Solvent and pressure-induced perturbations of the vibrational potential surface of acetonitrile
- 15 June 1992
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 96 (12) , 8781-8792
- https://doi.org/10.1063/1.462285
Abstract
Raman‐scattering studies at both ambient pressures and in a high‐pressure diamond‐anvil cell are used to measure gas‐to‐liquid vibrational frequency shifts of three normal modes of acetonitrile, CH3CN (ν1, CH stretch; ν2, CN stretch; and ν4, CC stretch) dissolved in various solvents (methylenechloride, chloroform, carbontetrachloride, toluene, pyridine, acetone, and methanol). The results are compared with calculated repulsive and attractive solvation force‐induced perturbations of polyatomic vibrational potential surfaces. Repulsive solvation forces are modeled using recently developed analytical ‘‘hard‐fluid’’ expressions for heteronuclear two‐cavity distribution functions in hard‐sphere fluids, while attractive forces are assumed to contribute a van der Waals(linearly density‐dependent) mean field. Results for the CN and CC stretches of acetonitrile compare favorably with theoretical predictions, while the CH stretch appears to experience a nonlinearly density‐dependent attractive frequency shift at high densities. Empirical attractive frequency‐shift parameters, derived from gas‐to‐liquid shifts at 1 atm, agree reasonably well with those predicted using a simple dispersive and dipolar solvation force expression. Attractive solvation forces are found to correlate well with solventpolarizability (and solute bond polarizability derivatives). Dipolar solvation forces only appear to contribute significantly to the CN stretch.Keywords
This publication has 70 references indexed in Scilit:
- The effects of pressure and temperature on vibrational dephasing in a simulation of liquid CH3CNMolecular Physics, 1987
- A study of vibrational dephasing of theA1modes of CH3CN in a computer simulation of the liquid phaseMolecular Physics, 1987
- Direct picosecond determination of the character of vibrational line-broadening in liquidsOptics Communications, 1986
- Statistical mechanics of small chain molecules in liquids. I. Effects of liquid packing on conformational structuresThe Journal of Chemical Physics, 1978
- Raman study of vibrational dephasing in liquid CH3CN and CD3CNThe Journal of Chemical Physics, 1977
- On the secondary structure of some vibrational bands of acetonitrileSpectrochimica Acta Part A: Molecular Spectroscopy, 1976
- On the secondary structure of some acetonitrile vibrational bandsSpectrochimica Acta Part A: Molecular Spectroscopy, 1975
- Gas Phase Raman Intensities: A Review of “Pre-Laser” DataApplied Spectroscopy, 1969
- Force fields for nitrilesSpectrochimica Acta Part A: Molecular Spectroscopy, 1968
- Ionization potentials of some moleculesJournal of Quantitative Spectroscopy and Radiative Transfer, 1962