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Rearrangements, Claisen with aryl vinyl ethers

Two other important slgmatropic reactions are the Cope rearrangement of a 1,5-hexadiene and the Claisen rearrangement of an allyl aryl ether (Section 18.6). These two, along with the Diels-Alder reaction, are the most useful pericyclic reactions for organic sjmthesis many thousands of examples of all three are known. Note that the Claisen rearrangement works well with both allyl aryl ethers and with allyl vinylic ethers. [Pg.1251]

Bromination of the enol ether product with two equivalents of bromine followed by dehydrobromination afforded the Z-bromoenol ether (Eq. 79) which could be converted to the zinc reagent and cross-coupled with aryl halides [242]. Dehydrobromination in the presence of thiophenol followed by bromination/dehydrobromination affords an enol thioether [243]. Oxidation to the sulfone, followed by exposure to triethylamine in ether, resulted in dehydrobromination to the unstable alkynyl sulfone which could be trapped with dienes in situ. Alternatively, dehydrobromination of the sulfide in the presence of allylic alcohols results in the formation of allyl vinyl ethers which undergo Claisen rearrangements [244]. Further oxidation followed by sulfoxide elimination results in highly unsaturated trifluoromethyl ketonic products (Eq. 80). [Pg.162]

The experimental KIEs were determined for the aliphatic Claisen rearrangement in p-cymene at 120°C and for the aromatic Claisen rearrangement either neat at 170°C or in diphenyl ether at 220°C. Changes in 2H, 13C or 170 composition were determined for unreacted substrates. For carbon analysis of allyl vinyl ether the C5 carbon was used as an internal standard. The C4 atom and rneta aryl protons were used as references in analysis of allyl phenyl ether. The 170 analysis was based on a new methodology. The results are summarized in Table 1, along with predicted isotope effects calculated for experimental temperatures by means of different computational methods. The absolute values of predicted isotope effects for C4 and C5 atoms varied with theoretical level and all isotope effects were rescaled to get reference effects equal to 1.000. [Pg.160]

Kirsch has reported the conversion of propargyl vinyl ethers to form pyrroles via a multi-step transformation involving the silver-catalyzed propargyl Claisen rearrangement to form the a-allenyl P-keto ester, condensation with a primary aryl amine. [Pg.443]


See other pages where Rearrangements, Claisen with aryl vinyl ethers is mentioned: [Pg.551]    [Pg.11]    [Pg.339]    [Pg.357]    [Pg.533]    [Pg.683]    [Pg.205]    [Pg.720]    [Pg.274]   
See also in sourсe #XX -- [ Pg.1022 ]




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Aryl ethers

Aryl rearrangements

Aryl vinyl

Aryl vinylation

Ethers Claisen rearrangement

Ethers aryl vinyl

Ethers rearrangements

Rearrangements with

Vinyl ethers rearrangement

Vinyl rearrangement

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