We determine the atomic structure of the (111) surface of an epitaxial ceria film using low-energy electron diffraction (LEED). The 3-fold-symmetric LEED patterns are consistent with a bulk-like termination of the (111) surface. By comparing the experimental dependence of diffraction intensity on electron energy (LEED-I(V) data) with simulations of dynamic scattering from different surface structures, we find that the CeO2(111) surface is terminated by a plane of oxygen atoms.We also find that the bond lengths in the top few surface layers of CeO2(111) are mostly undistorted from their bulk values, in general agreement with theoretical predictions. However, the topmost oxygen layer is further from the underlying cerium layer than the true b...
Atomic surface structures of CeO<sub>2</sub> nanoparticles are under debate owing to the lack of cle...
Ceria-based catalytic materials are known for their crystal-face-dependent catalytic properties. To ...
The cerium oxide was deposited by reactive vacuum evaporation on the (111) surface of copper single-...
Studies of model systems based on cerium oxide are important to improve current understanding of the...
Study of local structure of binary surface with usage of ultra-thin film of cerium deposited on a Pd...
The structure and properties of CeO2 surfaces have been intensively studied due to their importance ...
In this work ways of preparation of thin epitaxial cerium oxide film on Cu(110) surface were studied...
We present a study of the structure of cerium oxide ultrathin films supported on Pt(111), focused on...
We present a study of the structure of cerium oxide ultrathin films supported on Pt(111), focused on...
The structural changes of a (111) oriented CeO2 film grown on a Si(111) substrate covered with a hex...
Multiply bonded lanthanide oxo groups are rare in coordination compounds and have not previously bee...
The atomic structure of the CeO2(111) surface in different states of cleanliness and reduction is st...
A detailed atomic scale description of the interfaces between cerium oxide and metals is necessary f...
Scanning tunneling microscopy (STM) combined with density functional theory (DFT) are used to analyz...
We have used density-functional theory to investigate (111), (110), (210), (211), (100), and (310) s...
Atomic surface structures of CeO<sub>2</sub> nanoparticles are under debate owing to the lack of cle...
Ceria-based catalytic materials are known for their crystal-face-dependent catalytic properties. To ...
The cerium oxide was deposited by reactive vacuum evaporation on the (111) surface of copper single-...
Studies of model systems based on cerium oxide are important to improve current understanding of the...
Study of local structure of binary surface with usage of ultra-thin film of cerium deposited on a Pd...
The structure and properties of CeO2 surfaces have been intensively studied due to their importance ...
In this work ways of preparation of thin epitaxial cerium oxide film on Cu(110) surface were studied...
We present a study of the structure of cerium oxide ultrathin films supported on Pt(111), focused on...
We present a study of the structure of cerium oxide ultrathin films supported on Pt(111), focused on...
The structural changes of a (111) oriented CeO2 film grown on a Si(111) substrate covered with a hex...
Multiply bonded lanthanide oxo groups are rare in coordination compounds and have not previously bee...
The atomic structure of the CeO2(111) surface in different states of cleanliness and reduction is st...
A detailed atomic scale description of the interfaces between cerium oxide and metals is necessary f...
Scanning tunneling microscopy (STM) combined with density functional theory (DFT) are used to analyz...
We have used density-functional theory to investigate (111), (110), (210), (211), (100), and (310) s...
Atomic surface structures of CeO<sub>2</sub> nanoparticles are under debate owing to the lack of cle...
Ceria-based catalytic materials are known for their crystal-face-dependent catalytic properties. To ...
The cerium oxide was deposited by reactive vacuum evaporation on the (111) surface of copper single-...