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Self-Diffusion of Small Clusters on fcc Metal (111) Surfaces
70
Citations
17
References
2000
Year
Surface CharacterizationCluster ScienceEngineeringPhysicsTrimer DiffusesNatural SciencesSurface ScienceApplied PhysicsCondensed Matter PhysicsFcc MetalDimer DiffusesPhysical ChemistryCluster ChemistryChemistryQuantum ChemistryMigration EnergyElectronic StructureAb-initio Method
We use ab initio density-functional theory supplemented with the embedded-atom method to study the self-diffusion of small clusters on the (111) surface of eight fcc metals. A zigzag motion is found to be important in the dimer and tetramer diffusions. The dimer diffuses by a zigzag and concerted motion. The trimer diffuses by a concerted three-atom motion. The tetramer diffuses through a zigzag motion where only two atoms move simultaneously in each step. Thus, instead of increasing, the migration energy is lowered (or stays constant) for the tetramer as compared to that for the trimer. This novel break of the upwards trend in migration energy is predicted to be a general phenomenon.
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