Publication | Open Access
Structure of the Fivefold Surface of the Icosahedral Al-Cu-Fe Quasicrystal: Experimental Evidence of Bulk Truncations at Larger Interlayer Spacings
56
Citations
10
References
2004
Year
Larger Interlayer SpacingsHigh ResolutionEngineeringFivefold SurfaceTunneling MicroscopyMetallic Functional MaterialSurface ReconstructionMaterials ScienceMaterials EngineeringPhysicsBulk TruncationsMetallurgical InteractionLayered MaterialCrystallographyMicrostructureSurface CharacterizationSurface AnalysisSurface ScienceCondensed Matter PhysicsApplied Physics
Based on scanning tunneling microscopy of the fivefold surface of the icosahedral Al-Cu-Fe quasicrystal and the refined structure model of the isostructural i-Al-Pd-Mn, we present evidence that the surface corresponds to bulk truncations at the positions where blocks of atomic layers are separated by larger interlayer spacings (gaps). Both step-height distribution and high resolution scanning tunneling microscopy images on terraces reveal bulk truncations at larger gaps.
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