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March 13, 2026Precision Chemistry2 citationsOpen Access

Regiodivergent Cyclotrimerization of Alkynes: Switchable Selectivities by Iron and Nickel Catalysts

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QPQianxiu PanDWDi WuFCFei Chen

Key Points

  • The aim is to develop a metal-catalyzed method for regioselective synthesis of cyclotrimerized alkynes using earth-abundant metals.
  • Utilized a cooperative catalytic system with iron and nickel catalysts.
  • Employed pinacolborane (HBpin) for regioselectivity.
  • Investigated a wide range of alkynes under mild temperature conditions.
  • Achieved synthesis of both 1,2,4- and 1,3,5-trisubstituted benzenes.
  • Achieved precise regiocontrol in alkyne cyclotrimerization reactions.
  • Successfully synthesized both regioisomers from different substrates.
  • Demonstrated effectiveness under mild reaction conditions (30–80 °C).
  • Used a low-cost and commercially available catalyst system.

Abstract

Metal-catalyzed strategy for cyclotrimerization of alkynes to form trisubstituted benzenes is critically important for organic synthesis. Although a significant advancement has been achieved in this area, switchable regioselectivity and controlled regiodivergent of products for the cyclotrimerization of alkynes is a longstanding challenge, especially based on nonexpensive earth-abundant metals. Herein, we report a metal-source-regulated strategy for the regioselective synthesis of two cyclotrimerization regioisomers from a wide range of alkynes. This method achieves precise regiocontrol in the alkyne cyclotrimerization reaction. By utilizing a cooperative catalytic system composed of a commercially available iron and nickel-catalytic system and pinacolborane (HBpin), 1,2,4-trisubstituted benzenes or 1,3,5-trisubstituted benzenes can be stereoselectively synthesized. Notably, this protocol features mild reaction conditions (30–80 °C), a broad substrate scope (including aryl, alkyl, and silyl derivatives), and a low-cost, commercially available catalyst system. The critical advantages of this strategy overcome the practical limitations of existing high-temperature or expensive catalytic systems.

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Cite This Study

Pan et al. (2026) studied this question.

synapsesocial.com/papers/69b3ace502a1e69014ccf008https://doi.org/10.1021/prechem.5c00403
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