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February 12, 2026Advanced Science0 citationsOpen Access

Nickel‐Catalyzed Twofold Conjunctive Coupling via Philicity‐Alternating Radical Relay

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JJJi Hwan JeonDKDa Hye KimGKGun Ha Kim

Key Points

  • To develop a method for forming multiple C–C bonds efficiently using nickel catalysis.
  • Utilized nickel catalyst for twofold conjunctive cross-electrophile coupling
  • Employed alkenes and 1,3-enynes as platforms
  • Leveraged alkyl and aryl halides as coupling partners
  • Combined experimental and theoretical approaches to analyze the reaction
  • Conducted a five-component coupling to illustrate versatility of the method.
  • Successfully formed three or more C–C bonds in a single reaction
  • Demonstrated sequential radical additions to π systems
  • Achieved selective capture of radical intermediates by the nickel catalyst
  • Illustrated synthetic versatility with the five-component coupling.

Abstract

ABSTRACT The formation of multiple and remote C–C bonds remains highly challenging owing to difficulties in reactivity and selectivity control. Herein, we report a nickel‐catalyzed twofold conjunctive cross‐electrophile coupling that employs an alkene and a 1,3‐enyne as conjunctive platforms and alkyl and aryl halides as coupling partners. Through a philicity‐alternating radical relay followed by selective radical capture, the reaction enables the formation of three or more C–C bonds. Combined experimental and theoretical investigations provide a rationale for the sequential radical additions to the π systems and the selective capture of a radical intermediate by the nickel catalyst. Furthermore, a five‐component coupling showcases the sequential and controlled addition of alkyl and aryl moieties across three conjunctive units, demonstrating the synthetic versatility of the twofold conjunctive coupling.

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Cite This Study

Jeon et al. (2026) studied this question.

synapsesocial.com/papers/698d6f0d5be6419ac0d55274https://doi.org/10.1002/advs.202521442
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