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May 21, 2026ACS Catalysis4 citations

Ligand-Induced Direct Excitation Enables Deep-Red to Near-Infrared Nickel-Catalyzed C(sp 2 )−C(sp 3 ) Cross-Coupling

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KMKanji MuraokaYMYusuke MiyamotoSMSho Murakami

Key Points

  • This research aims to explore nickel-catalyzed C(sp2)−C(sp3) cross-coupling driven by deep-red to near-infrared light, providing insights into substrate-catalyst interactions.
  • Utilized an aza-dipyrromethene catalyst to form a borate complex capable of absorbing DR−NIR light.
  • Performed systematic optimization to achieve high yields under 660 nm and maintain reactivity under 740 nm.
  • Conducted mechanistic studies to understand radical generation and catalytic bond construction.
  • Achieved high yields of C(sp2)−C(sp3) coupling under 660 nm irradiation with significant yield improvements noted for aryl chlorides.
  • Maintained efficient coupling reactions under 740 nm light with broad substrate compatibility.
  • Successfully delineated the mechanism of photoexcited borate−nickel assemblies in generating radicals and facilitating catalysis.

Abstract

We report a deep-red (DR)-to-near-infrared (NIR) light-driven Ni-catalyzed C(sp2)−C(sp3) cross-coupling of alkylborons with aryl halides enabled by ligand-induced direct excitation of substrate−catalyst complexes. An aza-dipyrromethene catalyst forms a borate complex that directly absorbs DR−NIR light to trigger C−B bond cleavage and generate alkyl radicals while supporting productive nickel turnover under low-energy photons. Systematic optimization affords high yields under 660 nm irradiation and maintains efficient reactivity under 740 nm light. Broad substrate compatibility, including improved aryl chloride coupling, is achieved. Mechanistic studies delineate how photoexcited borate−nickel assemblies couple radical generation to catalytic bond construction, establishing a mechanistically grounded framework for DR−NIR nickel catalysis.

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Cite This Study

Muraoka et al. (2026) studied this question.

synapsesocial.com/papers/6a0ea0f7be05d6e3efb5f543https://doi.org/10.1021/acscatal.6c01812
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Also Consider

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