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A density-functional study of Al-doped Ti clusters: TinAl (n=1–13)
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Citations
43
References
2004
Year
Materials ScienceCluster ScienceMolecular SolidEngineeringAl-doped Ti ClustersNatural SciencesApplied PhysicsSolid-state ChemistryPhysical ChemistryCluster ChemistryComputational ChemistryTinal ClustersQuantum ChemistryChemistryElectronic PropertiesEquilibrium GeometriesElectronic Structure
Equilibrium geometries, stabilities, and electronic properties of TinAl (n = 1-13) clusters have been studied by using density-functional theory with local spin density approximation and generalized gradient approximation. The ground-state structures of TinAl clusters have been obtained. The resulting geometries show that the aluminum atom remains on the surface of clusters for n < 9, but is slowly getting trapped beyond n = 9, meanwhile, the Al atom exhibits a valent transition from monovalent to trivalent. The geometric effects and electronic effects clearly demonstrate the Ti4Al cluster to be endowed with special stability. The studies on the bonds indicate the change from ionic to metalliclike.
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