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Corey-Winter olefin synthesis

The Corey-Winter olefin synthesis is based on the stereospecific loss of carbon dioxide or carbon disulfide from the carbenes formed by treatment with bivalent organophosphorus compounds of thionocarbonates or trithiocarbonates [218-220]. [Pg.35]

Corey-Winter olefin synthesis. The Corey-Winter olefin synthesis (1, 1233-1234) involves treatment of a thionocarbonale with trimethyl phosphite ... [Pg.269]

Corey-Winter olefin synthesis (I. I23.3-I234). Chong and Wiseman were able to demonstrate the transient existence of bicyclo[3.2.l]octenc-l (2, a bridgehead alkene which violates Bredt s rule) by application of the Corey-Winter olefin synthesis. Thus treatment of the thionocarbonatc (I) with triethyl phosphite at reflux (165°) fur 24 hr. in the presence of I,3-diphenyli obenzofurane (1, 342-343 2, 178-179) leads to the formation of two Diels-Alder adducts (3) and (4) derived from (2). [Pg.541]

Corey-Winter olefin synthesis. Synthesis of olefins from 1,2-diols and thiocarbonyldiimidazole. Treatment of the intermediate cychc thionocarbo-nate with trimethylphosphite yields the olefin by els elimination. [Pg.337]

The Corey-Winter olefin synthesis is a two-step transformation of a diol 1 to an olefin 3.1"3 A cyclic thionocarbonate 2 is prepared from the diol 1, and subsequent heating of 2 with phosphite affords olefin 3. [Pg.354]

However, evidence opposing the intermediacy of a carbene species in the Corey-Winter olefin synthesis also exists.3 Thermal decomposition of hydrazone salt 14, which is proposed to proceed via carbene 12, leads to a mixture of products 13, 15, and 16.7 Thus, an alternative mechanism has been proposed for the Corey-Winter reaction that invokes a phosphorus ylide. In this mechanistic scenario, initial reaction of thionocarbonate 10 with trimethylphosphite affords zwitterion 11. Cyclization generates... [Pg.355]

The Corey-Winter olefin synthesis has been performed on p-lactam derivatives.18 This olefination was employed in cases where traditional Wittig-type olefination of the corresponding aldehyde led to disappointing results. In one example, treatment of 40 with carbonyldiimidazole and exposure of the resulting thionocarbonate to P(OMe)3 afforded olefin 41 in 81% yield. [Pg.359]

Corey-Winter olefin synthesis (1, 1233-1234 2,439-441 3,315-316 4, 269-270, 541-542 5,34, 661). Vedejs and Wu converted thionocarbonates into olefins by alkylation with methyl iodide (90°, DME, sealed tube) followed by reduction (zinc dust—ethanol or magnesium amalgam—THF). This two-step procedure was used for preparation of the cyclobutene (2) in this case the reaction with triethyl phosphite was immeasurably slow. [Pg.384]

COREY-WINTER OLEFIN SYNTHESIS Methyl iodide. N,N -Thiocarbonyldiimidazole. [Pg.778]


See other pages where Corey-Winter olefin synthesis is mentioned: [Pg.168]    [Pg.86]    [Pg.333]    [Pg.354]    [Pg.766]    [Pg.197]   
See also in sourсe #XX -- [ Pg.168 ]

See also in sourсe #XX -- [ Pg.269 , Pg.542 ]

See also in sourсe #XX -- [ Pg.156 ]

See also in sourсe #XX -- [ Pg.182 ]

See also in sourсe #XX -- [ Pg.93 ]

See also in sourсe #XX -- [ Pg.82 ]

See also in sourсe #XX -- [ Pg.156 ]




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Corey

Corey-Winter olefin synthesis mechanism

Corey-Winter synthesis

Olefin synthesis

Olefination Corey-Winter olefin synthesis

Olefinations, synthesis

Phosphite Corey-Winter olefin synthesis

Thionocarbonates, Corey-Winter olefin synthesis

Winter Olefination

Winterization

Winterizing

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