Acceptor doped Perovskite ceramics have been shown to exhibit high levels of protonic conduction in humid atmospheres. However significant grain boundary resistance and long sintering times required to achieve sufficient grain size growth has hindered their widespread application as electrolyzers, fuel cells and gas separation membranes. Furthermore there is insufficient detailed knowledge on the local environment of the H+ and its behavior in relation to the crystal structure under real working conditions.The works of the thesis describe the synthesis, structural characterization and conductivity of BaZr0.5In0. 5O3—δ and BaSn1-xScxO3—δ (x = 0, 0.1, 0.2, 0.3, 0.4, 0.5). Traditional solid state sintering was used to prepare the samples which...
Some aliovalently doped perovskites like SrCe_0_._9_5Yb_0_._0_5O_3_-_#alpha# or BaCe_0_._9_0Nd_0_._0...
Solid oxide fuel cell (SOPC) has been considered to generate power represented by conductivity. Zinc...
The BaCe0.7Zr0.1Y0.2−xZnxO3−δ (x = 0.05, 0.10, 0.15, 0.20) has been synthesized by the conventional ...
<p>Acceptor doped Perovskite ceramics have been shown to exhibit high levels of protonic conduction ...
Proton conducting oxides can be beneficial as electrolyte materials in devices such as fuel cells, h...
Acceptor-doped perovskite oxides exhibit significant proton conductivity in hydrogen containing atmo...
Traditional solid state sintering has been used to prepare the perovskite BaZr0.9Yb0.1O3-delta. Anal...
Solid-state sintering has been used to prepare the perovskite BaZr0.9Sc0.1O3-delta. Analysis of X-ra...
Fuel cells are electrochemical devices that transform the chemical energy in hydrogen and oxygen int...
Spark-plasma sintering method was used to prepare dense proton conducting perovskite oxide BaZr0.5In...
Solid state sintering has been used to prepare the cubic perovskite structured compounds BaZr1−xInxO...
Two different preparative routes, one a wet chemical route (WCR) and the other a traditional solid s...
Rare-earth-doped BaCeO3 and BaZrO3 electrolytes with perovskite structure have been studied extensiv...
The proton conductivity and structural features of In3+ substituted BaZrO3 samples, i.e., BaZr1−xInx...
A wet chemical route has been used to synthesize the oxygen deficient perovskite Ba Zr0.5 Yb0.5 O3-δ...
Some aliovalently doped perovskites like SrCe_0_._9_5Yb_0_._0_5O_3_-_#alpha# or BaCe_0_._9_0Nd_0_._0...
Solid oxide fuel cell (SOPC) has been considered to generate power represented by conductivity. Zinc...
The BaCe0.7Zr0.1Y0.2−xZnxO3−δ (x = 0.05, 0.10, 0.15, 0.20) has been synthesized by the conventional ...
<p>Acceptor doped Perovskite ceramics have been shown to exhibit high levels of protonic conduction ...
Proton conducting oxides can be beneficial as electrolyte materials in devices such as fuel cells, h...
Acceptor-doped perovskite oxides exhibit significant proton conductivity in hydrogen containing atmo...
Traditional solid state sintering has been used to prepare the perovskite BaZr0.9Yb0.1O3-delta. Anal...
Solid-state sintering has been used to prepare the perovskite BaZr0.9Sc0.1O3-delta. Analysis of X-ra...
Fuel cells are electrochemical devices that transform the chemical energy in hydrogen and oxygen int...
Spark-plasma sintering method was used to prepare dense proton conducting perovskite oxide BaZr0.5In...
Solid state sintering has been used to prepare the cubic perovskite structured compounds BaZr1−xInxO...
Two different preparative routes, one a wet chemical route (WCR) and the other a traditional solid s...
Rare-earth-doped BaCeO3 and BaZrO3 electrolytes with perovskite structure have been studied extensiv...
The proton conductivity and structural features of In3+ substituted BaZrO3 samples, i.e., BaZr1−xInx...
A wet chemical route has been used to synthesize the oxygen deficient perovskite Ba Zr0.5 Yb0.5 O3-δ...
Some aliovalently doped perovskites like SrCe_0_._9_5Yb_0_._0_5O_3_-_#alpha# or BaCe_0_._9_0Nd_0_._0...
Solid oxide fuel cell (SOPC) has been considered to generate power represented by conductivity. Zinc...
The BaCe0.7Zr0.1Y0.2−xZnxO3−δ (x = 0.05, 0.10, 0.15, 0.20) has been synthesized by the conventional ...