AB-INITIO CALCULATIONS OF THE ULTRAVIOLET RESONANCE RAMAN-SPECTRA OF URACIL

被引:107
作者
PETICOLAS, WL [1 ]
RUSH, T [1 ]
机构
[1] UNIV OREGON,INST PHYS CHEM,EUGENE,OR 97403
关键词
D O I
10.1002/jcc.540161008
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
An equation been derived to calculate, ab initio, the frequencies and intensities of a resonant Raman spectrum from the transform theory of resonance Raman scattering. This equation has been used to calculate the intensities of the ultraviolet resonance Raman spectra from the first pi-pi* excited state of uracil and 1,3-dideuterouracil. The protocol for this calculation is as follows: (1) The force constant matrix elements in Cartesian coordinate space, the vibrational frequencies, and the minimum energy ground and excited state geometries of the molecule are calculated ab initio using the molecular orbital program Gaussian 92, (2) the force constants in Cartesian coordinates are transformed into force constants in the space of a set of 3N-6 nonredundant symmetrized internal coordinates, (3) the G matrix is constructed from the energy minimized ground state Cartesian coordinates and the GFL = L Lambda eigenvalue equation is solved in internal coordinate space, (4) the elements of the L and L(-1) matrices are calculated, (5) the changes in all of the internal coordinates in going from the ground to the excited state are calculated, and (6) these results are used in combination with the transform theory of resonance Raman scattering to calculate the relative intensities of each of the 3N-6 vibrations as a function of the exciting laser frequency. There are no adjustable parameters in this calculation, which reproduces the experimental frequencies and intensities with remarkable fidelity. This indicates that the Dushinsky rotation of the modes in the excited state of these molecules is not important and that the simplest form of the transform theory is adequate. (C) 1995 by John Wiley & Sons, Inc.
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页码:1261 / 1270
页数:10
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