. Pioneering steps are made in this study to characterize and optimize the microstructure by coupling multi-length scale 3D tomography and modeling. The results conclusively show that...
Solid oxide fuel cells (SOFCs) are some of the most promising electrochemical devices in terms of cl...
Solid oxide fuel cells (SOFCs) directly convert chemical energy to electricity with high electrical ...
A 3D microstructure model is used to investigate the effect of the thickness of the solid oxide fuel...
Effective microstructural properties are critical in determining the electrochemical performance of ...
In this study, we aim to parametrically reveal the dependence of electrochemical performance on a va...
In this study, we aim to parametrically reveal the dependence of electrochemical performance on a va...
Mass transport can significantly limit the rate of reaction and lead to concentration polarisation i...
Mass transport can significantly limit the rate of reaction and lead to concentration polarisation i...
Direct imaging of solid oxide fuel cell (SOFC) materials and components can provide unprecedented in...
Direct imaging of solid oxide fuel cell (SOFC) materials and components can provide unprecedented in...
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...
Global demands for energy storage, supply and portability has seen continual increase. Meeting these...
X-ray computed tomography (XCT) is applied to non-destructively image the three-dimensional (3D) mic...
Global demands for energy storage, supply and portability has seen continual increase. Meeting these...
Solid oxide fuel cells (SOFCs) are some of the most promising electrochemical devices in terms of cl...
Solid oxide fuel cells (SOFCs) directly convert chemical energy to electricity with high electrical ...
A 3D microstructure model is used to investigate the effect of the thickness of the solid oxide fuel...
Effective microstructural properties are critical in determining the electrochemical performance of ...
In this study, we aim to parametrically reveal the dependence of electrochemical performance on a va...
In this study, we aim to parametrically reveal the dependence of electrochemical performance on a va...
Mass transport can significantly limit the rate of reaction and lead to concentration polarisation i...
Mass transport can significantly limit the rate of reaction and lead to concentration polarisation i...
Direct imaging of solid oxide fuel cell (SOFC) materials and components can provide unprecedented in...
Direct imaging of solid oxide fuel cell (SOFC) materials and components can provide unprecedented in...
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...
Global demands for energy storage, supply and portability has seen continual increase. Meeting these...
X-ray computed tomography (XCT) is applied to non-destructively image the three-dimensional (3D) mic...
Global demands for energy storage, supply and portability has seen continual increase. Meeting these...
Solid oxide fuel cells (SOFCs) are some of the most promising electrochemical devices in terms of cl...
Solid oxide fuel cells (SOFCs) directly convert chemical energy to electricity with high electrical ...
A 3D microstructure model is used to investigate the effect of the thickness of the solid oxide fuel...