| Literature DB >> 31768077 |
Bradley B Gilbert1, Stanley T-C Eey1, Pavel Ryabchuk1, Olivia Garry1, Scott E Denmark1.
Abstract
The enantioselective dichlorination of alkenes is a continuing challenge in organic synthesis owing to the limitations of selective and independent antarafacial delivery of both electrophilic chlorenium and nucleophilic chloride to an olefin. Development of a general method for the enantioselective dichlorination of isolated alkenes would allow access to a wide variety of polyhalogenated natural products. Accordingly, the enantioselective suprafacial dichlorination of alkenes catalyzed by electrophilic organoselenium reagents has been developed to address these limitations. The evaluation of twenty-three diselenides as precatalysts for enantioselective dichlorination is described, with a maximum e.r. of 76:24 Additionally, mechanistic studies suggest an unexpected Dynamic Kinetic Asymmetric Transformation (DyKAT) process may be operative.Entities:
Keywords: Electrophilic selenium; Enantioselective dichlorination; Redox catalysis
Year: 2019 PMID: 31768077 PMCID: PMC6876749 DOI: 10.1016/j.tet.2019.05.054
Source DB: PubMed Journal: Tetrahedron ISSN: 0040-4020 Impact factor: 2.457