This article reviews the current understanding of the electrical properties of the grain boundaries of acceptor-doped zirconia and ceria, however, with an emphasis on the grain-boundary defect structure. From an electrical point of view, a grain boundary consists of a grain-boundary core and two adjacent space-charge layers. The grain-boundary cores of acceptor-doped zirconia. and ceria are positively charged, probably owing to the oxygen vacancy enrichment there. Oxygen vacancies are therefore depleted in the space-charge layer. The grain-boundary conductivities of acceptor-doped zirconia and ceria are at least two orders of magnitude lower than the corresponding bulk values, depending on temperature and dopant level. Such a phenomenon is ...
The long-range and short-range structure of nanocrystalline and microcrystalline acceptor-doped ceri...
Grain boundary conductivities are determined by complex impedance measurements (1–106 Hz) on high-pu...
CeO2 samples doped with 10, 1.0, and 0.1 mol% Y2O3 and undoped CeO2 samples of high purity were stu...
The electrical properties of 3 mol% Y2O3 doped ZrO2 were measured by impedance spectroscopy as a fun...
The grain boundary cores of acceptor-doped zirconia and ceria are positively charged. which is proba...
Owing to the positively charged grain boundary cores in acceptor-doped ZrO2 and CeO2, oxygen vacanci...
We investigated oxygen ionic conduction in fully dense, transparent polycrystalline yttrium-doped zi...
According to the space charge concept, oxygen vacancies are depleted in the grain boundary space ch...
The electrical properties of bulk and grain boundaries of scandia-stabilized zirconia co-doped with ...
The role of grain boundaries on oxygen surface exchange in an oxide ion conductor is reported. Atomi...
The blocking of ion transport at interfaces strongly limits the performance of electrochemical nanod...
The influence of the grain boundaries on ionic conductivity of yttrium stabilized zirconia (YSZ) was...
Understanding the chemical and charge transport properties of grain boundaries (GBs) with high point...
Grain boundary conductivities are determined by complex impedance measurements (1-106 Hz) on high-pu...
Grain boundary conductivities are determined by complex impedance measurements (1–106 Hz) on high-pu...
The long-range and short-range structure of nanocrystalline and microcrystalline acceptor-doped ceri...
Grain boundary conductivities are determined by complex impedance measurements (1–106 Hz) on high-pu...
CeO2 samples doped with 10, 1.0, and 0.1 mol% Y2O3 and undoped CeO2 samples of high purity were stu...
The electrical properties of 3 mol% Y2O3 doped ZrO2 were measured by impedance spectroscopy as a fun...
The grain boundary cores of acceptor-doped zirconia and ceria are positively charged. which is proba...
Owing to the positively charged grain boundary cores in acceptor-doped ZrO2 and CeO2, oxygen vacanci...
We investigated oxygen ionic conduction in fully dense, transparent polycrystalline yttrium-doped zi...
According to the space charge concept, oxygen vacancies are depleted in the grain boundary space ch...
The electrical properties of bulk and grain boundaries of scandia-stabilized zirconia co-doped with ...
The role of grain boundaries on oxygen surface exchange in an oxide ion conductor is reported. Atomi...
The blocking of ion transport at interfaces strongly limits the performance of electrochemical nanod...
The influence of the grain boundaries on ionic conductivity of yttrium stabilized zirconia (YSZ) was...
Understanding the chemical and charge transport properties of grain boundaries (GBs) with high point...
Grain boundary conductivities are determined by complex impedance measurements (1-106 Hz) on high-pu...
Grain boundary conductivities are determined by complex impedance measurements (1–106 Hz) on high-pu...
The long-range and short-range structure of nanocrystalline and microcrystalline acceptor-doped ceri...
Grain boundary conductivities are determined by complex impedance measurements (1–106 Hz) on high-pu...
CeO2 samples doped with 10, 1.0, and 0.1 mol% Y2O3 and undoped CeO2 samples of high purity were stu...