Visible-Light-Induced, Copper-Catalyzed Three-Component Coupling of Alkyl Halides, Olefins, and Trifluoromethylthiolate to Generate Trifluoromethyl Thioethers
Abstract
Photoinduced, copper-catalyzed coupling reactions are emerging as a powerful method for generating Csp^3–Y (Y = C or heteroatom) bonds from alkyl electrophiles and nucleophiles. Corresponding three-component couplings of alkyl electrophiles, olefins, and nucleophiles have the potential to generate an additional Csp3–Y bond and to efficiently add functional groups to both carbons of an olefin, which serves as a readily available linchpin. In this report, we establish that a variety of electrophiles and a trifluoromethylthiolate nucleophile can add across an array of olefins (including styrenes and electron-poor olefins) in the presence of CuI/binap and blue-LED irradiation, thereby generating trifluoromethyl thioethers in good yield. The process tolerates a wide range of functional groups, and an initial survey of other nucleophiles (i.e., bromide, cyanide, and azide) suggests that this three-component coupling strategy is versatile. Mechanistic studies are consistent with a photoexcited Cu(I)/binap/SCF_3 complex serving as a reductant to generate an alkyl radical from the electrophile, which likely reacts in turn with the olefin and a Cu(II)/SCF_3 complex to afford the coupling product.
Additional Information
© 2018 American Chemical Society. Received: October 10, 2018; Revised: October 24, 2018; Published: October 31, 2018. Support has been provided by the National Institutes of Health (National Institute of General Medical Sciences, Grant R01-109194). We are also grateful to the Dow Next Generation Educator Fund. We thank Dr. Tanvi S. Ratani, Dr. Paul H. Oyala (Caltech EPR Facility, supported by NSF-1531940), Larry M. Henling, Dr. Jun Myun Ahn, and Theodore M. Donnell for experimental assistance and for helpful discussions. The authors declare no competing financial interest.Attached Files
Accepted Version - nihms-1011573.pdf
Supplemental Material - cs8b04094_si_001.pdf
Supplemental Material - cs8b04094_si_002.cif
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Additional details
- PMCID
- PMC6687088
- Eprint ID
- 90547
- DOI
- 10.1021/acscatal.8b04094
- Resolver ID
- CaltechAUTHORS:20181031-131746669
- NIH
- R01-109194
- NSF
- CHE-1531940
- Created
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2018-10-31Created from EPrint's datestamp field
- Updated
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2021-11-16Created from EPrint's last_modified field