Big Chemical Encyclopedia

Chemical substances, components, reactions, process design ...

Articles Figures Tables About

Ketenes reaction with allyl carboxylates

Rearrangement of allyl trimethylsilyl ketene acetal, prepared by reaction of allylic ester enolates with trimethylsilyl chloride, to yield Y,5-unsaturated carboxylic a-cids. The Ireland-Claisen rearrangement seems to be advantageous to the other variants of the Claisen rearrangement in terms of E/Z geometry control and mild conditions. [Pg.137]

Although simple ketones and esters can not be allylated by Pd catalysts, they are allylated with allyl carbonates via their enol ethers of Si and Sn. In the allylation of the silyl enol ether 202 with allyl carbonate 200, transmetallation of 202 with the n-allylpalladium methoxide 201, generated from allyl methyl carbonate (200), takes place to generate the Pd enolates 203 and 204. Depending on the reaction conditions, allyl ketone 205 is formed by the reductive elimination of 203 [100]. When the ratio of Pd Ph3P is small, the a,/i-unsaturated ketone 206 is obtained by -elimination [101]. For example, the silyl enol ether 208 of aldehyde 207 is allylated with allyl carbonate (200) to give a-allylaldehyde 210 via 209. The a-allyl carboxylate 213 is obtained by allylation of ester 211 with allyl carbonate (200), after conversion of ester 211 to the ketene silyl acetal 212 [102], As the silyl group is trapped in these... [Pg.130]

Allene carboxylic acids have been cyclized to butenolides with copper(II) chloride. Allene esters were converted to butenolides by treatment with acetic acid and LiBr. Cyclic carbonates can be prepared from allene alcohols using carbon dioxide and a palladium catalyst, and the reaction was accompanied by ary-lation when iodobenzene was added. Diene carboxylic acids have been cyclized using acetic acid and a palladium catalyst to form lactones that have an allylic acetate elsewhere in the molecule. With ketenes, carboxylic acids give anhydrides and acetic anhydride is prepared industrially in this manner [CH2=C=0 + MeC02H (MeC=0)20]. [Pg.1042]

The Johnson ortho-ester variant of the Claisen rearrangement provides access to y,5-unsaturated esters.The reaction entails heating the allylic alcohol with an ort/io-ester in the presence of a carboxylic acid to form a ketene acetal, which then rearranges to the trans-unsatmated ester.An elevated reaction temperature is necessary for the in situ formation of the ketene acetal but not for the rearrangement. [Pg.392]

With a cyclic substrate, for example in which three or more atoms of the allyl vinyl ether are constrained in aring, then the boat-shaped transition state maybe favoured. Formation of the silyl ketene acetal from the lactone 295 and rearrangement on warming gave the carboxylic acid 296 (3.190). The reaction occurs via a boatshaped transition state and was used in a synthesis of the sesquiterpene widdrol. [Pg.249]

In the Ireland-Claisen rearrangement (equation 11.17), an allylic ester is converted to an enolate that reacts with trimethylsilyl chloride to produce an allyl trimethylsilyl ketene acetal, which then imdergoes rearrangement. Depending on the reaction conditions, the product may be a y,S-unsaturated carboxylic acid or ester. ... [Pg.730]

The protocols for the utilization of ketone-derived silyl enol ethers in Tsuji-Trost reactions were preceded by a report of Morimoto and coworkers on the enantioselective allylation of sUyl ketene acetals 88. Without external activation, they reacted with the allylic substrate 19d in the presence of the palladium complex derived from the amidine ligand 89 to give y,5-unsaturated esters 90 in moderate chemical yield but high enantiomeric excess (Scheme 5.29) [46]. Presumably, the pivalate anion hberated during the oxidative addition functions as an activator of the silyl ketene acetal. The protocol is remarkable in view of the fact that asymmetric allylic alkylations of carboxylic esters are rare. Interestingly, the asymmetric induction originates from a ligand with an uncomplicated structure. The protocol seems however rather restricted with respect to the substitution pattern of allylic component and sUyl ketene acetal. [Pg.284]


See other pages where Ketenes reaction with allyl carboxylates is mentioned: [Pg.353]    [Pg.324]    [Pg.252]    [Pg.130]    [Pg.7]    [Pg.190]    [Pg.464]    [Pg.32]    [Pg.639]    [Pg.474]    [Pg.2063]    [Pg.90]    [Pg.906]    [Pg.202]    [Pg.2062]    [Pg.32]    [Pg.245]    [Pg.119]    [Pg.503]   


SEARCH



Allyl carboxylates

Allylic carboxylation

Carboxylates reaction with

Carboxylates, allylation

Carboxylation reaction with

Carboxylic reactions with

Ketene reaction

Ketenes reactions

Reaction with ketene

Reaction with ketenes

© 2024 chempedia.info