Ni-YSZ anodes for Solid Oxide Fuel Cells are vulnerable to microstructural damage during redox cycling leading to a decrease in the electrochemical performance. This study quantifies the microstructural changes as a function of redox cycles at 800 °C and associates it to the deterioration of the mechanical properties and polarisation resistance. A physically-based model is used to estimate the triple-phase boundary (TPB) length from impedance spectra, and satisfactorily matches the TPB length quantified by FIB-SEM tomography: within 20 redox cycles, the TPB density decreases from 4.63 μm−2 to 1.06 μm−2. Although the polarisation resistance increases by an order of magnitude after 20 cycles, after each re-reduction the electrode polarisation...
State of the art solid oxide fuel cell (SOFC) anodes are typically Ni based, one of the primary draw...
Yttria stabilized zirconia with a nickel catalyst (Ni-YSZ) is the most developed, widely used cermet...
Nickel/zirconia-based nanostructured electrodes for solid oxide fuel cells suffer from poor stabilit...
Ni-YSZ anodes for Solid Oxide Fuel Cells are vulnerable to microstructural damage during redox cycli...
Fuel Cells comprise a broad range of technologies that offer more efficient ways of converting fuel ...
This study investigates the influence of microstructure on the effective ionic and electrical conduc...
Reduction-oxidation cycling of Ni-based electrodes for solid oxide fuel/electrolysis cells irreversi...
A methodology based on FIB-tomography and image analysis (IA) is proposed which allows quantificatio...
The polarization resistance of solid oxide fuel cell (SOFC) anodes can be significantly reduced by i...
The electrochemical performance of Ni-YSZ SOFC anodes can quickly degrade during redox cycling. Mech...
Despite active development, solid oxide fuel cells (SOFCs) based on Ni-YSZ anodes still suffer from ...
3D microstructure-performance relationships in Ni-YSZ anodes for electrolyte-supported cells are inv...
Contents: This dataset contains 3D image stacks acquired with FIB-tomography from Ni-YSZ cermet an...
3D microstructure-performance relationships in Ni-YSZ anodes for electrolyte-supported cells are inv...
Infiltration of Ni nanoparticles onto ceramic scaffolds allows for a significant reduction of the po...
State of the art solid oxide fuel cell (SOFC) anodes are typically Ni based, one of the primary draw...
Yttria stabilized zirconia with a nickel catalyst (Ni-YSZ) is the most developed, widely used cermet...
Nickel/zirconia-based nanostructured electrodes for solid oxide fuel cells suffer from poor stabilit...
Ni-YSZ anodes for Solid Oxide Fuel Cells are vulnerable to microstructural damage during redox cycli...
Fuel Cells comprise a broad range of technologies that offer more efficient ways of converting fuel ...
This study investigates the influence of microstructure on the effective ionic and electrical conduc...
Reduction-oxidation cycling of Ni-based electrodes for solid oxide fuel/electrolysis cells irreversi...
A methodology based on FIB-tomography and image analysis (IA) is proposed which allows quantificatio...
The polarization resistance of solid oxide fuel cell (SOFC) anodes can be significantly reduced by i...
The electrochemical performance of Ni-YSZ SOFC anodes can quickly degrade during redox cycling. Mech...
Despite active development, solid oxide fuel cells (SOFCs) based on Ni-YSZ anodes still suffer from ...
3D microstructure-performance relationships in Ni-YSZ anodes for electrolyte-supported cells are inv...
Contents: This dataset contains 3D image stacks acquired with FIB-tomography from Ni-YSZ cermet an...
3D microstructure-performance relationships in Ni-YSZ anodes for electrolyte-supported cells are inv...
Infiltration of Ni nanoparticles onto ceramic scaffolds allows for a significant reduction of the po...
State of the art solid oxide fuel cell (SOFC) anodes are typically Ni based, one of the primary draw...
Yttria stabilized zirconia with a nickel catalyst (Ni-YSZ) is the most developed, widely used cermet...
Nickel/zirconia-based nanostructured electrodes for solid oxide fuel cells suffer from poor stabilit...