A-site deficient perovskite La0.57Sr0.15TiO3 (LSTO) materials are synthesized by a modified polyacrylamide gel route. X-ray diffraction pattern of LSTO indicates an orthorhombic structure. The thermal expansion coefficient of LSTO is 10.0 × 10−6 K−1 at 600 °C in 5%H2/Ar. LSTO shows an electrical conductivity of 2 S cm−1 at 600 °C in 3%H2O/H2. A new composite material, containing the porous LSTO backbone impregnated with small amounts of Ce0.9Gd0.1O2−δ (CGO) (3.4-8.3 wt.%) and Ni/Cu (2.0-6.3 wt.%), is investigated as an alternative anode for solid oxide fuel cells (SOFCs). Because of the substantial electro-catalytic activity of the fine and well-dispersed Ni particles on the surface of the ceramic framework, the polarization resistance of 6...
Recently, the study of environmentally friendly materials useful in conversion of energy has become ...
Excellent thermal and mechanical stability, physical compatibility with electrolyte materials and re...
La0.20Sr0.25Ca0.45TiO3 (LSCTA-) is a novel mixed ionic and electronic conductor (MIEC) material whic...
Ni-containing anode is currently used with many electrolytes of solid oxide fuel cells (SOFCs). Howe...
DoctorSolid Oxide Fuel Cell (SOFC) is an electrochemical device that converts the chemical energy of...
Perovskite electrodes have been considered as an alternative to Ni-YSZ cermet-based anodes as they a...
DoctorThe generation of energy by clean, efficient and environmental-friendly means is now one of th...
In solid oxide fuel cells, doped strontium titinates have been widely studied as anode materials due...
La0.2Sr0.25Ca0.45TiO3 is a carefully selected composition to provide optimal processing and electric...
Perovskite oxides have potential for use as alternative anode materials in solid oxide fuel cells (S...
The research leading to these results has received funding from the European Union's Seventh Framewo...
In this paper we present the combined modeling and experimental study of electrochemical hydrogen ox...
Funding: EPSRC project EP/M014304/1 “Tailoring of Microstructural Evolution in Impregnated SOFC Elec...
B0607Ni-free anodes in SOFC and SOEC that can withstand severe conditions and provide high performan...
Thermal, electrical, and electrocatalytical properties of the oxygen deficient La0.5Sr0.2TiO2.95 per...
Recently, the study of environmentally friendly materials useful in conversion of energy has become ...
Excellent thermal and mechanical stability, physical compatibility with electrolyte materials and re...
La0.20Sr0.25Ca0.45TiO3 (LSCTA-) is a novel mixed ionic and electronic conductor (MIEC) material whic...
Ni-containing anode is currently used with many electrolytes of solid oxide fuel cells (SOFCs). Howe...
DoctorSolid Oxide Fuel Cell (SOFC) is an electrochemical device that converts the chemical energy of...
Perovskite electrodes have been considered as an alternative to Ni-YSZ cermet-based anodes as they a...
DoctorThe generation of energy by clean, efficient and environmental-friendly means is now one of th...
In solid oxide fuel cells, doped strontium titinates have been widely studied as anode materials due...
La0.2Sr0.25Ca0.45TiO3 is a carefully selected composition to provide optimal processing and electric...
Perovskite oxides have potential for use as alternative anode materials in solid oxide fuel cells (S...
The research leading to these results has received funding from the European Union's Seventh Framewo...
In this paper we present the combined modeling and experimental study of electrochemical hydrogen ox...
Funding: EPSRC project EP/M014304/1 “Tailoring of Microstructural Evolution in Impregnated SOFC Elec...
B0607Ni-free anodes in SOFC and SOEC that can withstand severe conditions and provide high performan...
Thermal, electrical, and electrocatalytical properties of the oxygen deficient La0.5Sr0.2TiO2.95 per...
Recently, the study of environmentally friendly materials useful in conversion of energy has become ...
Excellent thermal and mechanical stability, physical compatibility with electrolyte materials and re...
La0.20Sr0.25Ca0.45TiO3 (LSCTA-) is a novel mixed ionic and electronic conductor (MIEC) material whic...