Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5217583 | Tetrahedron | 2013 | 6 Pages |
Abstract
A mechanistic study was carried out for the asymmetric Michael addition reaction of malonates to enones catalyzed by a primary amino acid lithium salt to elucidate the origin of the asymmetric induction. A primary β-amino acid salt catalyst, O-TBDPS β-homoserine lithium salt, exhibited much higher enantioselectivity than that achieved with the corresponding catalysts derived from α- and γ-amino acids for this reaction. Detailed studies of the transition states with DFT calculations revealed that the lithium cation and carboxylate group of the β-amino acid salt catalyst have important roles in achieving high enantioselectivity in the Michael addition reaction of malonates to enones.
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Related Topics
Physical Sciences and Engineering
Chemistry
Organic Chemistry
Authors
Masanori Yoshida, Yuki Nagasawa, Ami Kubara, Shoji Hara, Masahiro Yamanaka,