4.8 Article

Hexafluoroisopropanol-Promoted Haloamidation and Halolactonization of Unactivated Alkenes

Journal

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
Volume 60, Issue 2, Pages 946-953

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/anie.202010846

Keywords

alkenes; density-functional calculations; halides; heterocycles; synthetic methods

Funding

  1. China Scholarship Council (CSC)
  2. CNRS, the Universite Paris-Saclay
  3. Ecole Polytechnique

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A novel method for haloamidation is introduced in this paper, providing new building blocks for drug discovery. This method overcomes some limitations of traditional reactions and the reaction mechanism is deeply studied, which is expected to promote the development of more complex transformations in this field.
Pyrrolidine and piperidine derivatives bearing halide functional groups are prevalent building blocks in drug discovery as halides can serve as an anchor for post-modifications. In principle, one of the simplest ways to build these frameworks is the haloamination of alkenes. While progress has been made in this field, notably with the development of enantioselective versions, this reaction is still fraught with limitations in terms of reactivity. Besides, a major question remaining is to understand the mechanism at work. The formation of a haliranium intermediate is typically mentioned, but limited mechanistic evidence supports it. Reported here is an efficient metal- and oxidant-free protocol to achieve the haloamidation of olefins, promoted by hexafluoroisopropanol, along with a DFT investigation of the mechanism. These findings should guide the future development of more complex transformations in the field of halofunctionalization.

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