Journal of Raman Spectroscopy · 1991 · 14 citations · 17 references
Resonance BalanceElectrode SurfaceChemical EngineeringSurface‐enhanced Resonance RamanEngineeringSurface ChemistryNatural SciencesSpectroscopySurface ScienceSurface-enhanced Raman ScatteringPhysical ChemistryHemicyanine Dye 4‐ChemistrySurface ReactivitySilver Electrode SurfaceElectrochemistry
Abstract Surface‐enhanced resonance Raman scattering (SERRS) spectra were measured at O V (vs Ag/AgCl) for a hemicyanine dye and its protonated form (HC and HCH + ) adsorbed on a silver electrode surface. The surface spectrum of HC shows a characteristic feature due to a trans conformation, a band mainly due to a stretching frequency (ν cc ) at 1580 cm −1 , which is appreciably lower than the corresponding frequency for HC in water (1592 cm −1 ); this result indicates that, on adsorption on the electrode surface, the resonance balance of HC between the quinoid and benzenoid forms shifts to the former. An adsorbate on a silver electrode surface from HCH + solution at pH 1.0 takes either a protonated form, HCH + , or a deprotonated form, HC, depending on the anodization conditions of granular structures assumes the deprotonated form, whereas the adsorbate on a surface containing smooth parts retains the protonated form; hence the surface morphology is related to the chemical properties of the silver electrode surfaces. It was also found that the adsorbate in the protonated state gives a prominent SERRS band at 885 cm −1 assignable to an out‐of plane bending vibration of the central olefinic group, indicating that the adsorbate assumes a flat orientation on the silver electrode surface.
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Martin Moskovits · Reviews of Modern Physics · 1985 · 5.4K citations
P. Hollins · Spectrochimica Acta Part A Molecular Spectroscopy · 1989 · 329 citations