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Stereochemistry chiral unsaturated amides

In search for control of absolute stereochemistry, the reaction of thio-chalcones was investigated with unsaturated amides bearing an Evans chiral oxazolidinone [223] and dimenthyl fumarate [224, 225]. For the first time with thiocarbonyl compounds, the efficiency of Lewis acid addition was demonstrated, and reactions could be conducted at room temperature. With EtAlCl2 (Table 4, entry 2) or A1C13 (entry 3), levels of induction up to 92% were attained for the endo isomer. Yb(OTf)3 in DMSO also caused the acceleration of the reaction with chiral acrylamides with p-facial selectivity [226]. This group has also reported [227] an intramolecular hetero Diels-Alder reaction with divinyl thioketones and the double bond of an allyloxy group (Table 4, entry 4). [Pg.164]

Addition of diethyl aluminum chloride at — 78 °C to a,/ -unsaturated oxazolidinone (154) affords an aluminum enolate that, on hydroxylation with (63a), gives the / -ethyl-a-hydroxy amide (155) with high anti selectivity (Equation (38)) <91AG(E)694>. Formation of the enolate of oxazoline thiol ester (156) under chelation (NaHMDS) and stereoelectronic (NaHMDS/HMPA) control gives the syn and anti alcohols (157), respectively, on hydroxylation with (63a) in good to excellent yield and better than 95% diastereoselectivity (Scheme 28) <93JOC6180>. A counterion dependent reversal in stereochemistry has also been reported for the hydroxylation of chiral amide enolates where the auxiliary was 2-pyrrolidinemethanol <85TL3539>. [Pg.404]

If no component has stereochemistry, asymmetric conjugate addition can be ensured by a C2 symmetric chiral auxiliary attached to the enolate partner. Addition of the lithium enolate of the amide 31 to the unsaturated ester 32 gives the lithium enolate 33 with good stereochemical control at both the new centres.8... [Pg.868]

This more dramatic reaction starts with the simple conjugate addition of the Davies chiral version of LDA 89 to unsaturated esters first given in chapter 24. The lithium amide gives the Z-enolate of the product 90 and hence the adduct 91. The transition state 92 gives the correct stereochemistry.15... [Pg.874]


See other pages where Stereochemistry chiral unsaturated amides is mentioned: [Pg.35]    [Pg.30]    [Pg.326]   
See also in sourсe #XX -- [ Pg.810 ]




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Amides Chirality

Amides stereochemistry

Unsaturated amides

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