Publication | Closed Access
Hydrogen content estimation of hydrogenated amorphous carbon by visible Raman spectroscopy
95
Citations
31
References
2004
Year
Optical MaterialsEngineeringChemistrySpectroscopic PropertyChemical EngineeringHydrogen Content EstimationOptical DiagnosticsSp2∕sp3 FractionMaterials ScienceHydrogenSp2 ContentUv-vis SpectroscopyDiamond-like CarbonAmorphous CarbonVisible Raman SpectroscopyHydrogen TransitionNatural SciencesSpectroscopyApplied PhysicsSpectroscopic Method
In the present study, we report the hydrogen content estimation of the hydrogenated amorphous carbon (a-C:H) films using visible Raman spectroscopy in a fast and nondestructive way. Hydrogenated diamondlike carbon films were deposited by the plasma enhanced chemical vapor deposition, plasma beam source, and integrated distributed electron cyclotron resonance techniques. Methane and acetylene were used as source gases resulting in different hydrogen content and sp2∕sp3 fraction. Ultraviolet-visible (UV-Vis) spectroscopic ellipsometry (1.5–5eV) as well as UV-Vis spectroscopy were provided with the optical band gap (Tauc gap). The sp2∕sp3 fraction and the hydrogen content were independently estimated by electron energy loss spectroscopy and elastic recoil detection analysis-Rutherford back scattering, respectively. The Raman spectra that were acquired in the visible region using the 488nm line shows the superposition of Raman features on a photoluminescence (PL) background. The direct relationship of the sp2 content and the optical band gap has been confirmed. The difference in the PL background for samples of the same optical band gap (sp2 content) and different hydrogen content was demonstrated and an empirical relationship between the visible Raman spectra PL background slope and the corresponding hydrogen content was extracted.
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