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January 20, 2026Angewandte Chemie0 citationsOpen Access

Stable BF 2 Boracycles as Versatile Reagents for Selective Ortho C–H Functionalization

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GSGanesh ShindeJBJonatan BabikerMMMichelle Mebrahtu

Key Points

  • The aim is to develop robust BF2 boracycles for efficient C–H functionalization and subsequent reactions.
  • Develop a metal-free protocol for BF2 boracycle synthesis.
  • Implement a scalable approach requiring no column chromatography.
  • Test the reactivity of BF2 boracycles in ortho-C–H functionalization.
  • Evaluate the performance in Suzuki–Miyaura cross-coupling reactions.
  • BF2 boracycles show enhanced stability and reactivity as reagents.
  • Successful ipso-substitution yields varied derivatives including halogenated and hydroxylated products.
  • BF2 boracycles enable formation of C(sp2)─C(sp2) and C(sp2)─C(sp3) bonds effectively.

Abstract

Abstract The development of new boron reagents continues to play a crucial role in advancing modern organic synthesis, particularly in C–H functionalization and cross‐coupling reactions. Herein, we report a metal‐free, robust, and scalable multigram protocol for the synthesis of stable BF 2 boracycles that require no column chromatography, providing a practical and efficient route to access this valuable boron species. The BF 2 boracycles exhibit enhanced stability and reactivity, making them highly versatile intermediates for late‐stage diversification. They undergo ipso ‐substitution to afford a wide array of derivatives, including halogenated (e.g., radioiodinated), hydroxylated, and azidated products. Furthermore, they display excellent reactivity in Suzuki–Miyaura cross‐coupling reactions, enabling both C(sp 2 )─C(sp 2 ) and C(sp 2 )─C(sp 3 ) bond formation. These results underscore the utility of BF 2 boracycles as powerful tools for selective functionalization in pharmaceutical synthesis and beyond. Our work represents a significant advancement in organoboron chemistry, offering both a streamlined synthetic approach and broad applicability for complex molecule construction.

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Cite This Study

Shinde et al. (2026) studied this question.

synapsesocial.com/papers/696f1ac19e64f732b51ef141https://doi.org/10.1002/ange.202518421
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