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October 15, 2025Chinese Journal of Chemistry29 citations

Recent Advance in Photo‐/Electrocatalytic Difunctionalization of Alkenes via Radical‐Polar Crossover†

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CWChunru WangWZWenyu ZhangYCYu Chen

Key Points

  • Photoelectrocatalytic difunctionalization of alkenes improves molecular complexity while aligning with green chemistry principles.
  • The review emphasizes the importance of transformations using oxidative radical-polar crossover or reductive radical-polar crossover.
  • Recent advancements provide novel methods for selecting functionalized polar adducts in organic synthesis.
  • Combining radical and ionic reactivity overcomes limitations of conventional methodologies in organic chemistry.

Abstract

Comprehensive Summary The catalytic difunctionalization of alkenes offers an efficient and straightforward approach to incorporating two functional groups across a double bond for increasing molecular complexity and has found widespread application in organic synthesis. Among them, photo‐/electrocatalytic difunctionalization of alkenes based on the radical‐polar crossover strategy has gained increasing attention. This approach not only aligns with the principles of green and sustainable chemistry but also uniquely merges both radical and ionic modes of reactivity, overcoming the inherent limitations of conventional methodologies. This review summarizes the innovative progress in photo‐/electrocatalytic difunctionalization of alkenes over the last decade, which is focused on the transformations via oxidative radical‐polar crossover (ORPC) or reductive radical‐polar crossover (RRPC) as the key step and particular emphasizes on the selection of functionalized polar adducts. Key Scientists

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Cite This Study

Wang et al. (2025) studied this question.

synapsesocial.com/papers/68f02c7d616531447b5f95bbhttps://doi.org/10.1002/cjoc.70246
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