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Perturbation method alternant hydrocarbons

First-order perturbation theory within the simple MO method derives the following generalizations for changes in spectra by substituting a nitrogen for a carbon atom in an alternant hydrocarbon. [Pg.322]

The perturbational MO method of Longuet-Higgins (11) and Dewar (12), which was thoroughly reviewed by Dewar and Dougherty (6), has been the pencil-and-paper method of choice in numerous applications. More recently, a modified free-electron (MFE) MO approach (13-15) and a valence-bond structure-resonance theory (VBSRT) (7, 16, 17) have been applied to several PAH structure and reactivity problems. A new perturbational variant of the free-electron MO method (PMO F) has also been derived and reported (8, 18). Both PMO F and VBSRT qualify as simple pencil-and-paper procedures. When applied to a compilation of electrophilic substitution parameters (ct+) (19-23), the correlation coefficients of calculated reactivity indexes with cr+ for alternant hydrocarbons are 0.973 and 0.959, respectively (8). In this case, the performance of the PMO F method rivals that of the best available SCF calculations for systems of this size, and that of VBSRT is sufficient for most purposes. [Pg.290]


See other pages where Perturbation method alternant hydrocarbons is mentioned: [Pg.97]    [Pg.140]    [Pg.327]    [Pg.97]    [Pg.140]    [Pg.135]    [Pg.3242]    [Pg.83]   


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