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Azine substitution , activation

We present below an interpretation of azine substitutions based on the principle that reactivity is greatest para to the activating nitrogen (26-29) unless specific orfAo-directing effects intervene. This principle applies also to the greater... [Pg.172]

In addition, silver-catalyzed asymmetric aza-Diels-Alder reactions provide a useful route to optically active nitrogen-heterocyclic compounds such as piperidines or pyrid-azines. Substituted dihydrobenzofurans can also be enantioselectively prepared through silver-promoted allylation of aldehydes. Other types of silver-mediated cyclizations can also be used in the synthesis of tetrahydrofnrans, tetrahydropyrans, 1,2-dioxetanes, 1,2-dioxolanes, medium-sized lactones, dihydroisoqninolines, and so on. Silver salts can also be used as cocatalysts with other transition metals. Unique activity was observed for these silver-based systems in several cases. Conseqnently, the use of silver can enrich several available heterocyclization methods, and fnrther developments in the application of chiral silver complexes will hopefnlly appear in the near future. [Pg.317]

A large number of nucleophilic substitution reactions involving interconversions of pyridopyrimidines have been reported, the majority of which involve substituents in the pyrimidine ring. This subject has been reviewed previously in an earlier volume in this series which dealt with the theoretical aspects of nucleophilic re-activiti in azines, and so only a summary of the nucelophilic displacements of the substituent groups will be given here. In general, nucleophilic substitutions occur most readily at the 4-position of pyrido-... [Pg.189]

It is quite reasonable to expect the bimolecular two-stage mechanism Sj Ar ) to predominate in most aromatic nucleophilic substitutions of activated substrates. However, only in rare instances is there adequate evidence to rule out the simultaneous occurrence or predominance of other mechanisms. The true significance of the alternative mechanisms in azines needs to be determined by trapping the intermediates or by applying modem separation and characterization methods to the identification of at least the major portion of the products, especially in kinetic studies. [Pg.152]

B. Activation by Azine-Nitrogen and Other Factors in THE Nucleophilic Substitution op Azines... [Pg.172]

One significant difference between nitrocarboaromatics and aromatic azines is the tendency of the activating center of the latter to react with electrophiles or compounds capable of hydrogen bonding, thereby accelerating nucleophilic substitution. [Pg.183]


See other pages where Azine substitution , activation is mentioned: [Pg.320]    [Pg.320]    [Pg.147]    [Pg.320]    [Pg.329]    [Pg.169]    [Pg.684]    [Pg.689]    [Pg.148]    [Pg.151]    [Pg.163]    [Pg.171]    [Pg.173]    [Pg.181]    [Pg.186]    [Pg.187]    [Pg.195]    [Pg.196]    [Pg.202]    [Pg.215]    [Pg.216]    [Pg.217]    [Pg.219]    [Pg.221]    [Pg.222]    [Pg.230]    [Pg.242]    [Pg.257]   


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Activation Substitution

Azine substitution , activation acyl groups, electronic effects

Azine substitution , activation acyloxy groups, electronic effects

Azine substitution , activation acylthio group, electronic effects

Azine substitution , activation alkyl leaving groups

Azine substitution , activation alkylsulfonyl leaving groups

Azine substitution , activation alkylthio group, electronic effects

Azine substitution , activation alkylthio leaving groups

Azine substitution , activation amino leaving groups

Azine substitution , activation ammonio groups, displacement

Azine substitution , activation aryl groups, electronic effects

Azine substitution , activation aryloxy groups, electronic effects

Azine substitution , activation by anionic nucleophiles

Nucleophilic substitution of azines, activation by azine-nitrogen

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