STRUCTURES AND ELECTRONIC STATES OF ION-PAIR COMPLEXES FORMED BETWEEN A CARBONYL COMPOUND AND A SODIUM ATOM - AN AB-INITIO MOLECULAR-ORBITAL AND MRSDCI STUDY

被引:29
|
作者
TACHIKAWA, H
MURAI, H
YOSHIDA, H
机构
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D O I
10.1039/ft9938902369
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The geometric structure and electronic state of ion pairs formed by an electron transfer from an alkali metal atom to the C=O group of a carbonyl compound, have been determined using ab initio molecular orbital (MO) and multireference single and double excitation configuration interaction (MRSDCI) methods. As model systems of the ion pair, acetone-Na (AT-Na) and formaldehyde-Na (FA-Na) systems were chosen. The geometry optimizations of the FA-Na ion pair gave two structures as the stable form. One is a linear form with a C-0-Na angle of 168.7-degrees and the other is the pi-form with an angle of 87.6-degrees. The total energies of both ion pairs are similar, although the energy calculation shows that the pi form is slightly more stable than the linear form. On the other hand, the geometry optimization of the AT-Na ion pair gave only a linear form for the stable structure. The MRSDCI wavefunctions of the ion pairs indicate that the interaction between the alkali metal and the carbonyl group is composed of an attractive Coulomb force [C=0-...Na+] at the ground state, whereas the nature of the bonding is determined by the weakly attractive van der Waals force [C=0...Na] at the first excited state. From an analysis of the excited-state wavefunctions, the first absorption band of the ion pairs is assigned to the charge-transfer (CT) transition expressed by pi(C=O)* --> Na(3s). The solvent effects on the spin density of the carbonyl oxygen in a 2-methyltetrahydrofuran (MTHF) matrix were also discussed on the basis of the fractional charge model.
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页码:2369 / 2373
页数:5
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