Ceria and ceria-based materials have versatile technological and industrial applications physically ascribed to the flexible fluctuation of the Ce oxidation state between Ce4+ and Ce3+. Considerable multidisciplinary research has been carried out to obtain the Ce oxidation state, which is crucial for their application; however, a rigorous and physically correct determination of the oxidation state is still lacking. Here, we conduct first-principles DFT + U calculations to unambiguously determine the physical oxidation state of Ce in ceria-based materials, such as homogenous CenO2n–2 (n = 7, 9, 10, 11, and 12), ceria doped by multivalent Ti and V, Ce–Ti(V)–O ternary compounds, and Ce–Ti–V–O quaternary compounds. The results show that the Ce...
The ability of cerium to cycle between Ce+3 and Ce+4 is crucial for ceria-based materials in many ca...
Point defects are an inherent part of crystalline materials and they influence important physical an...
In this study, we investigate the (111), (110) and (100) surfaces of reduced ceria (CeO2) using dens...
CeO2 based materials are very attractive as catalytic components for industrial processes and enviro...
CeO2 based materials are very attractive as catalytic components for industrial processes and enviro...
We present periodic density functional theory (DFT) calculations of bulk ceria and its low index sur...
The primary aim of this thesis is to develop a minimal model Hamiltonian to describe the electronic ...
Cerium(IV) oxide (CeO2), ceria, is an active metal oxide used in solid oxide fuel cells and for the ...
Lanthanide(Ln) oxides represent an array of materials which exhibit unique properties, such as, supe...
The defect chemistry and electronic structure of NiO/CeO(2) solid solutions are studied by means of ...
Trabajo presentado en el 5th Workshop on Novel Methods for Electronic Structure Calculations, celebr...
In this paper we evaluate the performance of density functional theory with the B3LYP functional for...
Catalysts based on cerium oxide are ubiquitous in industrial-scale chemical conversion. Here, a thor...
The electronic structure and properties of cerium oxides CeO2 and Ce2O3 have been studied in the fr...
We determine chemical origins of increase in the reducibility of CeO2 upon Ti substitution using a c...
The ability of cerium to cycle between Ce+3 and Ce+4 is crucial for ceria-based materials in many ca...
Point defects are an inherent part of crystalline materials and they influence important physical an...
In this study, we investigate the (111), (110) and (100) surfaces of reduced ceria (CeO2) using dens...
CeO2 based materials are very attractive as catalytic components for industrial processes and enviro...
CeO2 based materials are very attractive as catalytic components for industrial processes and enviro...
We present periodic density functional theory (DFT) calculations of bulk ceria and its low index sur...
The primary aim of this thesis is to develop a minimal model Hamiltonian to describe the electronic ...
Cerium(IV) oxide (CeO2), ceria, is an active metal oxide used in solid oxide fuel cells and for the ...
Lanthanide(Ln) oxides represent an array of materials which exhibit unique properties, such as, supe...
The defect chemistry and electronic structure of NiO/CeO(2) solid solutions are studied by means of ...
Trabajo presentado en el 5th Workshop on Novel Methods for Electronic Structure Calculations, celebr...
In this paper we evaluate the performance of density functional theory with the B3LYP functional for...
Catalysts based on cerium oxide are ubiquitous in industrial-scale chemical conversion. Here, a thor...
The electronic structure and properties of cerium oxides CeO2 and Ce2O3 have been studied in the fr...
We determine chemical origins of increase in the reducibility of CeO2 upon Ti substitution using a c...
The ability of cerium to cycle between Ce+3 and Ce+4 is crucial for ceria-based materials in many ca...
Point defects are an inherent part of crystalline materials and they influence important physical an...
In this study, we investigate the (111), (110) and (100) surfaces of reduced ceria (CeO2) using dens...