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Coupling reaction with organocuprates secondary

Inconsistent with both of the above mechanistic proposals is the recent finding that secondary iodides, unlike bromides and sulfonates, undergo nearly complete racemization in coupling reactions with organocuprates. In addition, bicyclic compounds are produced in reactions of 6-iodocyclooctene with... [Pg.213]

This is a very general reaction in that primary, secondary, and tertiary alkyl halides react with primary, secondary, or tertiary organocuprates. The halide can be a chloride, a bromide, or an iodide, but iodides are more reactive than bromides, which are more reactive than chlorides. Another example is the reaction of 49 with lithium diphenylcuprate to give 50. The reaction of alkyl halides and organocuprates is the preferred method for coupling an alkyl halide to an organometallic compound. Many different hydrocarbons can be prepared. [Pg.757]

The most frequently used organocuprates are those m which the alkyl group is pri mary Steric hindrance makes secondary and tertiary dialkylcuprates less reactive and they tend to decompose before they react with the alkyl halide The reaction of cuprate reagents with alkyl halides follows the usual 8 2 order CH3 > primary > secondary > tertiary and I > Br > Cl > F p Toluenesulfonates are somewhat more reactive than halides Because the alkyl halide and dialkylcuprate reagent should both be primary m order to produce satisfactory yields of coupled products the reaction is limited to the formation of RCH2—CH2R and RCH2—CH3 bonds m alkanes... [Pg.603]


See other pages where Coupling reaction with organocuprates secondary is mentioned: [Pg.644]    [Pg.602]    [Pg.213]    [Pg.585]    [Pg.224]    [Pg.230]    [Pg.5350]    [Pg.226]    [Pg.562]    [Pg.5349]    [Pg.562]    [Pg.406]   
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Coupling Reaction with

Coupling reaction with organocuprate

Coupling reaction with organocuprates

Organocuprate

Organocuprates

Organocuprates coupling reactions

Reaction with organocuprates

Secondary reactions

With organocuprates

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