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Acyl fluorides silanes

As indicated in Chapter 2, the single fluorine substituent has an extremely broad range of observed chemical shifts, which include sul-fonyl fluorides and acyl fluorides absorbing downfield in the region of +40 and +25 ppm, respectively, all the way up to fluoromethyltrimethyl-silane, with its signal far upheld at -277 ppm. [Pg.56]

Fluoride ion-catalysed addition of trifluoromethyltrimethylsilane to acyl silanes occurs to give l,l-difluoro-2-trimethylsilyloxyalkenes (silyl enol ethers of difluoromethyl ketones), through nucleophilic addition of trifluoromethyl anion, Brook rearrangement and loss of fluoride. These compounds could be isolated when tetrabutylammonium difluorotriphenylstannate was used as a catalyst use of tetrabutylammonium fluoride gave the product corresponding to subsequent aldol reaction with the difluoromethyl ketone (Scheme 78)m. [Pg.1641]

Several aromatic and heterocyclic acyl trimethylsilanes have been used as acyl anion equivalents by treatment with fluoride ion (Scheme 81, path a)23 133 154b160191192. Provided that the acyl substituent is electron-withdrawing, and that there are no aryl substituents on the silicon atom, acyl anions can be trapped by various electrophiles in moderate to good yields indeed, acyl anions and pentacoordinate silicon anionic species have both been detected in gas-phase reactions of acyl silanes with fluoride ion193. [Pg.1642]

Silyl enol ethers of acyl silanes have been used in Lewis acid-mediated Mukaiyama reactions with acetals. Treatment of the resulting /1-alkoxy acyl silanes with tetrabutylammonium hydroxide or tetrabutylammonium fluoride gave the corresponding a,/J-unsaturated aldehydes (Scheme 99)210. [Pg.1649]

An alternative rearrangement pathway may be observed when the silicon atom bears aryl substituents or when simple aUcanoyl triaUcylsilanes are used. This pathway is similar to one suggested, but not observed, by Brook for reaction of acyl silanes with aikoxide Addition of fluoride ion to silicon induces a migration to the carbonyl car-... [Pg.1642]

The anions, generated in situ by desilylation of silylacetylenes, allylsilanes, propargylsilanes, a-silyloxetanones, bis(trimethylsilylmethyl) sulfides, and other silane derivatives,can undergo nucleophilic addition to ketones and aldehydes (eq 11). Al-(C,C-bis(trimethylsilyl)methyl) amido derivatives can add to aldehydes followed by Peterson alkenation to form acyl enamines. Treatment of 2-trimethylsilyl-l,3-dithianes can generate dithianyl anions, which are capable of carbocyclization via direct addition to carbonyl or Michael addition (eq 12). The fluoride-catalyzed Michael additions are more general than Lewis acid-catalyzed reactions and proceed well even for those compounds with enolizable protons and/or severe steric hindrance (eq 13). ... [Pg.359]


See other pages where Acyl fluorides silanes is mentioned: [Pg.1634]    [Pg.1642]    [Pg.1652]    [Pg.70]    [Pg.412]    [Pg.412]    [Pg.412]    [Pg.689]    [Pg.1073]    [Pg.459]    [Pg.1634]    [Pg.1652]    [Pg.65]    [Pg.469]   
See also in sourсe #XX -- [ Pg.216 ]




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