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Cyclooctanone enol ester from

The same year, Gerlach described a synthesis of optically active 1 from (/ )- ,3-butanediol (7) (Scheme 1.2). The diastereomeric esters produced from (-) camphorsulfonyl chloride and racemic 1,3-butanediol were fractionally recrystallized and then hydrolized to afford enantiomerically pure 7. Tosylation of the primary alcohol, displacement with sodium iodide, and conversion to the phosphonium salt 8 proceeded in 58% yield. Methyl-8-oxo-octanoate (10), the ozonolysis product of the enol ether of cyclooctanone (9), was subjected to Wittig condensation with the dilithio anion of 8 to give 11 as a mixture of olefin isomers in 32% yield. The ratio, initially 68 32 (E-.Z), was easily enriched further to 83 17 (E Z) by photolysis in the presence of diphenyl disulfide. The synthesis was then completed by hydrolysis of the ester to the seco acid, conversion to the 2-thiopyridyl ester, and silver-mediated ring closure to afford 1 (70%). Gerlach s synthesis, while producing the optically active natural product, still did not address the problem posed by the olefin geometry. [Pg.4]

In the estradiol prodrug estradiol 3-benzoate 17-P-cyclooctenyl ether (EBCO), the phenolic hydroxyl group is masked as a benzoyl ester and the alcoholic 17-p-hydroxyl, as an enol ether derived from cyclooctanone (Fig. 33.17). Given orally to rats as a suspension in sesame oil, this derivative was active for 1 to 2 weeks because it was stored in body fat. [Pg.571]


See other pages where Cyclooctanone enol ester from is mentioned: [Pg.731]    [Pg.187]    [Pg.731]   


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Cyclooctanone

Cyclooctanones

Enol esters

Enolate from esters

Enolates enol esters

Ester enolate

Esters enolates

Esters enolization

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