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Chiral auxiliaries, diastereoselectivity, asymmetric cleavage

The A -acyl derivatives of 4-substituted-3,4,5,6-tetrahydro-27/-l,3-oxazin-2-ones proved to behave as effective chiral auxiliaries in asymmetric enolate alkylations and aldol reactions, the stereoselectivities of which were found to be higher for 4-isopropyl than for 4-phenyl derivatives <2006OBC2753>. The transformations of 4-isopropyl-6,6-dimethyl-3-propa-noyl-3,4,5,6-tetrahydro-2/7-l,3-oxazin-2-one 251 to 252 or 253 proceeded with excellent diastereoselectivities (Scheme 47). 6,6-Dimethyl substitution within the oxazine ring facilitated exclusive exocyclic cleavage upon hydrolysis of the C-alkylated and the aldol products 252 and 253, to furnish a-substituted carboxylic acids 254 or a-methyl-/ -hydroxycarboxylic acids 256. [Pg.408]

Introduction. (l/ ,5i -2//-l,5-Benzodithiepin-3(4/ -one 1,5-dioxide (C2-symmetric his-sulfoxide 1) has been used as a chiral auxiliary for asymmetric desymmetrization of cyclic meso-1,2-diols via diastereoselective acetal cleavage reaction. The procedure consists of three steps (eq 1), that is, acetalization (step 1), acetal cleavage reaction followed by benzylation (step 2), and hydrolysis of the vinyl ether (step 3). Due to the Ca-symmetry of 1, the chiral auxiliary gives only one product in step 1. In addition, no regio- or geometric isomers of the enol ether are formed in step 2. This reagent can be recovered by acid-promoted hydrolysis and reused. [Pg.30]

One of the most successful classes of chiral auxiliaries for asymmetric synthesis is that of Enders proline-based hydrazines, namely (S)-l-amino-2-methoxymethylpyrrolidine (SAMP, 74) and its (R)-enantiomer RAMP (Scheme 11.11) [68]. Enders has reported that chiral hydrazones such as 75 undergo diastereoselective additions with organolithium reagents. The facile removal of the auxiliary by reductive cleavage of the N-N bond enables it as a versatile tool for the synthesis of a wide range of chiral secondary amines [69, 70]. As shown in Scheme 11.11, the secondary amine 77 was thus prepared in 73 % overall yield and 93 % ee [69]. [Pg.351]

In late 1975, Enders et al.156) started a research project directed towards the development of a new synthetic method for asymmetric carbon-carbon bond formation. A new chiral auxiliary, namely the (S)-proline derivative SAMP (137), was allowed to react with aldehydes and ketones to give the hydrazones (138), which can be alkylated in the a-position in an diastereoselective manner 157,158). Lithiation 159) of the SAMP hydrazones (138), which are formed in excellent yields, leads to chelate complexes of known configuration 160). Upon treatment of the chelate complexes with alkyl halogenides the new hydrazones (139) are formed. Cleavage of the product hydrazones (139) leads to 2-alkylated carbonyl compounds (140). [Pg.204]

Asymmetric reduction of ketones. Chiral ketals 2, obtained by reaction of 1 with prochiral ketones, are reduced diastereoselectively to 3 by several aluminum hydride reagents, the most selective of which is dibromoalane (LiAIHj-AIBr, 1 3). Oxidation and cleavage of the chiral auxiliary furnishes optically active alcohols (4) in optical yields of 78-96% ee (equation 1). [Pg.377]

In asymmetric synthesis, the use of enantiomerically pure chiral auxiliaries involves the temporary introduction of a chiral group G onto an achiral substrate R-Y. This modified substrate R-Y-G is subsequently transformed, ideally through a highly diastereoselective process, into a new product R-Z -G. After cleavage of the chiral auxiliary, the final product R-Z, bearing a new stereocenter, is formed. [Pg.43]


See other pages where Chiral auxiliaries, diastereoselectivity, asymmetric cleavage is mentioned: [Pg.53]    [Pg.265]    [Pg.495]    [Pg.35]    [Pg.31]    [Pg.71]    [Pg.195]    [Pg.388]    [Pg.280]    [Pg.265]    [Pg.388]    [Pg.68]    [Pg.232]    [Pg.232]    [Pg.257]    [Pg.465]    [Pg.41]    [Pg.48]    [Pg.144]    [Pg.33]    [Pg.222]    [Pg.232]    [Pg.122]    [Pg.129]    [Pg.204]    [Pg.199]    [Pg.126]    [Pg.376]    [Pg.206]   


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Asymmetric chirality

Asymmetric diastereoselective

Asymmetric diastereoselectivity

Chiral auxiliaries, diastereoselectivity, asymmetric

Chirality auxiliaries

Chirality diastereoselectivity

Diastereoselectivity chiral auxiliaries

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