Redox-stable solid oxide fuel cell (SOFC) anodes are developed in order to improve durability at higher fuel utilization, as a possible alternative to conventional Ni-zirconia cermet anodes. Ce0.9Gd0.1O2 (GDC) is utilized as a mixed ionic and electronic conductor (MIEC), in combination with Sr0.9La0.1TiO3 (LST) as an electronic conductor. The stability of noble metals (Rh, Pt, and Pd) is analyzed via thermochemical calculation of stable phases. Noble metal catalyst nanoparticles are incorporated via co-impregnation with GDC. The electrochemical characteristics of SOFC single cells using these anode materials are investigated in highly-humidified H2 at 800 °C. Their stability at high fuel utilization is analyzed. These co-impregnated anodes ...
Ceramic anodes for solid oxide fuel cells SOFCs were prepared by aqueous impregnation of nitrate sal...
textSolid oxide fuel cells (SOFCs) are electrochemical energy conversion devices that directly trans...
La0.20Sr0.25Ca0.45TiO3 (LSCTA-) is a novel mixed ionic and electronic conductor (MIEC) material whic...
Redox-stable solid oxide fuel cell (SOFC) anodes are developed in order to improve durability at hig...
Redox-stable anodes are developed for zirconia-based electrolyte-supported SOFCs in order to improve...
Solid Oxide Fuel Cells (SOFC) are electrochemical energy conversion devices which allow fuel gases, ...
Solid oxide fuel cells (SOFCs) can convert chemical energy from the fuel directly to electrical ener...
This paper reviews recent work on SOFC anode fabrication at the University of Pennsylvania. In this ...
DoctorThe generation of energy by clean, efficient and environmental-friendly means is now one of th...
Metal nanoparticles are of significant importance for chemical and electrochemical transformations d...
While Ni/YSZ cermets have been used successfully in SOFCs, they also have several limitations, thus ...
Funding from the University of St Andrews and HEXIS AG is acknowledged, in addition to the EPSRC Gra...
Ni alloys are examined as redox-resistant alternatives to pure Ni for solid oxide fuel cell (SOFC) a...
Solid-oxide fuel cells (SOFCs) promise high efficiencies in a range of fuels. Unlike lower temperatu...
Funding: University of St Andrews and HEXIS AG; UK EPSRC grants: EP/M014304/1 “Tailoring of Microstr...
Ceramic anodes for solid oxide fuel cells SOFCs were prepared by aqueous impregnation of nitrate sal...
textSolid oxide fuel cells (SOFCs) are electrochemical energy conversion devices that directly trans...
La0.20Sr0.25Ca0.45TiO3 (LSCTA-) is a novel mixed ionic and electronic conductor (MIEC) material whic...
Redox-stable solid oxide fuel cell (SOFC) anodes are developed in order to improve durability at hig...
Redox-stable anodes are developed for zirconia-based electrolyte-supported SOFCs in order to improve...
Solid Oxide Fuel Cells (SOFC) are electrochemical energy conversion devices which allow fuel gases, ...
Solid oxide fuel cells (SOFCs) can convert chemical energy from the fuel directly to electrical ener...
This paper reviews recent work on SOFC anode fabrication at the University of Pennsylvania. In this ...
DoctorThe generation of energy by clean, efficient and environmental-friendly means is now one of th...
Metal nanoparticles are of significant importance for chemical and electrochemical transformations d...
While Ni/YSZ cermets have been used successfully in SOFCs, they also have several limitations, thus ...
Funding from the University of St Andrews and HEXIS AG is acknowledged, in addition to the EPSRC Gra...
Ni alloys are examined as redox-resistant alternatives to pure Ni for solid oxide fuel cell (SOFC) a...
Solid-oxide fuel cells (SOFCs) promise high efficiencies in a range of fuels. Unlike lower temperatu...
Funding: University of St Andrews and HEXIS AG; UK EPSRC grants: EP/M014304/1 “Tailoring of Microstr...
Ceramic anodes for solid oxide fuel cells SOFCs were prepared by aqueous impregnation of nitrate sal...
textSolid oxide fuel cells (SOFCs) are electrochemical energy conversion devices that directly trans...
La0.20Sr0.25Ca0.45TiO3 (LSCTA-) is a novel mixed ionic and electronic conductor (MIEC) material whic...