Reaction paths of some open-shell reactive intermediates |
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Authors: | Shigeru Nagase Takayuki Fueno |
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Affiliation: | (1) Department of Chemistry, Faculty of Engineering Science, Osaka University, Japan |
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Abstract: | The intermolecular interaction energy for reacting systems in singlet, triplet and doublet states was partitioned by the perturbation expansion method into the chemically meaningful five interaction terms: the Coulomb, exchange-repulsion, induction, dispersion, and charge-transfer energies. In the local ZDO approximation, these energy terms were evaluated for the dimerization of methylenes (1,3CH2), the additions of carbenes (1,3CH2 and1,3CF2) as well as amino radicals (2NH2 and2NF2) toward ethylene, and the hydrogen abstractions by methylenes (1,3CH2), nitrene (3NH), and hydroxyl radical (2OH) from methane. It has been found that the reaction path is much influenced by the spinmultiplicity, and that the charge-transfer and exchange-repulsion terms play a dominant role in determining the course of reactions. |
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Keywords: | Intermolecular interaction Radicals, reaction paths of /content/n6581j516l4370p7/xxlarge8764.gif" alt=" sim" align=" MIDDLE" BORDER=" 0" > |
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