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18.17 : Directing and Steric Effects in Disubstituted Benzene Derivatives

When disubstituted benzenes undergo electrophilic substitution, the product distribution depends on the directing effect of both substituents. When the directing effects of both substituentsreinforce each other,a single product is obtained. For example, bromination of p-nitrotoluene occurs ortho to the methyl group and meta to the nitro group, which isthe same position, resulting in a single product. However, if the directing effects of the two groups oppose each other, the more strongly activating group directs the substituentposition. For instance, in the nitration of p-methylphenol, the stronger activator—the hydroxyl group—directs the substitution ortho to it. Substituents with similaractivating properties furnish a mixture of products. The steric effect is also instrumental in determining product distribution. For instance, nitration of p-tert-butyltoluene occurs at the less hindered position—ortho to the methyl group. Similarly,substitution does not usuallyoccur between two groups in a meta-disubstituted ring.

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Disubstituted BenzenesElectrophilic SubstitutionDirecting EffectSteric EffectProduct DistributionNitrationBrominationActivating GroupOrthoMetaSubstituentsP nitrotolueneP methylphenolP tert butyltoluene

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18.17 : Directing and Steric Effects in Disubstituted Benzene Derivatives

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18.1 : Spectroscopie RMN des dérivés du benzène

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18.2 : Réactions en position benzylique : oxydation et réduction

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18.3 : Réactions en position benzylique : halogénation

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18.4 : Substitution aromatique électrophile : aperçu

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18.5 : Substitution aromatique électrophile : chloration et bromation du benzène

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18.6 : Substitution aromatique électrophile : fluoration et iodation du benzène

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18.7 : Substitution aromatique électrophile : nitration du benzène

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18.8 : Substitution aromatique électrophile : sulfonation du benzène

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18.9 : Substitution aromatique électrophile : l’alkylation du benzène par Friedel-Crafts

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18.10 : Substitution aromatique électrophile : acylation du benzène par Friedel-Crafts

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18.11 : Limites des réactions de Friedel-Crafts

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18.12 : Effet directeur des substituants : groupes ortho-para-directeurs

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18.13 : Effet directeur des substituants : groupes méta-directeurs

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18.14 : Activateurs ortho-para-directeurs : –CH3, –OH, –&NoBreak ;NH2, –OCH3

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