High-temperature proton conductors are promising electrolytes for protonic solid oxide fuel cells (H+-SOFCs). In this study, the relationship between the Zr doping content and structure, chemical stability, carbon dioxide resistivity, sinterability and electrochemical properties of BaZryCe0.8-yY0.2O3-d (BZCYy), 0.0 = y = 0.8, are studied systemically using XRD, CO2-TPD, SEM, EIS and I-V polarization characterizations. Zr doping suppresses carbonate formation, CO2-TPD demonstrates that the formative rate of carbonate over BZCYy are 7.50 × 10-6 and 8.70 × 10-7 mol m-2 min-1 at y = 0.0 and 0.4, respectively. Investigation of sinterability shows that the anode-supported configuration helps the sintering of the thin-film electrolyte. Peak power ...
Proton conductors BaCe0.8-xZrxY0.2O3-δ were synthesized by a wet chemistry process to obtain powder...
Proton conductors BaCe0.8-xZrxY0.2O3-δ were synthesized by a wet chemistry process to obtain powder...
Proton conductors BaCe0.8-xZrxY0.2O3-δ were synthesized by a wet chemistry process to obtain powder...
Yttrium and indium co-doped barium zirconate is investigated to develop a chemically stable and sint...
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 ...
A soft chemistry method was used to synthesize BaCe0.8 - xZrxY0.2O3 - δ (BCZY, with 0.0 ≤ x ≤ 0.8) p...
A soft chemistry method was used to synthesize BaCe0.8 - xZrxY0.2O3 - δ (BCZY, with 0.0 ≤ x ≤ 0.8) p...
A soft chemistry method was used to synthesize BaCe0.8 - xZrxY0.2O3 - δ (BCZY, with 0.0 ≤ x ≤ 0.8) p...
A soft chemistry method was used to synthesize BaCe0.8 - xZrxY0.2O3 - δ (BCZY, with 0.0 ≤ x ≤ 0.8) p...
BaZr0.8Y0.2O3 (BZY) may be one of the most promising proton conductors for hydrogen separation membr...
Proton conductors BaCe0.8-xZrxY0.2O3-δ were synthesized by a wet chemistry process to obtain powder...
In3+ was used as dopant for BaZrO3 proton conductor and 30 at%-doped BaZrO3 samples (BaZr0.7In 0.3O3...
Proton conductors BaCe0.8-xZrxY0.2O3-δ were synthesized by a wet chemistry process to obtain powder...
Proton conductors BaCe0.8-xZrxY0.2O3-δ were synthesized by a wet chemistry process to obtain powder...
Proton conductors BaCe0.8-xZrxY0.2O3-δ were synthesized by a wet chemistry process to obtain powder...
Yttrium and indium co-doped barium zirconate is investigated to develop a chemically stable and sint...
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 ...
A soft chemistry method was used to synthesize BaCe0.8 - xZrxY0.2O3 - δ (BCZY, with 0.0 ≤ x ≤ 0.8) p...
A soft chemistry method was used to synthesize BaCe0.8 - xZrxY0.2O3 - δ (BCZY, with 0.0 ≤ x ≤ 0.8) p...
A soft chemistry method was used to synthesize BaCe0.8 - xZrxY0.2O3 - δ (BCZY, with 0.0 ≤ x ≤ 0.8) p...
A soft chemistry method was used to synthesize BaCe0.8 - xZrxY0.2O3 - δ (BCZY, with 0.0 ≤ x ≤ 0.8) p...
BaZr0.8Y0.2O3 (BZY) may be one of the most promising proton conductors for hydrogen separation membr...
Proton conductors BaCe0.8-xZrxY0.2O3-δ were synthesized by a wet chemistry process to obtain powder...
In3+ was used as dopant for BaZrO3 proton conductor and 30 at%-doped BaZrO3 samples (BaZr0.7In 0.3O3...
Proton conductors BaCe0.8-xZrxY0.2O3-δ were synthesized by a wet chemistry process to obtain powder...
Proton conductors BaCe0.8-xZrxY0.2O3-δ were synthesized by a wet chemistry process to obtain powder...
Proton conductors BaCe0.8-xZrxY0.2O3-δ were synthesized by a wet chemistry process to obtain powder...