Electronic absorption spectra in a polar fluid: Theory and simulation
- 1 October 1991
- journal article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 95 (7) , 4756-4764
- https://doi.org/10.1063/1.461718
Abstract
We present calculations of the inhomogeneously broadened absorption line shape associated with a single vibronic transition in a polar chromophore at infinite dilution in a polar solvent. The permanent electric dipole moment of the solute is assumed to change upon electronic excitation. The line shape is related to the dipolar solvation free energy of a fictitious solute with a complex-valued dipole moment. This relation allows methods of equilibrium fluid theory to be applied to the line shape calculation. In order to assess the accuracy of theoretical predictions, we determine line shapes from Monte Carlo simulations for a dipolar hard sphere solute in a dipolar hard sphere solvent. Simulated line shapes are compared to predictions of the mean spherical approximation (MSA) and to a simplified nonlinear solvation theory. The MSA is found to show semiquantitative agreement with simulation results, despite the large value of the solute’s ground-state dipole moment and of its dipole moment change upon excitation. Simulation results are also compared to the relation between the first and second moments of the spectrum that is predicted by any linearized solvation theory. The comparison suggests that an ‘‘exact’’ linearized theory would provide accurate predictions for absorption spectra in polar solutions.Keywords
This publication has 47 references indexed in Scilit:
- Non-Markovian dephasing of molecules in solution measured with three-pulse femtosecond photon echoesPhysical Review Letters, 1991
- Breakdown of linear response for solvation dynamics in methanolThe Journal of Physical Chemistry, 1991
- Hole-Burning SpectroscopyAnnual Review of Physical Chemistry, 1989
- Direct observation of the excited-state c i s–t r a n s photoisomerization of bacteriorhodopsin: Multilevel line shape theory for femtosecond dynamic hole burning and its applicationThe Journal of Chemical Physics, 1989
- Hyperpolarizability dependent dispersion forces and absorption spectra in simple liquidsMolecular Physics, 1988
- A thermodynamic analysis of solvationThe Journal of Chemical Physics, 1988
- A resonance Raman intensity study of electronic spectral broadening mechanisms in CS2/cyclohexaneThe Journal of Chemical Physics, 1988
- Comparison of experiment and theory for the resonance Raman spectrum of I2 in solution. III. Perfluorohexane and chloroformThe Journal of Chemical Physics, 1987
- Linearized microscopic theories of nonequilibrium solvationThe Journal of Chemical Physics, 1987
- On the Theory of Shifts and Broadening of Electronic Spectra of Polar Solutes in Polar MediaThe Journal of Chemical Physics, 1965