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Evans asymmetric aldol reactions

A key step in the synthesis of the spiroketal subunit is the convergent union of intermediates 8 and 9 through an Evans asymmetric aldol reaction (see Scheme 2). Coupling of aldehyde 9 with the boron enolate derived from imide 8 through an asymmetric aldol condensation is followed by transamination with an excess of aluminum amide reagent to afford intermediate 38 in an overall yield of 85 % (see Scheme 7). During the course of the asymmetric aldol condensation... [Pg.496]

We now tum our attention to the C21-C28 fragment 158. Our retrosynthetic analysis of 158 (see Scheme 42) identifies an expedient synthetic pathway that features the union of two chiral pool derived building blocks (161+162) through an Evans asymmetric aldol reaction. Aldehyde 162, the projected electrophile for the aldol reaction, can be crafted in enantiomerically pure form from commercially available 1,3,4,6-di-O-benzylidene-D-mannitol (183) (see Scheme 45). As anticipated, the two free hydroxyls in the latter substance are methylated smoothly upon exposure to several equivalents each of sodium hydride and methyl iodide. Tetraol 184 can then be revealed after hydrogenolysis of both benzylidene acetals. With four free hydroxyl groups, compound 184 could conceivably present differentiation problems nevertheless, it is possible to selectively protect the two primary hydroxyl groups in 184 in... [Pg.611]

The approach for the enantioselective aldol reaction based on oxazolidinones like 22 and 23 is called Evans asymmetric aldol reaction.14 Conversion of an oxazolidinone amide into the corresponding lithium or boron enolates yields the Z-stereoisomers exclusively. Reaction of the Z-enolate 24 and the carbonyl compound 6 proceeds via the cyclic transition state 25, in which the oxazolidinone carbonyl oxygen and both ring oxygens have an anti conformation because of dipole interactions. The back of the enolate is shielded by the benzyl group thus the aldehyde forms the six-membered transition state 25 by approaching from the front with the larger carbonyl substituent in pseudoequatorial position. The... [Pg.161]

T. Nakata et al. developed a simple and efficient synthetic approach to prepare (+)-methyl-7-benzoylpederate, a key intermediate toward the synthesis of mycalamides. The key steps were the Evans asymmetric aldol reaction, stereoselective Claisen condensation and the Takai-Nozaki olefination. The diastereoselective Claisen condensation took place between a 5-lactone and the lithium enolate of a glycolate ester. [Pg.87]

There are also stereochemical considerations here and Holmes used the Evans asymmetric aldol reaction (chapter 27) to make the starting material 174 R=Bn. The formation of any allyl vinyl ether reagent involves no change in the stereochemistry of the allyl alcohol - this is acetal exchange at the vinyl ether or acetal centre. The enol ether was added in masked form as a selenium compound 175 (chapter 32) as selenoxides eliminate at room temperature. The stereochemistry is developed directly from that in 177 as it transforms during the [3,3] shift. [Pg.355]

For their second approach [84], Gurjar et al. have explored an Evans asymmetric aldol reaction, and a regiospecific ring opening of epoxides. They started their synthesis from (2S,3i )-epoxy-alcohol 121, which was prepared from propargyl alcohol 120 in six high yielding steps... [Pg.35]

Since its discovery in 1974, more than 180 papers have been published on the use of the Overmann rearrangement to prepare allylic amines and their analogs from their allylic alcohols. For example, a recent synthesis of the fluoroalkene peptidomimetic precursor of A -acetyl-Z,-glutamyI-Z.-alanine involves the Overman rearrangement of the imidate derived from the allylic alcohol 60. ° This alcohol is readily prepared through Evans asymmetric aldol reaction of oxozolidinone with an aldehyde. [Pg.220]


See other pages where Evans asymmetric aldol reactions is mentioned: [Pg.499]    [Pg.613]    [Pg.620]    [Pg.620]    [Pg.60]    [Pg.363]    [Pg.303]    [Pg.317]    [Pg.66]    [Pg.36]    [Pg.184]    [Pg.212]    [Pg.1021]    [Pg.151]    [Pg.158]    [Pg.533]    [Pg.217]   
See also in sourсe #XX -- [ Pg.87 ]




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28 Evans aldol

Aldols Evans aldol reaction

Asymmetric aldol reactions

Asymmetric reactions Evans aldol reaction

Asymmetric reactions Evans aldol reaction

Evans

Evans aldol reaction

Evans aldolization

Evans asymmetric aldol

Evans asymmetric aldol reactions chiral auxiliaries

Evans asymmetric aldol reactions enolates

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