Publication | Open Access
Chirality Distribution and Transition Energies of Carbon Nanotubes
379
Citations
23
References
2004
Year
EngineeringChiral IndexSpectroscopic PropertySpectra-structure CorrelationChirality DistributionCarbon-based MaterialOptical PropertiesFullereneOptical SpectroscopyCarbon NanotubesBiophysicsPhysicsPhysical ChemistryQuantum ChemistryRaman IntensityNanomaterialsNatural SciencesSpectroscopyApplied PhysicsGraphene NanoribbonResonant RamanNanotubesSpectroscopic Method
From resonant Raman scattering on isolated nanotubes we obtained the optical transition energies, the radial breathing mode frequency, and the Raman intensity of both metallic and semiconducting tubes. We unambiguously assigned the chiral index (n(1),n(2)) of approximately 50 nanotubes based solely on a third-neighbor tight-binding Kataura plot and find omega(RBM)=(214.4+/-2) cm(-1) nm/d+(18.7+/-2) cm(-1). In contrast to luminescence experiments we observe all chiralities including zigzag tubes. The Raman intensities have a systematic chiral-angle dependence confirming recent ab initio calculations.
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