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Transmetalation zinc enolate addition

The addition of carbonyl compounds towards lithiated 1-siloxy-substituted allenes does not proceed in the manner described above for alkoxyallenes. Tius and co-work-ers found that treatment of 1-siloxy-substituted allene 67 with tert-butyllithium and subsequent addition of aldehydes or ketones led to the formation of ,/i-unsaturated acyl silanes 70 (Scheme 8.19) [66]. This simple and convenient method starts with the usual lithiation of allene 67 at C-l but is followed by a migration of the silyl group from oxygen to C-l, thus forming the lithium enolate 69, which finally adds to the carbonyl species. Transmetalation of the lithiated intermediate 69 to the corresponding zinc enolate provided better access to acylsilanes derived from enolizable aldehydes. For reactions of 69 with ketones, transmetalation to a magnesium species seems to afford optimal results. [Pg.436]

Three approaches to zinc enolates are commonly adopted the process associated to the classical Reformatsky reaction is based on the insertion of Zn(0) into the carbon—halogen bond of an a-haloester. Two additional routes involve (i) transmetallation of a lithium enolate with a Zn(II) salt (Section V.A) and (ii) the transition-metal-catalysed conjugate addition of diethylzinc to Michael acceptors (Section V.B). [Pg.798]

Using l-(2-nitrovinyl)pyrrolidines 108 or 111 as Michael acceptors, the addition of the Reformatsky reagent is followed by amine elimination. A formal vinylic substitution ensues, which can take advantage of the presence of stereocenters in the pyrrolidine moiety, affording new chiral nitroolefins 110151 and 113152, as reported in equations 64 and 65, respectively. In both cases, zinc enolates 109 and 112 are prepared by lithia-tion/transmetallation of the parent ester. [Pg.831]

Transmetallation of 12 with a catalytic amount of the higher order cyanocuprate Me2Cu(CN)Li2, in the presence of Me3ZnLi and with slow addition of enone 7 led first to the initial conjugate addition product 14, then to zinc enolate 15 after Cu-to-Zn transmetallation. The third component, the electrophile, either an aide-... [Pg.346]

Amide 9 is enolizable and carries an oxazolidinone auxiliary. Addition of ZnCb leads to transmetallation and formation of a zinc enolate. [Pg.121]

Thus, we set out to determine whether we could directly observe and identify the unreactive species, and this is when we turned to in situ IR for insights. It seemed reasonable that a hthium-to-zinc transmetallation was a likely cause of the observed attenuated reactivity. It is well established that zinc enolates are much less reactive than the corresponding lithium enolates. The addition of... [Pg.319]

Heterocycles. A route to 2,3-disubstituted furans takes advantage of the Cu-Zn-transmetallation (with ZnCl2) from enolates derived from conjugate organocuprate addition to enones, and aldol reaction of zinc enolates to an alkoxyacetaldehyde. ... [Pg.493]

The transmetallation of alkali enolates 164 (M = Li, Na, K) with metal salts (M Y L, ) is a general method for the preparation of a large variety of enolates 165, provided that is less electropositive than M. It is particularly suitable for such enolates 165 whose reactivity and/or selectivity is tuned by additional ligands L. Thus, a variety of magnesium, boron, aluminum, siUcon, tin, titanium, zirconium, and zinc enolates become readily available (Scheme 2.48) [2c,d]. Usually, the configuration of the enolates is maintained during the transmetallation, but cis-tmns isomerization in the transmetallated enolates occur occasionally. Individual examples will be discussed with their applications in asymmetric syntheses. [Pg.65]

Zinc bisenolate 136 (Figure 11) is prepared by the transmetallation of propiophenone lithium enolate with 0.5 equivalents of ZnBr2 136 reacts with aldehydes, both aliphatic and aromatic, in a domino aldol reaction which mimics the action of aldolases167. The first aldol reaction between 136 and the aldehyde produces zinc aldolate 137, which then undergoes a second intramolecular aldol addition to adduct 138. Spontaneous hemiacetalization affords 139, where all large substituents occupy equatorial positions168. [Pg.837]


See other pages where Transmetalation zinc enolate addition is mentioned: [Pg.865]    [Pg.959]    [Pg.964]    [Pg.346]    [Pg.532]    [Pg.361]    [Pg.302]    [Pg.374]    [Pg.468]    [Pg.613]    [Pg.240]    [Pg.914]    [Pg.163]    [Pg.204]    [Pg.443]   
See also in sourсe #XX -- [ Pg.961 , Pg.964 , Pg.965 ]




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