Layered perovskite oxides are considered as promising cathode materials for the solid oxide fuel cell (SOFC) due to their high electronic/ionic conductivity and fast oxygen kinetics at low temperature. Many researchers have focused on further improving the electrochemical performance of the layered perovskite material by doping various metal ions into the B-site. Herein, we report that Sc3+ doping into the layered perovskite material, PrBaCo2O5+ (PBCO), shows a positive effect of increasing electrochemical performances. We confirmed that Sc3+ doping could provide a favorable crystalline structure of layered perovskite for oxygen ion transfer in the lattice with improved Gold-schmidt tolerance factor and specific free volume. Consequently, t...
Development of alternative ceramic oxide anode materials is a key step for direct hydrocarbon solid ...
The layered perovskite PrBaxCo2O5+δ (PBxCO, x = 0.90–1.0) oxides have been synthesized by a solid-st...
The authors Abdalla M. Abdalla and Shahzad Hossain are thankful to the Graduate Research Office of U...
Layered perovskite oxides are considered as promising cathode materials for the solid oxide fuel cel...
Solid oxide fuel cells (SOFC) are the cleanest, most efficient, and cost-effective option for direct...
Layered perovskites can be considered as promising cathode materials for intermediate-temperature so...
Layered perovskite oxides have received extensive attention as promising cathode materials for solid...
Good cathode material for solid oxide fuel cell (SOFC) should possess sufficient electronic conducti...
Development of new functional materials with improved characteristics for solid oxide fuel cells (SO...
Sr0.7R0.3CoO3-δ (R = Tb and Er) tetragonal perovskites have been prepared and evaluated as mixed ion...
Achieving the fast oxygen reduction reaction (ORR) kinetics at the cathode of solid oxide fuel cells...
Sealing and stability is the challenge for solid oxide fuel cells (SOFCs) at high temperature. It is...
Cation layered perovskite-related oxides, NdBa1-xSr xCo2O5+?? oxides, have been considered as cathod...
Nowadays, the cathode is the most studied component in Intermediate Temperature-Solid Oxide Fuel Cel...
The slow activity of cathode materials is one of the most significant barriers to realizing the oper...
Development of alternative ceramic oxide anode materials is a key step for direct hydrocarbon solid ...
The layered perovskite PrBaxCo2O5+δ (PBxCO, x = 0.90–1.0) oxides have been synthesized by a solid-st...
The authors Abdalla M. Abdalla and Shahzad Hossain are thankful to the Graduate Research Office of U...
Layered perovskite oxides are considered as promising cathode materials for the solid oxide fuel cel...
Solid oxide fuel cells (SOFC) are the cleanest, most efficient, and cost-effective option for direct...
Layered perovskites can be considered as promising cathode materials for intermediate-temperature so...
Layered perovskite oxides have received extensive attention as promising cathode materials for solid...
Good cathode material for solid oxide fuel cell (SOFC) should possess sufficient electronic conducti...
Development of new functional materials with improved characteristics for solid oxide fuel cells (SO...
Sr0.7R0.3CoO3-δ (R = Tb and Er) tetragonal perovskites have been prepared and evaluated as mixed ion...
Achieving the fast oxygen reduction reaction (ORR) kinetics at the cathode of solid oxide fuel cells...
Sealing and stability is the challenge for solid oxide fuel cells (SOFCs) at high temperature. It is...
Cation layered perovskite-related oxides, NdBa1-xSr xCo2O5+?? oxides, have been considered as cathod...
Nowadays, the cathode is the most studied component in Intermediate Temperature-Solid Oxide Fuel Cel...
The slow activity of cathode materials is one of the most significant barriers to realizing the oper...
Development of alternative ceramic oxide anode materials is a key step for direct hydrocarbon solid ...
The layered perovskite PrBaxCo2O5+δ (PBxCO, x = 0.90–1.0) oxides have been synthesized by a solid-st...
The authors Abdalla M. Abdalla and Shahzad Hossain are thankful to the Graduate Research Office of U...