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Electrophilic aromatic substitution reactions transition state modeling

The best-known equation of the type mentioned is, of course, Hammett s equation. It correlates, with considerable precision, rate and equilibrium constants for a large number of reactions occurring in the side chains of m- and p-substituted aromatic compounds, but fails badly for electrophilic substitution into the aromatic ring (except at wi-positions) and for certain reactions in side chains in which there is considerable mesomeric interaction between the side chain and the ring during the course of reaction. This failure arises because Hammett s original model reaction (the ionization of substituted benzoic acids) does not take account of the direct resonance interactions between a substituent and the site of reaction. This sort of interaction in the electrophilic substitutions of anisole is depicted in the following resonance structures, which show the transition state to be stabilized by direct resonance with the substituent ... [Pg.137]

Electrophilic Substitution Reactivity Much of the electrophilic reactivity of aromatics is described in great detail in a comprehensive recent book of Taylor [10]. We shall focus attention on the electrophilic substitution reactivity of annelated benzenes and try to interpret the orientational ability of fused small rings. For this purpose we consider here Wheland transition states of the electrophilic substitution reactions. It is also convenient to take the proton as a model of the electrophilic reagent. In order to delineate rehybridization and 7r-electron localization effects, let us consider a series of angularly deformed benzenes (Fig. 21), where two vicinal CH bonds bent toward each other mimick a fused small ring. Angles c of 110° and 94° simulate five and four membered... [Pg.85]


See other pages where Electrophilic aromatic substitution reactions transition state modeling is mentioned: [Pg.897]    [Pg.230]    [Pg.82]    [Pg.176]    [Pg.31]    [Pg.163]    [Pg.200]    [Pg.2]    [Pg.160]    [Pg.41]    [Pg.52]    [Pg.41]    [Pg.235]    [Pg.238]    [Pg.49]    [Pg.41]   
See also in sourсe #XX -- [ Pg.100 ]




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Aromaticity electrophilic aromatic substitution

Aromatics electrophilic substitution

Electrophile Electrophilic aromatic substitution

Electrophile reactions Electrophilic aromatic

Electrophilic aromatic reactions

Electrophilic substitution reaction

Electrophilic substitution, aromatic transition states

Model transit

Substitution electrophilic aromatic

Substitution electrophilic aromatic substitutions

Substitution reactions aromatic

Substitution reactions electrophile

Substitution reactions electrophilic aromatic

Substitution reactions, transition

Transition aromatic

Transition model

Transition state aromaticity

Transition state modeling

Transition state modelling

Transition state models

Transition states reactions

Transition states substitution

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