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Halides reaction with organometallics

Acyl halides react with organometallic reagents without catalysts, but sometimes the Pd-catalyzed reactions give higher yields and selectivity than the Lincatalyzed reactions. Acyl halides react with Pd(0) to form the acylpalladium complexes 846, which undergo facile transmetallation. [Pg.253]

Nitriles are similar in some respects to carboxylic acids and are prepared either by SN2 reaction of an alkyl halide with cyanide ion or by dehydration of an amide. Nitriles undergo nucleophilic addition to the polar C=N bond in the same way that carbonyl compounds do. The most important reactions of nitriles are their hydrolysis to carboxylic acids, reduction to primary amines, and reaction with organometallic reagents to yield ketones. [Pg.774]

Furthermore reactions with difluorophosphoric anhydride are of some importance (55). The easy cleavage of the P—0—P-bridge in reactions with organometallic oxides (17) and halides (18) leads to derivatives of difluorophosphoric acid in a very mild way ... [Pg.59]

Fig. 3 Catalytic manifolds in iron-catalyzed cross-coupling reactions of alkyl halides 1 with organometallic species 2... Fig. 3 Catalytic manifolds in iron-catalyzed cross-coupling reactions of alkyl halides 1 with organometallic species 2...
The Stille coupling reaction is the most versatile method among all Pd-catalyzed crosscoupling reactions with organometallic reagents. By lithiation of 4-methyloxazole with H-BuLi and subsequent quenching with trimethyltin chloride, Dondoni et al. prepared 2-trimethylstannyl-4-methyloxazole [39], which was then coupled with aryl- and heteroaryl-halides to provide the expected 2-aryloxazole. Thus, 2-trimethylstannyl-4-methyloxazole was coupled with 3-bromo-pyridine to afford oxazolylpyridine 35. [Pg.390]

In Grignard reactions, Mg(0) metal reacts with organic halides of. sp carbons (alkyl halides) more easily than halides of sp carbons (aryl and alkenyl halides). On the other hand. Pd(0) complexes react more easily with halides of carbons. In other words, alkenyl and aryl halides undergo facile oxidative additions to Pd(0) to form complexes 1 which have a Pd—C tr-bond as an initial step. Then mainly two transformations of these intermediate complexes are possible insertion and transmetallation. Unsaturated compounds such as alkenes. conjugated dienes, alkynes, and CO insert into the Pd—C bond. The final step of the reactions is reductive elimination or elimination of /J-hydro-gen. At the same time, the Pd(0) catalytic species is regenerated to start a new catalytic cycle. The transmetallation takes place with organometallic compounds of Li, Mg, Zn, B, Al, Sn, Si, Hg, etc., and the reaction terminates by reductive elimination. [Pg.125]

Perfluoroalkyl or -aryl halides undergo oxidative addition with metal vapors to form nonsolvated fluonnated organometallic halides and this topic has been die subject of a review [289] Pentafluorophenyl halides react with Rieke nickel, cobalt, and iron to give bispentafluorophenylmetal compounds, which can be isolated in good yields as liquid complexes [290] Rieke nickel can also be used to promote the reaction of pentafluorophenyl halides with acid halides [297] (equation 193)... [Pg.718]

Reaction with halides or alkoxides of elements less electropositive than A1 affords a useful route to other organometallics ... [Pg.260]

Mechanistically the reaction can be divided into two steps. Initially the alkyl halide 1 reacts with sodium to give an organometallic species 3, that can be isolated in many cases. In a second step the carbanionic R of the organometallic compound 3 acts as nucleophile in a substitution reaction with alkyl halide 1 to replace the halide ... [Pg.304]

Coupling Reactions of Aryl-Alkenyl Halides with Organometallic Reagents and Related Nucleophiles50... [Pg.483]

The general mechanism of coupling reactions of aryl-alkenyl halides with organometallic reagents and nucleophiles is shown in Fig. 9.4. It contains (a) oxidative addition of aryl-alkenyl halides to zero-valent transition metal catalysts such as Pd(0), (b) transmetallation of organometallic reagents to transition metal complexes, and (c) reductive elimination of coupled product with the regeneration of the zero-valent transition metal catalyst. [Pg.483]

The synthesis of compounds containing boron-group IIB bonds also occurs by two pathways. The most convenient method is using anionic borane or carboranc species, as in the group-IB case, to react with Zn, Cd, or Hg halides. Moreover, reactions between organometallic compounds (Zn, Cd) with unchanged boranes arc also realized, so Zn and Cd decaboranes, e.g., MB H 2 n solvent (M = Zn, Cd), result from reactions of decaborane(14) with MRj . [Pg.50]


See other pages where Halides reaction with organometallics is mentioned: [Pg.577]    [Pg.142]    [Pg.43]    [Pg.326]    [Pg.401]    [Pg.928]    [Pg.119]    [Pg.168]    [Pg.196]    [Pg.209]    [Pg.154]    [Pg.86]    [Pg.71]    [Pg.64]    [Pg.483]    [Pg.109]    [Pg.538]    [Pg.567]    [Pg.807]    [Pg.1025]    [Pg.2091]   
See also in sourсe #XX -- [ Pg.496 ]




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Acid halides reactions with organometallic

Alkenyl halides coupling reactions with sp3 organometallics

Halides coupling reaction with sp3 organometallics

Halides organometallic

Halides with organometallics

Metal halides, reaction with organometallic

Organometallic compounds reaction with 1 -alkynyl halides

Organometallic compounds reaction with alkyl halides

Reaction with organometallics

Reactions of organometallic compounds with metal halides

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