In this study, we investigate the effect of decorating the grain boundaries of nanocrystalline undoped ceria on the electrical transport properties. For the decoration, different acceptors (Yb, Y, Bi) were chosen. On decoration, the conduction switches from electronic to ionic. Upon sintering the grains are characterized by a core-shell configuration, in which the core remains undoped while the shell is heavily doped as a consequence of the diffusion of the acceptors toward the grain interior. The shell dominates the overall transport properties of the nanocrystalline ceria and is found to be in the mesoscopic regime
abstract: Because of their favorable ionic and/or electronic conductivity, non-stoichiometric oxides...
The microstructural evolution and grain-boundary influence on electrical properties of Ce0.90Gd0.10O...
The long-range and short-range structure of nanocrystalline and microcrystalline acceptor-doped ceri...
In this study, we investigate the effect of decorating the grain boundaries of nanocrystalline undop...
Four high purity heavily yttrium doped ceria (YDC, YxCe1-xO2-delta, x=0.1, 0.15, 0.2 0.25) electroly...
Heavily acceptor doped ceria is a material of great relevance for applications in solid oxide fuel c...
Acceptor doped ceria (CeO2) is a material that over the years has attracted much interest for applic...
Studies related to the effects of grain size (30nm - 5.0μm) on the electrical conductivity of undope...
The long-range and short-range structure of nanocrystalline and microcrystalline acceptor-doped ceri...
Dense (> 99%) samaria-doped cerium oxide show a conductivity dependence on grain size, as measured b...
The ionic and electronic conductivities of samaria doped ceria electrolytes, Ce_(0.85)Sm_(0.15)O_(1....
Alumina was added to doped ceria and its effect on the grain conductivity was studied. The electrica...
The roles of grain size and chemical composition on the electronic conductivity (σ) of CeO2 are repo...
Abstract The ionic transport properties of nanocrystalline 20 mol% Eu, Gd, Dy, and Ho doped cerias, ...
This article reviews the current understanding of the electrical properties of the grain boundaries ...
abstract: Because of their favorable ionic and/or electronic conductivity, non-stoichiometric oxides...
The microstructural evolution and grain-boundary influence on electrical properties of Ce0.90Gd0.10O...
The long-range and short-range structure of nanocrystalline and microcrystalline acceptor-doped ceri...
In this study, we investigate the effect of decorating the grain boundaries of nanocrystalline undop...
Four high purity heavily yttrium doped ceria (YDC, YxCe1-xO2-delta, x=0.1, 0.15, 0.2 0.25) electroly...
Heavily acceptor doped ceria is a material of great relevance for applications in solid oxide fuel c...
Acceptor doped ceria (CeO2) is a material that over the years has attracted much interest for applic...
Studies related to the effects of grain size (30nm - 5.0μm) on the electrical conductivity of undope...
The long-range and short-range structure of nanocrystalline and microcrystalline acceptor-doped ceri...
Dense (> 99%) samaria-doped cerium oxide show a conductivity dependence on grain size, as measured b...
The ionic and electronic conductivities of samaria doped ceria electrolytes, Ce_(0.85)Sm_(0.15)O_(1....
Alumina was added to doped ceria and its effect on the grain conductivity was studied. The electrica...
The roles of grain size and chemical composition on the electronic conductivity (σ) of CeO2 are repo...
Abstract The ionic transport properties of nanocrystalline 20 mol% Eu, Gd, Dy, and Ho doped cerias, ...
This article reviews the current understanding of the electrical properties of the grain boundaries ...
abstract: Because of their favorable ionic and/or electronic conductivity, non-stoichiometric oxides...
The microstructural evolution and grain-boundary influence on electrical properties of Ce0.90Gd0.10O...
The long-range and short-range structure of nanocrystalline and microcrystalline acceptor-doped ceri...