Abstract
The efficiency and stereoselectivity of the conjugate addition of lithium (Z)- or ( E)-beta-amino ester enolates, generated by lithium amide conjugate addition to an alpha,beta-unsaturated ester or deprotonation of a beta-amino ester, respectively, to a range of alpha,beta-unsaturated acceptors has been investigated. Deprotonation of a beta-amino ester with LDA, followed by conjugate addition to a chiral alpha,beta-unsaturated oxazolidinone gives high 2,3-anti selectivity (similar to 90% d. e.), with hydrogenolysis and purification to homogeneity generating stereodefined trisubstituted piperidinones as single stereoisomers. Asymmetric three-component couplings of alpha,beta-unsaturated esters and alkylidene malonates initiated by lithium amide conjugate addition proceeds with high levels of 2,3-anti stereoselectivity, with hydrogenolysis giving tetrasubstituted piperidinones.
Original language | English |
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Pages (from-to) | 1405-1415 |
Number of pages | 11 |
Journal | Organic & Biomolecular Chemistry |
Volume | 5 |
Issue number | 9 |
DOIs | |
Publication status | Published - 2007 |
Keywords
- LITHIUM N-BENZYLTRIMETHYLSILYLAMIDE
- DOUBLE MICHAEL ADDITION
- DIOIC ACID-ESTERS
- BETA-AMINO ACIDS
- ALPHA,BETA-UNSATURATED ESTERS
- NITROGEN NUCLEOPHILE
- ALPHA-ALKYL
- STEREOCHEMICAL CONTROL
- CLAISEN REARRANGEMENT
- CYCLIZATION REACTIONS