Publication | Open Access
Relation between Dielectric and Low-Frequency Raman Spectra of Hydrogen-Bond Liquids
341
Citations
15
References
2005
Year
Ethylene GlycolEngineeringSurface-enhanced Raman ScatteringComplex DielectricHydrogen-bond LiquidsChemistrySpectroscopic PropertySpectra-structure CorrelationOptical PropertiesOptical SpectroscopyPhysicsPhysical ChemistryHydrogenQuantum ChemistryCooperative RelaxationMicrowave SpectroscopyNatural SciencesSpectroscopyApplied PhysicsHydrogen-bonded LiquidSpectroscopic Method
We analyzed the complex dielectric and Raman spectra of hydrogen-bond liquids in the microwave to terahertz frequency range. As for water and methanol, the high-frequency component of the dielectric spectrum, i.e., the small deviation from the principal Debye relaxation, clearly corresponds to the Raman spectrum. This indicates that the cooperative relaxation, accompanied by huge polarization fluctuation, is virtually not Raman active, whereas the faster processes reflect common microscopic dynamics. For ethylene glycol, the shape of the Raman spectrum also resembles that of the high-frequency deviation of the dielectric spectrum, but, additionally, a weak manifestation of the cooperative relaxation arising from quadrupolar conformers is detected.
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