AbstractWe apply atomistic simulation techniques to address whether oxygen shows higher diffusivity at the grain boundary region compared to that in bulk UO2, and whether the relative diffusivity is affected by the choice of the grain boundary. We consider coincident site lattice grain boundaries, Σ3, Σ5, Σ9, Σ11 and Σ19, expressing the {nn1}, {n11}, and {n10} surfaces, and evaluate the extent that the grain boundary structures affect the diffusion of oxygen. We found that oxygen diffusion is enhanced at all boundaries and in the adjacent regions, with strong dependence on the temperature and local structure
Following containment failure in the scenario of geological disposal of spent nuclear fuel, the pene...
We present a general strategy for generating full atomistic models of nanopolycrystalline materials...
The transport of oxygen in dense samples of yttria-stabilized zirconia (YSZ), of average grain size ...
AbstractWe apply atomistic simulation techniques to address whether oxygen shows higher diffusivity ...
An important challenge for modelling transport in materials for energy applications is that in most ...
The influence of grain-boundaries on uranium and oxygen difusion in polycrystalline UO2 has been inv...
International audienceEBSD measurements performed on polycrystalline UO2 samples were analyzed to ob...
Molecular dynamics simulations have been conducted to study the effects of dislocations and grain bo...
Thermodynamic and transport properties of hyperstoichiometric uranium dioxide,UO2+x, constitute a ke...
The influence of grain-boundaries on uranium and oxygen diusion in polycrystalline UO2 has been inve...
To understand the mechanism of fuel oxidation, in the event of exposure of spent nuclear fuel to gro...
This work uses atomic-level simulations to analyze the interactions of voids with a grain boundary (...
Fission products at the point of contact between the pellet and the cladding contribute to the ultim...
Received: 04.02.2021. Revised: 30.03.2021. Accepted: 30.03.2021. Available online: 31.03.2021.This a...
Our series of articles is devoted to high-precision molecular dynamics simulation of mixed actinide-...
Following containment failure in the scenario of geological disposal of spent nuclear fuel, the pene...
We present a general strategy for generating full atomistic models of nanopolycrystalline materials...
The transport of oxygen in dense samples of yttria-stabilized zirconia (YSZ), of average grain size ...
AbstractWe apply atomistic simulation techniques to address whether oxygen shows higher diffusivity ...
An important challenge for modelling transport in materials for energy applications is that in most ...
The influence of grain-boundaries on uranium and oxygen difusion in polycrystalline UO2 has been inv...
International audienceEBSD measurements performed on polycrystalline UO2 samples were analyzed to ob...
Molecular dynamics simulations have been conducted to study the effects of dislocations and grain bo...
Thermodynamic and transport properties of hyperstoichiometric uranium dioxide,UO2+x, constitute a ke...
The influence of grain-boundaries on uranium and oxygen diusion in polycrystalline UO2 has been inve...
To understand the mechanism of fuel oxidation, in the event of exposure of spent nuclear fuel to gro...
This work uses atomic-level simulations to analyze the interactions of voids with a grain boundary (...
Fission products at the point of contact between the pellet and the cladding contribute to the ultim...
Received: 04.02.2021. Revised: 30.03.2021. Accepted: 30.03.2021. Available online: 31.03.2021.This a...
Our series of articles is devoted to high-precision molecular dynamics simulation of mixed actinide-...
Following containment failure in the scenario of geological disposal of spent nuclear fuel, the pene...
We present a general strategy for generating full atomistic models of nanopolycrystalline materials...
The transport of oxygen in dense samples of yttria-stabilized zirconia (YSZ), of average grain size ...