Publication | Closed Access
Influence of the Atomic Structure on the Raman Spectra of Graphite Edges
658
Citations
6
References
2004
Year
Raman SpectraStep EdgesEngineeringChemistryCarbon HexagonsGraphene NanomeshesCarbon-based MaterialGraphite EdgesNanoelectronicsAtomic StructureMaterials SciencePhysicsDouble Resonance TheoryNatural SciencesSpectroscopyGraphene FiberApplied PhysicsGrapheneGraphene Nanoribbon
A study of step edges in graphite with different atomic structures combining Raman spectroscopy and scanning probe microscopy is presented. The orientation of the carbon hexagons with respect to the edge axis, in the so-called armchair or zigzag arrangements, is distinguished spectroscopically by the intensity of a disorder-induced Raman peak. This effect is explained by applying the double resonance theory to a semi-infinite graphite crystal and by considering the one-dimensional character of the defect.
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