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Aldol three-component coupling

Phosphoric acid immobilized on silica (H3P04/Si02) catalyst has been widely exploited over many years [128-130]. It has also been used as a reusable catalyst for solvent-free imino-aldol three-component coupling reaction in recent years [131]. [Pg.113]

Dialkyl(trimethylsilyl)phosphines undergo 1,4-addition to a,/3-unsaturated ketones and esters to give phosphine-substituted silyl enol ethers and silyl ketene acetals, respectively. A three-component coupling reaction of a silylphosphine, activated alkenes, and aldehydes in the presence of a catalytic amount of GsF affords an aldol product (Scheme 76).290 291... [Pg.780]

The method involves a regioselective, trans-diastereoselective, and enantioselective three-component coupling, as shown in Scheme 7.26. In this case, the zinc enolate resulting from the 1,4-addition is trapped in a palladium-catalyzed allyla-tion [64] to afford trans-2,3-disubstituted cyclohexanone 96. Subsequent palladium-catalyzed Wacker oxidation [82] yields the methylketone 97, which in the presence of t-BuOK undergoes an aldol cyclization. This catalytic sequence provides the 5,6-(98) and 5,7- (99) annulated structures with ees of 96%. [Pg.253]

J0rgensen has also reported a sequential Michael/Michael/aldol condensation for the three component coupling of malonitrile 111 and a,P-unsaturated aldehydes that involves two iminium ion catalysed Michael additions followed by an intramolecular aldol condensation (Scheme 43) [170]. Using diarylprolinol ether 55 (10 mol%) in a concentrated toluene solution of malonitrile 111 and 3 equivalents of a,P-unsaturated aldehyde the reaction products can be isolated in just 1 8 h (57-89% yield 97-99% ee). The atom efficiency of this three component reaction is remarkable and the ability to prepare these complex products under... [Pg.316]

Scheme 6.4 Aldol-type three-component coupling of 11. Scheme 6.4 Aldol-type three-component coupling of 11.
Mukund Sibi of North Dakota State University has developed (J. Am. Chem. Soc. 2004,126,718) a powerful three-component coupling, combining an a,(5-unsaturated amide 9, a hydroxylamine 10, and an aldehyde 11. The hydroxylamine condenses with the aldehyde to give the nitrone, which then adds in a dipolar sense to the unsaturated ester. The reaction proceeds with high diastereocontrol, and the absolute configuration is set by the chiral Cu catalyst. As the amide 9 can be prepared by condensation of a phosphonacetate with another aldehyde, the product 12 can be seen as the product of a four-component coupling, chirally-controlled aldol addition and Mannich condensation on a starting acetamide. [Pg.63]

Tributyltin enolates are useful radical mediators [47], although they generally exist in equilibrium with a-tributyltin ketones [48], Three-component coupling reactions proceed readily to give functionalized ketones in good to excellent yields, where an equilibrium shift to provide tin enolates operates efficiently (Scheme 6.28) [49]. Unlike the aforementioned case of allyltin-mediated reactions, acrolein is difficult to use in this reaction, since the Aldol reaction of the tin enolate with acrolein precedes the radical reaction. [Pg.183]

Three-component coupling reaction of a-enones, silyl enolates, and aldehydes by successive Mukaiyama-Michael and aldol reactions is a powerful method for stereoselective construction of highly functionahzed molecules valuable as synthetic intermediates of natural compounds [231c]. Kobayashi et al. recently reported the synthesis of y-acyl-d-lactams from ketene silyl thioacetals, a,/l-urisalu-rated thioesters, and imines via successive SbCl5-Sn(OTf)2-catalyzed Mukaiyama-Michael and Sc(OTf)3-catalyzed Mannich-type reactions (Scheme 10.87) [241]. [Pg.470]

Johnson and Penning have described the use of (159), containing an acetonide grouping to mask an aldol, in the three-component coupling reaction sequence (159) + (160) + (161)... [Pg.641]

Furthermore, three-component coupling tandem Michael-aldol reactions were achieved by trapping the aluminium enolate intermediate with an aldehyde (Scheme 19.16a). Initiated by the asymmetric Michael addition of malonic esters to cyclic enones, several natural products were synthesised... [Pg.177]

The first asymmetric procedure consists of the addition of R2Zn to a mixture of aldehyde and enone in the presence of the chiral copper catalyst (Scheme 7.14) [38, 52]. For instance, the tandem addition of Me2Zn and propanal to 2-cyclohexenone in the presence of 1.2 mol% chiral catalyst (S, R, R)-1S gave, after oxidation of the alcohol 51, the diketone 52 in 81% yield and with an ee of 97%. The formation of erythro and threo isomers is due to poor stereocontrol in the aldol step. A variety of trans-2,3-disubstituted cyclohexanones are obtained in this regioselective and enantioselective three-component organozinc reagent coupling. [Pg.243]

Three-component aldol synthesis.1 This rhodium carbonyl can promote aldol coupling of enol silyl ethers with aldehydes or ketones. It can also effect coupling of an enone, an aldehyde, and a trialkylsilane to provide a silyl aldol. In the case of an enolizable aldehyde, yields are improved by addition of a phosphine ligand such as... [Pg.352]

Kobayashi S, Akiyama R, Moriwaki M, Three-component or four-component coupling reactions leading to 6-lactams, Facile synthesis of y-acyl-6-lactams from silyl enolates, a, /l-unsaturated thioesters, and imines or amines and aldehydes via tandem Michael-imino aldol reactions, Tetrahedron Lett., 38 4819—4822, 1997. [Pg.143]

Epothilone A (la) was prepared with a convergent synthetic strategy starting from the three building blocks 6. 9, and 15 Fragments 6 and 9 were coupled in a highly stereoselective aldol reaction (C-6/C-7), and this was followed by esterification with the last component. 15... [Pg.75]


See other pages where Aldol three-component coupling is mentioned: [Pg.114]    [Pg.581]    [Pg.193]    [Pg.347]    [Pg.353]    [Pg.533]    [Pg.96]    [Pg.61]    [Pg.458]    [Pg.32]    [Pg.30]    [Pg.179]    [Pg.20]    [Pg.111]    [Pg.113]    [Pg.113]    [Pg.581]    [Pg.50]    [Pg.61]    [Pg.220]    [Pg.38]    [Pg.263]    [Pg.263]    [Pg.263]   
See also in sourсe #XX -- [ Pg.113 ]




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