Although BaZr 0.8Y 0.2O 3-δ(BZY) possesses large bulk proton conductivity and excellent chemical stability, its poor sinterability and grain boundaries block proton conduction. In this work, the effect of Ca as a co-dopant and as a sintering aid (as CaO), on the sinterability, proton conductivity, and fuel cell performance of BZY was investigated. The addition of 4 mol% CaO significantly improved the BZY sinterability: BZY pellets with densities of 92.7% and 97.5% with respect to the theoretical density were obtained after sintering at 1500°C and 1600°C, respectively. The improved BZY sinterability by CaO addition resulted also in a large proton conductivity; at 600°C, the total conductivity of BZY-CaO was 2.14 × 10 -3 S/cm, in wet Ar. Anod...
To address the wide range of reported conductivities in literature and investigate the viability of ...
Proton conducting yttrium-doped barium zirconate (BZY) is one of the most studied materials for SOFC...
In3+ was used as dopant for BaZrO3 proton conductor and 30 at%-doped BaZrO3 samples (BaZr0.7In 0.3O3...
Although BaZr 0.8Y 0.2O 3-δ(BZY) possesses large bulk proton conductivity and excellent chemical sta...
A chemically stable and highly proton-conductive electrolyte is developed by partially substituting ...
A chemically stable and highly proton-conductive electrolyte is developed by partially substituting ...
A chemically stable and highly proton-conductive electrolyte is developed by partially substituting ...
A chemically stable and highly proton-conductive electrolyte is developed by partially substituting ...
Yttrium and indium co-doped barium zirconate is investigated to develop a chemically stable and sint...
BaZr0.8Y0.2O3 (BZY) may be one of the most promising proton conductors for hydrogen separation membr...
A novel sintering additive based on LiNO3 was used to overcome the drawbacks of poor sinterability a...
A novel sintering additive based on LiNO3 was used to overcome the drawbacks of poor sinterability a...
A novel sintering additive based on LiNO3 was used to overcome the drawbacks of poor sinterability a...
Ceramic proton conducting BaCeO3-BaZrO3 materials have received great interest as potential electrol...
Solid oxide proton conductors offer a new intermediate temperature fuel cell technology combining th...
To address the wide range of reported conductivities in literature and investigate the viability of ...
Proton conducting yttrium-doped barium zirconate (BZY) is one of the most studied materials for SOFC...
In3+ was used as dopant for BaZrO3 proton conductor and 30 at%-doped BaZrO3 samples (BaZr0.7In 0.3O3...
Although BaZr 0.8Y 0.2O 3-δ(BZY) possesses large bulk proton conductivity and excellent chemical sta...
A chemically stable and highly proton-conductive electrolyte is developed by partially substituting ...
A chemically stable and highly proton-conductive electrolyte is developed by partially substituting ...
A chemically stable and highly proton-conductive electrolyte is developed by partially substituting ...
A chemically stable and highly proton-conductive electrolyte is developed by partially substituting ...
Yttrium and indium co-doped barium zirconate is investigated to develop a chemically stable and sint...
BaZr0.8Y0.2O3 (BZY) may be one of the most promising proton conductors for hydrogen separation membr...
A novel sintering additive based on LiNO3 was used to overcome the drawbacks of poor sinterability a...
A novel sintering additive based on LiNO3 was used to overcome the drawbacks of poor sinterability a...
A novel sintering additive based on LiNO3 was used to overcome the drawbacks of poor sinterability a...
Ceramic proton conducting BaCeO3-BaZrO3 materials have received great interest as potential electrol...
Solid oxide proton conductors offer a new intermediate temperature fuel cell technology combining th...
To address the wide range of reported conductivities in literature and investigate the viability of ...
Proton conducting yttrium-doped barium zirconate (BZY) is one of the most studied materials for SOFC...
In3+ was used as dopant for BaZrO3 proton conductor and 30 at%-doped BaZrO3 samples (BaZr0.7In 0.3O3...