An important challenge for modelling transport in materials for energy applications is that in most applications they are polycrystalline, and hence it is critical to understand the properties in the presence of grain boundaries. Moreover, most grain boundaries are not pristine stoichiometric interfaces and hence dopants are likely to play a significant role. In this paper, we describe our recent work on using atomistic molecular dynamics simulations to model the effect of doped grain boundaries on oxygen transport of fluorite structured UO2. UO2, much like other fluorite grain boundaries are found to be sinks for oxygen vacancy segregation relative to the grain interior, thus facilitating oxygen transport. Fission products further enhance ...
Transport of point defects controls a variety of materials process such as precipitation, segregatio...
Control of the defect chemistry in UO2±x is important for manipulating nuclear fuel properties and f...
Molecular dynamics simulation studies have been performed to study the oxygen ion diffusion in yttri...
AbstractWe apply atomistic simulation techniques to address whether oxygen shows higher diffusivity ...
Data support article accepted for publication in Philosophical Transactions A. Data includes inputs ...
Fission products at the point of contact between the pellet and the cladding contribute to the ultim...
This work uses atomic-level simulations to analyze the interactions of voids with a grain boundary (...
International audienceThe effect of the dopant distribution on the oxygen diffusion in doped fluorit...
International audienceIn this talk we discuss two topics. The first one is oxidation of UO2 and the ...
The recently reported oxygen incorporation enhancement near the grain boundary (GB) of yttria-stabil...
Molecular dynamics simulation studies have been performed to study the oxygen ion diffusion in yttri...
Fission products, such as krypton (Kr), are known to be insoluble within UO2, segregating toward gra...
Oxygen-ion transport in fluorite-type oxides was studied for the model system ceria $\text{CeO}_2$ w...
International audienceEBSD measurements performed on polycrystalline UO2 samples were analyzed to ob...
Transport of point defects controls a variety of materials process such as precipitation, segregatio...
Control of the defect chemistry in UO2±x is important for manipulating nuclear fuel properties and f...
Molecular dynamics simulation studies have been performed to study the oxygen ion diffusion in yttri...
AbstractWe apply atomistic simulation techniques to address whether oxygen shows higher diffusivity ...
Data support article accepted for publication in Philosophical Transactions A. Data includes inputs ...
Fission products at the point of contact between the pellet and the cladding contribute to the ultim...
This work uses atomic-level simulations to analyze the interactions of voids with a grain boundary (...
International audienceThe effect of the dopant distribution on the oxygen diffusion in doped fluorit...
International audienceIn this talk we discuss two topics. The first one is oxidation of UO2 and the ...
The recently reported oxygen incorporation enhancement near the grain boundary (GB) of yttria-stabil...
Molecular dynamics simulation studies have been performed to study the oxygen ion diffusion in yttri...
Fission products, such as krypton (Kr), are known to be insoluble within UO2, segregating toward gra...
Oxygen-ion transport in fluorite-type oxides was studied for the model system ceria $\text{CeO}_2$ w...
International audienceEBSD measurements performed on polycrystalline UO2 samples were analyzed to ob...
Transport of point defects controls a variety of materials process such as precipitation, segregatio...
Control of the defect chemistry in UO2±x is important for manipulating nuclear fuel properties and f...
Molecular dynamics simulation studies have been performed to study the oxygen ion diffusion in yttri...