Publication | Open Access
Molecular dynamics simulation of hydrogen atom diffusion in crystal lattice of fcc metals
39
Citations
14
References
2017
Year
EngineeringMaterial SimulationMolecular Dynamics SimulationComputational ChemistryChemistryHydrogen Atom DiffusionMolecular DynamicsNanoscale ModelingHydrogen ImpurityMolecular KineticsMaterials SciencePhysicsMetallurgical InteractionAtomic PhysicsHydrogen Atom MigrationPhysical ChemistryCrystal LatticeQuantum ChemistryHydrogenElemental MetalDiffusion ResistanceNatural SciencesSurface ScienceApplied PhysicsMetallurgical SystemChemical ThermodynamicsHydrogen Embrittlement
Abstract The study of diffusion of hydrogen atoms in the crystal lattice of fcc metals Pd, Ni, Al, Ag was performed by the method of molecular dynamics. The diffusion characteristics of hydrogen impurity (activation energy of hydrogen atom migration and pre-exponential factor in the Arrhenius equation) in the considered metals were calculated. It is shown that the prevailing mechanism of the over-barrier hydrogen diffusion in fcc metals consists of successive migration through octahedral and tetrahedral pores. During migration, as a rule, the hydrogen atom is not delayed in tetrahedral pores.
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