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Ireland-Claisen

A highly successful route to stereoisomers of substituted 3-cyclohexene-l-carboxylates runs via Ireland-Claisen rearrangements of silyl enolates of oj-vinyl lactones. The rearrangement proceeds stereospeaifically through the only possible boat-like transition state, in which the connecting carbon atoms come close enough (S. Danishefsky, 1980 see also section 4.8.3, M. Nakatsuka, 1990). [Pg.87]

An important variant is the rearrangement of silylketene acetals like 10 and 11 which are easily accessible from allyl esters 9. This so-called Ireland-Claisen rearrangement is a valuable carbon-carbon bond forming reaction that takes advantage of the fact that the reactants are first connected to each other by an ester linkage as in allyl esters 9, that are easy prepare. [Pg.60]

By employing optically active enol borinates instead of silylketene acetals, the Ireland-Claisen rearrangement has been further developed to an enantioselective... [Pg.61]

The Ireland-Claisen reaction of ( )-vinylsilanes has been applied to the stereoselective synthesis of syn- and c/nti-2-substituted 3-silyl alkcnoic acids. a R-2-Alkyl-3-silyl acids are prepared by rearrangement of ( )-silyl ketene acetals which are generated in situ from the kinetically formed (Z)-enolate of the corresponding propionate ester40. Chelation directs the stereochemistry of enolization of heteroelement-substituted acetates in such a way that the syn-diastereomers are invariably formed on rearrangement403. [Pg.345]

Ireland-Claisen rearrangement of silyl ketene acetals (31)... [Pg.66]

Iododesilylation, 41 of aryltrimethylsilanes, 42 Iodomethyltrimethylsilane, 27 4-Iodophenylalanine, 42 Ionic hydrogenation, 136 Ireland-Claisen rearrangement, 112-14 ftwtf-2 Isocyanocyclohexanol, 137 Isophorone, 52 Isophorone dienol ether, 135 (Isopropoxydimethylsilyl)methyl magnesium chloride, 58... [Pg.84]

Ireland-Claisen rearrangement of O-allyl-O -trimethylsilyl ketene acetals... [Pg.553]

The stereochemistry of Ireland-Claisen rearrangements of cyclic compounds is sometimes indicative of reaction through a boat TS. For example, the major product from 2-cyclohexenyl propanoate is formed through a boat TS.244... [Pg.569]

Lewis acid catalysis of Ireland-Claisen rearrangements by TiCl4 has been observed.251 This methodology was employed in the synthesis of a novel type of anti-inflammatory drug candidate.252... [Pg.572]

Entries 10 to 15 involve use of the Ireland-Claisen rearrangement in multistep syntheses. An interesting feature of Entry 11 is the presence of an unprotected ketone. The reaction was done by adding LDA to the ester, which was premixed with TMS-C1 and Et3N. The reaction generates the T-silyl ketene acetal, which rearranges through a chair TS. [Pg.576]

The synthesis in Scheme 13.44 is also based on a carbohydrate-derived starting material. It controlled the stereochemistry at C(2) by means of the stereoselectivity of the Ireland-Claisen rearrangement in Step A (see Section 6.4.2.3). The ester enolate was formed under conditions in which the T -enolate is expected to predominate. Heating the resulting silyl enol ether gave a 9 1 preference for the expected stereoisomer. The... [Pg.1203]

Neier and coworkers have used a domino Diels-Alder/Ireland-Claisen process for the synthesis of (rac)-juvabione 4-46 and (rac)-epijuvabione [15]. Since neither the Diels-Alder reaction of the acetal 4-44 and methyl acrylate nor the sigmatropic rearrangement seemed to be stereoselective, these authors obtained the cyclohexene derivative 4-45 as a mixture of three diastereomers (Scheme 4.9). [Pg.286]

The Diels-Alder reaction outlined above is a typical example of the utilization of axially chiral allenes, accessible through 1,6-addition or other methods, to generate selectively new stereogenic centers. This transfer of chirality is also possible via in-termolecular Diels-Alder reactions of vinylallenes [57], aldol reactions of allenyl eno-lates [19f] and Ireland-Claisen rearrangements of silyl allenylketene acetals [58]. Furthermore, it has been utilized recently in the diastereoselective oxidation of titanium allenyl enolates (formed by deprotonation of /3-allenecarboxylates of type 65 and transmetalation with titanocene dichloride) with dimethyl dioxirane (DMDO) [25, 59] and in subsequent acid- or gold-catalyzed cycloisomerization reactions of a-hydroxyallenes into 2,5-dihydrofurans (cf. Chapter 15) [25, 59, 60],... [Pg.67]

Further variations of the Claisen rearrangement protocol were also utilized for the synthesis of allenic amino acid derivatives. Whereas the Ireland-Claisen rearrangement led to unsatisfactory results [133b], a number of variously substituted a-allenic a-amino acids were prepared by Kazmaier [135] by chelate-controlled Claisen rearrangement of ester enolates (Scheme 18.47). For example, deprotonation of the propargylic ester 147 with 2 equiv. of lithium diisopropylamide and transmetallation with zinc chloride furnished the chelate complex 148, which underwent a highly syn-stereoselective rearrangement to the amino acid derivative 149. [Pg.1027]

Alkylidene cyclohexenes were synthesized stereoselectively from bis-allyl silylketene acetals derived from cyclohexenones93. As shown in equation 66, Ireland Claisen rearrangement of ester 133 gave only E-diene 136. Reaction of 133 with potassium... [Pg.733]

Detailed investigations indicate that the enolization process (LDA, THF) affords enolates 37 and 38 with at/east 97% (Z)-stereoselection. Related observations have recently been reported on the stereoselective enolization of dialkylthioamides (38). In this latter study, the Ireland-Claisen strategy (34) was employed to assign enolate geometry. Table 10 summarizes the enolization stereo selection that has been observed for both esters and amides with LDA. Complementary kinetic enolization ratios for ketonic substrates are included in Table 7. Recent studies on the role of base structure and solvent are now beginning to appear in the literature (39,40), and the Ireland enolization model for lithium amide bases has been widely accepted, A tabular survey of the influence of the ester moiety (ORj) on a range of aldol condensations via the lithium enolates is provided in Table 11 (eq. [24]). Enolate ratios for some of the condensations illustrated may be found in Table 10. It is apparent from these data that ( )-enolates derived from alkyl propionates (Rj = CH3, t-C4H9) exhibit low aldol stereoselectivity. In contrast, the enolates derived from alkoxyalkyl esters (Rj = CHjOR ) exhibit 10 1 threo diastereo-... [Pg.28]

Ireland-Claisen (silyl ketene acetal) rearrangement... [Pg.137]


See other pages where Ireland-Claisen is mentioned: [Pg.373]    [Pg.373]    [Pg.793]    [Pg.82]    [Pg.92]    [Pg.1452]    [Pg.567]    [Pg.573]    [Pg.1185]    [Pg.1209]    [Pg.81]    [Pg.150]    [Pg.676]    [Pg.514]    [Pg.515]    [Pg.131]   
See also in sourсe #XX -- [ Pg.1452 ]




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Alkenes from Claisen-Ireland

Allylic glycolate esters Ireland-Claisen rearrangement

Amine Ireland-Claisen

Asymmetric Ireland-Claisen rearrangement

Chair-like rearrangement, Ireland-Claisen

Chelation Ireland-Claisen rearrangement, ester enolate

Chiral Auxiliary Mediated Asymmetric Ireland-Claisen Rearrangements

Claisen rearrangement Ireland modification

Claisen rearrangement Ireland variant

Claisen-Ireland rearrangment

Claisen-Johnson-Ireland

Claisen-Johnson-Ireland and Oxy-Cope Rearrangements

Claisen-Johnson-Ireland rearrangement

Diastereoselectivity Claisen-Ireland rearrangements

Enolates Ireland-Claisen ester

Glycals Ireland-Claisen rearrangement

In the Ireland-Claisen

In the Ireland-Claisen rearrangement

Ireland

Ireland variant, of the Claisen

Ireland variant, of the Claisen rearrangement

Ireland-Claisen ester enolate

Ireland-Claisen ester enolate rearrangements

Ireland-Claisen ester rearrangement

Ireland-Claisen reaction

Ireland-Claisen reaction diastereoselectivity

Ireland-Claisen rearrangement

Ireland-Claisen rearrangement control

Ireland-Claisen rearrangement examples

Ireland-Claisen rearrangement in nonactic acid synthesis

Ireland-Claisen rearrangement natural product synthesis

Ireland-Claisen rearrangement of allylic glycolate esters

Ireland-Claisen rearrangement of silyl ketene acetal

Ireland-Claisen rearrangement ring formation

Ireland-Claisen rearrangement stereochemistry

Ireland-Claisen rearrangements, enolates, lithium

Ireland-Claisen synthesis

Ketene Ireland-Claisen rearrangement

Lasalocid Ireland-Claisen rearrangement

Modified Ireland-Claisen

Modified Ireland-Claisen rearrangement

Natural products Ireland-Claisen rearrangement

Rearrangement, -sigmatropic Ireland-Claisen

Reduction Ireland-Claisen rearrangement

Ring synthesis Ireland-Claisen rearrangement

Sigmatropic rearrangements Ireland-Claisen rearrangement

Silyl ketene acetals Ireland-Claisen rearrangement

Systems Ireland- Claisen rearrangement

The Ireland-Claisen Rearrangement

Transition state Claisen-Ireland rearrangements

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