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Iodine–benzene charge-transfer complex: Potential energy surface and transition probabilities studied at several levels of theory

✍ Scribed by Ferdinand C. Grozema; Robert W. J. Zijlstra; Marcel Swart; Piet Th. van Duijnen


Publisher
John Wiley and Sons
Year
1999
Tongue
English
Weight
464 KB
Volume
75
Category
Article
ISSN
0020-7608

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✦ Synopsis


We present the results of detailed studies of the potential energy Ž surfaces of the iodine᎐benzene charge-transfer complex obtained from fully counterpoise . Ž . corrected ab initio calculations at the second-order Møller᎐Plesset MP2 level and from Ž . semi-classical calculations. The most stable conformations found were the above-bond and the above-carbon conformations. The axial conformation was found to be somewhat less stable. The remarkable difference in intermolecular distance for different orientations of the iodine is explained in terms of the polarization anisotropy. This feature makes the construction of an accurate classical force field rather difficult because of the marked dependence of the repulsion parameterᎏusually the radiusᎏfor iodine on both orientation and polarization of the iodine. Investigation of the oscillator strengths of different complex geometries shows that there are many conformations in which the charge-transfer excitation can take place.