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April 24, 2026ACS Catalysis3 citations

Epoxidation over Semipinacol Rearrangement via Photocopper Catalysis for Oxa-Spirocycle Synthesis

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YWYue WangSLShijun LiuLHLongtao Huang

Key Points

  • The aim is to develop a photocopper-catalyzed method for synthesizing oxa-spirocycles from unactivated alkyl halides.
  • Utilized visible-light and copper catalysis for alkylative epoxidation of 1-vinylcyclobutanols.
  • Focused on controlling redox potential of Cu(II) to stabilize radicals and inhibit carbocation formation.
  • Compared transformation efficiency against competing semipinacol rearrangement pathway.
  • Successfully synthesized oxa-spirocyclic compounds from unactivated alkyl halides.
  • Controlled conditions led to selective outcomes, reducing byproducts from rearrangements.
  • Notable structural diversity achieved in target compounds.

Abstract

Spirocycles serve as pivotal three-dimensional bioisosteres for flat scaffolds in drug discovery, offering enhanced structural diversity and physicochemical properties. We report a visible-light-induced, copper-catalyzed alkylative epoxidation of 1-vinylcyclobutanols and their derivatives, enabling the direct construction of oxa-spirocycles from unactivated alkyl halides as alkyl radical precursors. The success of this transformation depends on the right redox potential of in-situ-generated Cu(II) species, which stabilizes the radical intermediate while preventing its over-oxidation to a carbocation. This critical control suppresses the competing semipinacol rearrangement pathway, selectively delivering valuable oxa-spirocyclic compounds.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69eb08ef553a5433e34b3977https://doi.org/10.1021/acscatal.6c00755
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