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September 10, 2025Journal of the American Chemical Society7 citations

A Crystalline Boravinylidene from an Arrested Hydroboration Reaction

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MAManjur O. AkramKFKirk A. FrenchKSKevin L. Shuford

Key Points

  • The study successfully crystallizes a boravinylidene, a previously uncharacterized intermediate in hydroboration reactions.
  • Multinuclear NMR experiments demonstrate that the boravinylidene is in equilibrium with its starting materials, adding complexity to the understanding of these reactions.
  • Density functional theory calculations suggest hyperconjugative interactions stabilize the boravinylidene species, revealing essential insights into its stability.
  • Insertion and rearrangement reactions with nitriles produce an iminium-tethered borataallene, showcasing the versatility of the boravinylidene.

Abstract

Boravinylidenes are intermediates in 1,1-hydroboration reactions of alkynes en route to vinyl boranes. Unlike transition metal-vinylidene complexes, boravinylidenes have hitherto, not been crystallographically characterized. Pairing bis(trimethylsilyl)ethyne with an extremely potent hydroboration reagent, bis(1-methyl-ortho-carboranyl)borane, enables crystallization and characterization of a boravinylidene. Solution multinuclear NMR experiments validate the boravinylidene and reveal it is in equilibrium with the starting materials. Density functional theory calculations indicate hyperconjugative interactions from the β-silyl groups and B-H bond stabilize this unusual species. Reaction of the feature compound with nitriles triggered an insertion and rearrangement to furnish an iminium-tethered borataallene.

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Cite This Study

Akram et al. (2025) studied this question.

synapsesocial.com/papers/68c1d5fe54b1d3bfb60f914bhttps://doi.org/10.1021/jacs.5c11053
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