Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7964465 | Journal of Nuclear Materials | 2016 | 6 Pages |
Abstract
Binding energies of beryllium and tungsten atoms on surfaces of the alloys Be2W and Be12W were obtained from density functional theory calculations. Values of 4.08-5.63Â eV for beryllium and 6.81-10.04Â eV for tungsten were obtained. An analytical force field agrees for beryllium, but its tungsten surface atoms are too strongly bound. The surface binding energies of Be and W on Be12W surfaces is slightly smaller than on the pure Be and W surfaces, respectively. For higher tungsten content, i.e. for Be2W, the situation is more complicated. For some surfaces of this alloy the surface binding energies are enhanced while for others they are diminished, compared to the pure metal surfaces. The dependency of the cohesive energy on the mole fraction follows a linear relationship.
Related Topics
Physical Sciences and Engineering
Energy
Nuclear Energy and Engineering
Authors
Michael Gyoeroek, Alexander Kaiser, Ivan Sukuba, Jan Urban, Kersti Hermansson, Michael Probst,