The impact of hydration on the transport properties of microcrystalline Sm_(0.15)Ce_(0.85)O_(1.925) has been examined. Dense, polycrystalline samples were obtained by conventional ceramic processing and the grain boundary regions were found, by high resolution transmission electron microscopy, to be free of impurity phases. Impedance spectroscopy measurements were performed over the temperature range 250 to 650 °C under dry, H_2O-saturated, and D_2O-saturated synthetic air; and over the temperature range 575 to 650 °C under H_2–H_2O atmospheres. Under oxidizing conditions humidification by either H_2O or D_2O caused a substantial increase in the grain boundary resistivity, while leaving the bulk (or grain interior) properties unchanged. Thi...
Low-temperature ceramic proton conductors such as ceria are important for applications ranging from ...
Heavily acceptor doped ceria is a material of great relevance for applications in solid oxide fuel c...
Doped ceria-based materials are potential electrolytes for use in lower operating temperature (500-7...
The impact of hydration on the transport properties of microcrystalline Sm_(0.15)Ce_(0.85)O_(1.925) ...
The ionic and electronic conductivities of samaria doped ceria electrolytes, Ce_(0.85)Sm_(0.15)O_(1....
Doped ceria has been considered for high oxygen ion conductivity for solid oxide fuel cells. In the ...
Transport and structural properties of heavily doped ceria can reveal subtle details of the interpla...
Doped ceria has been considered for high oxygen ion conductivity for solid oxide fuel cells. In the ...
Water adsorption, splitting, and proton liberation were investigated on Sm0.1Ce0.9O2-δ thin films ...
abstract: Because of their favorable ionic and/or electronic conductivity, non-stoichiometric oxides...
In this contribution, I provide a comprehensive picture of the potential energy landscape for oxygen...
The crystallographic properties of the Ce1-x(Nd0.63Dy0.37)xO2-x/2 system (0 ≤ x ≤ 0.6) were studied ...
Columnar thin films of undoped ceria were grown by metal–organic chemical vapor deposition. The film...
Gadolinia-doped ceria (GDC) is a very promising material for solid oxide fuel cells operating at int...
A systematic study by reversible and hysteretic electrochemical strain microscopy (ESM) in samples o...
Low-temperature ceramic proton conductors such as ceria are important for applications ranging from ...
Heavily acceptor doped ceria is a material of great relevance for applications in solid oxide fuel c...
Doped ceria-based materials are potential electrolytes for use in lower operating temperature (500-7...
The impact of hydration on the transport properties of microcrystalline Sm_(0.15)Ce_(0.85)O_(1.925) ...
The ionic and electronic conductivities of samaria doped ceria electrolytes, Ce_(0.85)Sm_(0.15)O_(1....
Doped ceria has been considered for high oxygen ion conductivity for solid oxide fuel cells. In the ...
Transport and structural properties of heavily doped ceria can reveal subtle details of the interpla...
Doped ceria has been considered for high oxygen ion conductivity for solid oxide fuel cells. In the ...
Water adsorption, splitting, and proton liberation were investigated on Sm0.1Ce0.9O2-δ thin films ...
abstract: Because of their favorable ionic and/or electronic conductivity, non-stoichiometric oxides...
In this contribution, I provide a comprehensive picture of the potential energy landscape for oxygen...
The crystallographic properties of the Ce1-x(Nd0.63Dy0.37)xO2-x/2 system (0 ≤ x ≤ 0.6) were studied ...
Columnar thin films of undoped ceria were grown by metal–organic chemical vapor deposition. The film...
Gadolinia-doped ceria (GDC) is a very promising material for solid oxide fuel cells operating at int...
A systematic study by reversible and hysteretic electrochemical strain microscopy (ESM) in samples o...
Low-temperature ceramic proton conductors such as ceria are important for applications ranging from ...
Heavily acceptor doped ceria is a material of great relevance for applications in solid oxide fuel c...
Doped ceria-based materials are potential electrolytes for use in lower operating temperature (500-7...