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March 12, 2026Chinese Journal of Chemistry0 citations

Palladium‐Catalyzed Enantioselective B(4)−H Chlorination of o ‐Carboranes by Chiral Transient Directing Groups

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YZYanglong ZouNZNan ZhangWHWei Hong

Key Points

  • The aim is to explore enantioselective B(4)–H chlorination of o-carboranes using palladium-catalyzed methods.
  • Utilized a chiral transient directing group formed from 1-(2-formylaryl)-o-carboranes and α-amino acids.
  • Employed palladium catalysts for B–H bond activation.
  • Conducted mechanistic experiments and density functional theory calculations.
  • Chlorinated o-carborane products were obtained with yields ranging from moderate to good.
  • Achieved enantioselectivities of up to 99% ee.
  • Identified a trifluoroacetate-assisted concerted metalation-deprotonation pathway.

Abstract

Comprehensive Summary The inherent chirality of three‐dimensional o ‐carborane derivatives arises from the substitution patterns on the icosahedral cage. This topic has received significantly less attention than the planar, axial, central, and helical chirality commonly observed in organic synthesis. Herein, we report an enantioselective B(4)–H chlorination of o ‐carboranes via a palladium‐catalyzed chiral transient directing group strategy. Reversible in situ formation of an imine directing group from 1‐(2‐formylaryl)‐ o ‐carboranes and α‐amino acids enables regio‐ and enantio‐selective activation of cage B–H bond. A variety of chiral‐at‐cage chlorinated products are obtained in moderate to good yields with enantioselectivities up to 99% ee. Mechanistic experiments together with density functional theory calculations support a trifluoroacetate‐assisted concerted metalation‐deprotonation pathway and reveal the key role of noncovalent interactions in controlling enantioselectivity.

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Cite This Study

Zou et al. (2026) studied this question.

synapsesocial.com/papers/69b2588496eeacc4fcec8340https://doi.org/10.1002/cjoc.70552
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