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Nucleophilic aromatic substitution bimolecular displacement

We take up the aryl halides in a separate chapter because they differ so much from the alkyl halides in their preparation and properties. Aryl halides as a class are comparatively unreactive toward the nucleophilic substitution reactions so characteristic of the alkyl halides. The presence of certain other groups on the aromatic ring, however, greatly increases the reactivity of aryl halides in the absence of such groups, reaction can still be brought about by very basic reagents or high temperatures. We shall find that nucleophilic aromatic substitution can follow two very different paths the bimolecular displacement mechanism for activated aryl halides and the elimination-addition mechanismy which involves the remarkable intermediate called benzyne. [Pg.817]

Bimolecular displacement mechanism for nucleophilic aromatic substitution... [Pg.829]

The bimolecular displacement mechanism for nucleophilic aromatic substitution (shown here for chlorobenzene) is ... [Pg.829]


See other pages where Nucleophilic aromatic substitution bimolecular displacement is mentioned: [Pg.826]    [Pg.826]    [Pg.826]    [Pg.826]   
See also in sourсe #XX -- [ Pg.826 , Pg.827 , Pg.828 , Pg.829 , Pg.830 , Pg.831 , Pg.832 , Pg.833 , Pg.834 ]

See also in sourсe #XX -- [ Pg.826 , Pg.827 , Pg.828 , Pg.829 , Pg.830 , Pg.831 , Pg.832 , Pg.833 , Pg.834 ]




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Aromatic substitution nucleophilic

Bimolecular displacement

Bimolecular displacement mechanism for nucleophilic aromatic substitution

Bimolecular nucleophilic

Bimolecular nucleophilic displacement

Bimolecular nucleophilic substitution

Nucleophile aromatic substitution

Nucleophiles bimolecular substitution

Nucleophilic aromatic

Nucleophilic aromatic displacement

Nucleophilic aromatic substitution nucleophiles

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