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Zero-Point Vibration of Hydrogen Adsorbed on Si and Pt Surfaces
57
Citations
31
References
2002
Year
EngineeringChemistryMaterials SciencePhysicsNuclear Reaction AnalysisPhysical ChemistryHydrogenQuantum ChemistryZero-point VibrationNra SpectrumHydrogen TransitionSurface ChemistryNatural SciencesSurface AnalysisSurface ScienceApplied PhysicsHydrogen BondHydrogen-bonded LiquidSurface ReactivityTilted IonIon Structure
Hydrogen atoms adsorbed on Si(111) and Pt(111) were investigated by nuclear reaction analysis (NRA) using 1H(15N,alphagamma)12C. From measurements of the NRA spectrum at normal and tilted ion incidences the zero-point vibrational energies of H on Si(111) in the perpendicular and parallel directions were found to be 123.4+/-4.6 and 44.6+/-6.2 meV, respectively, which are consistent with harmonic potentials. The zero-point energies obtained for Pt(111)-H were 80.8+/-3.9 and 62.1+/-6.0 meV for perpendicular and parallel directions, respectively. These results indicate that the stretching mode is harmonic, while the bending mode is strongly anharmonic.
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