High-temperature proton conductors have wide applications in the areas of fuel cells, electrolysis and hydrogen separation. Barium zirconate-based materials are of interest due to their good stability and high protonic conductivity. The reported conductivity of these ceramic materials is generally less than 10(-2) S/cm, even at high temperatures. This is not high enough for an electrolyte-supported device to achieve an ASR of less than 0.2 Omega cm(2) therefore thin film electrolytes are required for successful application. As BaZrO3-based materials have to be sintered at temperatures as high as 1700 degrees C, this makes it difficult to find a suitable supporting electrode which will not undergo significant chemical reaction with the BaZrO...
[EN] Barium zirconate-based perovskites (BZY) are intensely studied proton conductors for high-tempe...
10% yttrium doped barium zirconate (BZY10) was synthesized by solid state reaction and a 99.8% dense...
Reducing the operating temperature in the 500–750 C range is needed for widespread use of solid oxi...
Yttrium and indium co-doped barium zirconate is investigated to develop a chemically stable and sint...
To address the wide range of reported conductivities in literature and investigate the viability of ...
Solid oxide proton conductors offer a new intermediate temperature fuel cell technology combining th...
In3+ was used as dopant for BaZrO3 proton conductor and 30 at%-doped BaZrO3 samples (BaZr0.7In 0.3O3...
Abstract: In this work, 20 mol.% of Ce was introduced into the lattice of Y-doped BaZrO3, and 0.5 wt...
Proton conducting oxide electrolytes find potential application in proton ceramic fuel cells and ele...
Proton conducting oxide electrolytes find potential application in proton ceramic fuel cells and ele...
Proton conducting oxide electrolytes find potential application in proton ceramic fuel cells and ele...
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 ...
[EN] Barium zirconate-based perovskites (BZY) are intensely studied proton conductors for high-tempe...
10% yttrium doped barium zirconate (BZY10) was synthesized by solid state reaction and a 99.8% dense...
Reducing the operating temperature in the 500–750 C range is needed for widespread use of solid oxi...
Yttrium and indium co-doped barium zirconate is investigated to develop a chemically stable and sint...
To address the wide range of reported conductivities in literature and investigate the viability of ...
Solid oxide proton conductors offer a new intermediate temperature fuel cell technology combining th...
In3+ was used as dopant for BaZrO3 proton conductor and 30 at%-doped BaZrO3 samples (BaZr0.7In 0.3O3...
Abstract: In this work, 20 mol.% of Ce was introduced into the lattice of Y-doped BaZrO3, and 0.5 wt...
Proton conducting oxide electrolytes find potential application in proton ceramic fuel cells and ele...
Proton conducting oxide electrolytes find potential application in proton ceramic fuel cells and ele...
Proton conducting oxide electrolytes find potential application in proton ceramic fuel cells and ele...
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 ...
[EN] Barium zirconate-based perovskites (BZY) are intensely studied proton conductors for high-tempe...
10% yttrium doped barium zirconate (BZY10) was synthesized by solid state reaction and a 99.8% dense...
Reducing the operating temperature in the 500–750 C range is needed for widespread use of solid oxi...