AIP Advances · 2016 · 19 citations · 16 references
EngineeringGeneral FormulaOptimized Lattice ConstantMagnetismHalf-heusler AlloysHalf-metallic Half-heusler AlloyAlloysMaterials SciencePhysicsMagnetic MaterialCrystallographyMicrostructureSpintronicsFerromagnetismNatural SciencesApplied PhysicsAlloy DesignMagnetic PropertyAlloy PhaseMultiprincipal Element AlloyTransition Metal Element
For half-Heusler alloys, the general formula is XYZ, where X can be a transition or alkali metal element, Y is another transition metal element, typically Mn or Cr, and Z is a group IV element or a pnicitide. The atomic arrangements within a unit-cell show three configurations. Before this study, most of the predictions of half-metallic properties of half-Heusler alloys at the lattice constants differing from their optimized lattice constant. Based on the electropositivity of X and electronegativity of Z for half-Heusler alloys, we found that one of the configurations of LiCrS exhibits half-metallic properties at its optimized lattice constant of 5.803Å, and has the maximum atomic-like magnetic moment of 5μB. The challenges of its growth and the effects of the spin-orbit effect in this alloy will be discussed.
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