Raman Scattering Studies in Liquids and Glasses. II. Liquid and Supercooled Liquid Glycerol
- 1 October 1971
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 55 (7) , 3300-3307
- https://doi.org/10.1063/1.1676580
Abstract
The Raman scattering technique was used to investigate the temperature dependence of the low frequency (10–250 cm−1) intermolecular spectrum in liquid and supercooled liquid glycerol. The Raman spectra, both polarized and depolarized, were interpreted by using a relationship connecting the Raman scattering spectral density to the imaginary dielectric susceptibility. The imaginary dielectric susceptibility function was then calculated by a damped harmonic oscillator model. Within the framework of this model, the temperature dependent behavior of the characteristic oscillator frequency, damping constant, and static susceptibility were obtained and interpreted as arising from the hydrogen bond motion existing in the glycerol system. The intermolecular Raman and the thermal neutron scattering results have been found to be supplementary and have both led to a consistent description of the various low frequency motions in the liquid and supercooled liquid glycerol as influenced by the temperature sensitive hydrogen bonding.Keywords
This publication has 9 references indexed in Scilit:
- Raman Scattering Studies of Liquids and Glasses. I. Liquid and Supercooled Liquid GlycerolThe Journal of Chemical Physics, 1971
- Low frequency spin lattice relaxation in glycerolChemical Physics Letters, 1970
- Quasi-elastic scattering of cold neutrons in C3H5(OD)3 at various temperaturesPhysics Letters A, 1968
- Temperature Dependence of the Ferroelectric Mode in KPPhysical Review Letters, 1968
- Rotational and Translational Diffusion in Complex LiquidsPhysical Review B, 1968
- Free Volume and Shear Compliance of Hydrogen-Bonded LiquidsThe Journal of Chemical Physics, 1967
- Proton motion in some hydrogenous liquids studied by cold neutron scatteringPhysica, 1964
- Cold neutron scattering and diffusive motions in hydrogen bonded liquidsPhysics Letters, 1962
- The complete Raman spectrum of glycerineProceedings of the Indian Academy of Sciences - Section A, 1939