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Racemic allenyl alcohol

The addition of an allyl alcohol to racemic allenyl sulfoxides results in vinyl ethers with the sulfinyl moiety at C-1 that undergo sigmatropic rearrangements upon distillation to produce 2,4-dienones after ehmination of sulfenic acid. In one example, an isomeric vinyl ether was obtained with a sulfinyl methyl substituent at C-2 that gave rise to a sulfinyl enone upon rearrangement [138]. In related work, the addition-elimination of an allyl alkoxide to a functionalized vinyl sulfoxide results in a sulfinyl enol ether that rearranges with loss of sulfenic acid to the unsaturated ester [139-141] (Scheme 21). [Pg.121]

The ophcally active Pd complex with a chiral allenyl ligand undergoes epimer-izahon in the presence of a catalytic amount of Pd(0) complex. This reaction does not involve the isomerization to the propargyl complex, but takes place via a dinuclear intermediate as depicted in Scheme 5.39. The -allenyl ligand in the dinuclear palladium intermediate may racemize via a vinyl-vinyidene intermediate. This type of reaction is prohahly involved in a kinetic resolution of racemic propargyl alcohols promoted hy chiral transihon metal complex [203]. The intermolecular allyl ligand transfer from Pd to Ee complexes occurs under... [Pg.275]

For example, allenyl alcohols are extensively used for heteroaimulation. The alkenyloxirane 382 was obtained with high ee and in high yield by the cyclization of the chiral 1-substituted 2,3-butadien-l-ol 381. The reaction is highly diastere-oselective and the tran -alkenyloxirane was obtained with no racemization and without forming a dihydrofuran [149]. [Pg.161]

Allenyl iodides can be prepared from propargylic mesylates by Sn2 displacement with LiCuI2 (Eq. 9.143) [118]. The reaction proceeds primarily by an anti pathway with slight racemization. Metallation of these iodides with powdered indium in various donating solvents leads to transient allenylindium intermediates which react in situ with aldehydes to afford anti homopropargylic alcohols (Table 9.52). Additions... [Pg.576]

An enantioenriched propargylic phosphate was converted to a racemic allene under the foregoing reaction conditions (Eq. 9.152) [124]. It is proposed that the racemization pathway involves equilibration of the allenyl enantiomers via a propargylic intermediate (Scheme 9.37). Both the allenylpalladium precursor and the allenylsamarium reagent could racemize by this pathway. When a chiral alcohol was used as the proton source, the reaction gave rise to enantiomerically enriched allenes (Table 9.61) A samarium alcohol complex is thought to direct the protonolysis (Scheme 9.38). [Pg.585]


See other pages where Racemic allenyl alcohol is mentioned: [Pg.481]    [Pg.179]    [Pg.481]    [Pg.179]    [Pg.121]    [Pg.121]    [Pg.121]    [Pg.121]    [Pg.550]    [Pg.525]    [Pg.668]    [Pg.402]    [Pg.432]    [Pg.502]    [Pg.208]    [Pg.172]    [Pg.53]   
See also in sourсe #XX -- [ Pg.481 ]




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Racemization alcohols

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