| Literature DB >> 28008909 |
Jiawei Rong1, Juan F Collados1, Pablo Ortiz1, Ravindra P Jumde1, Edwin Otten1, Syuzanna R Harutyunyan1.
Abstract
α-Chiral amines are of significant importance in medicinal chemistry, asymmetric synthesis and material science, but methods for their efficient synthesis are scarce. In particular, the synthesis of α-chiral amines with the challenging tetrasubstituted carbon stereocentre is a long-standing problem and catalytic asymmetric additions of organometallic reagents to ketimines that would give direct access to these molecules are underdeveloped. Here we report a highly enantioselective catalytic synthesis of N-sulfonyl protected α-chiral silyl amines via the addition of inexpensive, easy to handle and readily available Grignard reagents to silyl ketimines. The key to this success was our ability to suppress any unselective background addition reactions and side reduction pathway, through the identification of an inexpensive, chiral Cu-complex as the catalytically active structure.Entities:
Year: 2016 PMID: 28008909 PMCID: PMC5196062 DOI: 10.1038/ncomms13780
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919
Catalytic asymmetric alkylation of silyl ketimines: selected optimization results.
n.d., not determined.
*Full conversion of ketimines was obtained in all the entries (determined by 1H-NMR spectroscopy), unless noted otherwise, reaction time was 10 h.
†MTBE stands for methyl tert-butyl ether.
‡Addition to reduction ratio (2:3) was determined by 1H NMR spectroscopy.
§Enantiomeric excess was determined by chiral high-performance liquid chromatography.
||Conversion was 42%.
¶No Lewis acids were added.
Figure 1Effect of the sulfonyl-protecting group.
Evaluation of sulfonyl-protecting group on the reactivity of the ketimines and the enantioselectivity of the addition reaction.
Ketimine substrate scope.
*Full conversion of ketimines was obtained in all the entries, reaction time was 10 h.
†Absolute configurations were not determined.
‡Isolated yield.
§Enantiomeric excess was determined by chiral high-performance liquid chromatography.
||The addition of BF3·OEt2 (2 equiv) and CeCl3 (1.6 equiv) were required.
¶Reaction was carried out in the solvent mixture (MTBE/Et2O=1/1) using ligand L1.
Grignard reagents scope.
*Full conversion of ketimines was obtained in all the entries, unless noted otherwise; reaction time was 10 h.
†Absolute configurations were not determined.
‡Isolated yield.
§Enantiomeric excess was determined by chiral high-performance liquid chromatography.
||The value in brackets corresponds to the enantiomeric excess of the compound in mother liquor after single crystallization.