Enantioconvergent Alkylations of Amines by Alkyl Electrophiles: Copper-Catalyzed Nucleophilic Substitutions of Racemic α-Halolactams by Indoles
Abstract
Transition-metal catalysis has the potential to address shortcomings in the classic S_N2 reaction of an amine with an alkyl electrophile, both with respect to reactivity and to enantioselectivity. In this study, we describe the development of a user-friendly method (reaction at room temperature, with commercially available catalyst components) for the enantioconvergent nucleophilic substitution of racemic secondary alkyl halides (α-iodolactams) by indoles. Mechanistic studies are consistent with the formation of a copper(I)–indolyl complex that reacts at different rates with the two enantiomers of the electrophile, which interconvert under the reaction conditions (dynamic kinetic resolution). This investigation complements earlier work on photoinduced enantioconvergent N-alkylation, supporting the premise that this important challenge can be addressed by a range of strategies.
Additional Information
© 2019 American Chemical Society. Received 23 July 2019. Published online 9 September 2019. Support has been provided by the National Institutes of Health (National Institute of General Medical Sciences; Grant No. R01-GM109194), the Bengt Lundqvist Memorial Foundation of the Swedish Chemical Society (fellowship for A.B.), Boehringer–Ingelheim Pharmaceuticals (Scientific Advancement Grant to G.C.F.), and the Dow Next Generation Educator Fund (grant to Caltech). We thank Prof. Jonas C. Peters, Dr. Quirin M. Kainz, Dr. J. M. Ahn, Lawrence M. Henling, Dr. Nathan D. Schley, Dr. Mona Shahgholi, Dr. Michael K. Takase, Dr. Scott C. Virgil, and Dr. Susan L. Zultanski for assistance and helpful discussions. The authors declare no competing financial interest.Attached Files
Accepted Version - nihms-1557306.pdf
Supplemental Material - ja9b07875_si_001.pdf
Files
Name | Size | Download all |
---|---|---|
md5:0436fba0f8309d6bc5639c4f57e5feb5
|
2.1 MB | Preview Download |
md5:496bbca5eca1cf6eabe3c2e7336e5f31
|
4.0 MB | Preview Download |
Additional details
- PMCID
- PMC7055584
- Eprint ID
- 98510
- Resolver ID
- CaltechAUTHORS:20190909-093503148
- NIH
- R01-GM109194
- Bengt Lundqvists Minnesfond
- Swedish Chemical Society
- Boehringer Ingelheim
- Dow Next Generation Educator Fund
- Created
-
2019-09-09Created from EPrint's datestamp field
- Updated
-
2023-06-01Created from EPrint's last_modified field