Publication | Open Access
Thermal Contraction and Disordering of the Al(110) Surface
1.2K
Citations
31
References
1999
Year
Aluminium NitrideThermal ContractionEngineeringCold WorkingChemistryElectronic StructureThermodynamicsMaterials ScienceFirst Interlayer DistanceMolecular SolidPhysicsAtomic PhysicsPhysical ChemistryQuantum ChemistryMicrostructureSurface CharacterizationTransition Metal ChalcogenidesPacked SurfaceNatural SciencesSurface ScienceApplied PhysicsCondensed Matter PhysicsThermal Expansion
Al(110) has been studied for temperatures up to 900 K via ensemble density-functional molecular dynamics. The strong anharmonicity displayed by this surface results in a negative coefficient of thermal expansion, where the first interlayer distance decreases with increasing temperature. Very shallow channels of oscillation for the second-layer atoms in the direction perpendicular to the surface support this anomalous contraction, and provide a novel mechanism for the formation of adatom-vacancy pairs, preliminary to the disordering and premelting transition. Such characteristic behavior originates in the free-electron-gas bonding at a loosely packed surface.
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