Publication | Closed Access
Resonance effects in Raman scattering from polycrystalline diamond films
170
Citations
13
References
1991
Year
Materials ScienceResonance EffectsDiamond-like CarbonOptical MaterialsEngineeringCarbon-based MaterialNanomaterialsNanotechnologySpectroscopyOptical PropertiesApplied PhysicsPhotonic MaterialsOptical SpectroscopySurface-enhanced Raman ScatteringNanometrologyCm−1 Raman LinePhoton EnergyIncident Photon Energy
We report on a Raman spectroscopic study of polycrystalline diamond films using a wide range of incident photon energies (1.16–4.82 eV). The scattering intensity of amorphous sp2-bonded carbon is found to vary considerably as a function of the incident photon energy as compared to the strength of the 1332 cm−1 Raman line from sp3-bonded diamond. There is also a frequency downshift of the apparent peak position for scattering from the sp2-bonded carbon with decreasing photon energy. Excitation in the infrared range is shown to give a high sensitivity to scattering from amorphous sp2-bonded carbon whereas ultraviolet excitation enhances the 1332 cm−1 signal from crystalline diamond considerably even in nanocrystalline films.
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