The question of the charge distribution in reduced ceria phases (CeO2-x) is important for understanding the microscopic physics of oxygen storage capacity, and the electronic and ionic conductivities in these materials. All these are key properties in the application of these materials in catalysis and electrochemical devices. Several approaches have been applied to study this problem, including ab initio methods. Recently [1], we applied the bond valence model (BVM) to discuss the charge distribution in several different crystallographic phases of reduced ceria. Here, we compare the BVM results to those from atomistic simulations to determine if there is consistency in the predictions of the two approaches. Our analysis shows that the two ...
International audienceOne of the key objectives in developing solid oxide fuel cells and oxygen memb...
Acceptor doped ceria (CeO2) is a material that over the years has attracted much interest for applic...
The electrical conductivity of CeO(,2-x) was measured in the temperature range 800(DEGREES) - 1000(D...
We consider the implications of the bond valence model (BVM) description of charge distribution in r...
The primary aim of this thesis is to develop a minimal model Hamiltonian to describe the electronic ...
For the development of solid oxide fuel cells (SOFC) and high-temperature electrolysis an electrolyt...
© 2014 American Physical SocietyThe importance of ceria ( CeO2 ) in many applications originates fro...
We present periodic density functional theory (DFT) calculations of bulk ceria and its low index sur...
Trabajo presentado en el Meeting COST Action CM1104-Reducible oxide chemistry, structure and functio...
The roles of grain size and chemical composition on the electronic conductivity (σ) of CeO2 are repo...
Materials with high oxygen ion conductivity and low electronic conductivity are required for electro...
Cerium oxide is an important material for modern three-way catalysts for automotive exhaust emission...
The high temperature drift mobility ([mu]d) of charge carriers in nonstoichiometric cerium dioxide (...
Cerium oxide (ceria, CeO2) is one of the most promising mixed ionic and electronic conducting materi...
The critical role of the ionic conductivity properties of materials in the development of Intermedia...
International audienceOne of the key objectives in developing solid oxide fuel cells and oxygen memb...
Acceptor doped ceria (CeO2) is a material that over the years has attracted much interest for applic...
The electrical conductivity of CeO(,2-x) was measured in the temperature range 800(DEGREES) - 1000(D...
We consider the implications of the bond valence model (BVM) description of charge distribution in r...
The primary aim of this thesis is to develop a minimal model Hamiltonian to describe the electronic ...
For the development of solid oxide fuel cells (SOFC) and high-temperature electrolysis an electrolyt...
© 2014 American Physical SocietyThe importance of ceria ( CeO2 ) in many applications originates fro...
We present periodic density functional theory (DFT) calculations of bulk ceria and its low index sur...
Trabajo presentado en el Meeting COST Action CM1104-Reducible oxide chemistry, structure and functio...
The roles of grain size and chemical composition on the electronic conductivity (σ) of CeO2 are repo...
Materials with high oxygen ion conductivity and low electronic conductivity are required for electro...
Cerium oxide is an important material for modern three-way catalysts for automotive exhaust emission...
The high temperature drift mobility ([mu]d) of charge carriers in nonstoichiometric cerium dioxide (...
Cerium oxide (ceria, CeO2) is one of the most promising mixed ionic and electronic conducting materi...
The critical role of the ionic conductivity properties of materials in the development of Intermedia...
International audienceOne of the key objectives in developing solid oxide fuel cells and oxygen memb...
Acceptor doped ceria (CeO2) is a material that over the years has attracted much interest for applic...
The electrical conductivity of CeO(,2-x) was measured in the temperature range 800(DEGREES) - 1000(D...