Single particle reorientation and pair correlations of methyl iodide solutions studied by depolarized Rayleigh and Raman scattering
- 1 May 1976
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 64 (9) , 3567-3572
- https://doi.org/10.1063/1.432726
Abstract
Concentration and temperature dependent depolarized Rayleigh light scattering spectra were obtained for an important molecular liquid—methyl iodide—using interferometry. The concentration dependent studies yielded reliable single particle rotational‐relaxation times. These single particle times were used to test the approximations used to obtain rotational‐relaxation times for CH3I from Raman spectra. Having verified the validity of these assumptions for CH3I, depolarized Rayleigh and Raman results were combined to study the concentration and viscosity dependences of pair correlations. Single particle relaxation times obtained from temperature and viscosity dependent studies were used to test various hydrodynamic models of molecular reorientation. The optically isotropic solvent used in the solution work consists of 46% isopentane and 54% CCl4 (by volume).Keywords
This publication has 18 references indexed in Scilit:
- Rotational friction coefficients for ellipsoids and chemical molecules with the slip boundary conditionThe Journal of Chemical Physics, 1975
- Raman and depolarized Rayleigh scattering in the liquid state: Reorientational motions and correlations in orientation for symmetric top moleculesThe Journal of Chemical Physics, 1975
- Infrared and Raman studies of rotational correlation functions in liquidsChemical Physics, 1975
- Molecular reorientation in liquids by Rayleigh scattering: Pressure dependence of rotational correlation functionsThe Journal of Chemical Physics, 1975
- Molecular reorientation in liquids. Experimental test of hydrodynamic modelsJournal of the American Chemical Society, 1974
- Temperature dependent Raman study of molecular motions and interactions of CH3 I in the liquid phaseThe Journal of Chemical Physics, 1973
- Raman Scattering: Orientational Motions in LiquidsThe Journal of Chemical Physics, 1972
- A Continued-Fraction Representation of the Time-Correlation FunctionsProgress of Theoretical Physics, 1965
- Transport, Collective Motion, and Brownian MotionProgress of Theoretical Physics, 1965
- Mouvement brownien d'un ellipsoide - I. Dispersion diélectrique pour des molécules ellipsoidalesJournal de Physique et le Radium, 1934