Abstract
An unprecedented neutral “masked” non-external-donor-stabilized diborene is generated via intramolecular arene dearomatization of an N-heterocyclic imine (NHI)-supported free diborene. The free diborene intermediate is photochemically accessible from the masked form, as supported experimentally through chalcogenation reactions. Computational studies elucidate an alkyne-like bonding pattern and a triplet ground state with a ΔES-T = +1.2 kcal mol−1 for the NHI-supported free diborene. Remarkably, the “masked” diborene activates pyridines, promoting transition-metal-free C−C bond formation with high C2 regioselectivity to afford homocoupling products under mild conditions. Mechanistic investigations reveal that stepwise coordination and B−C bond cleavage produce a bis-pyridine diborene intermediate, which undergoes reductive coupling via intrinsically strong double single-π-electron transfer from the B═B unit to the intramolecular pyridine ligands. Furthermore, oxidation with p-benzoquinone allows the release of free 2,2′-bipyridine derivatives. These findings provide access to insight into a hitherto elusive free diborene species, establish a previously unknown reactivity mode for diborenes, and demonstrate that this “masked” diborene functions as an exceptionally powerful double single-electron donor with the potential to mimic transition-metal behavior in the construction of organic molecules.
| Original language | English |
|---|---|
| Article number | e2388449 |
| Journal | Angewandte Chemie - International Edition |
| Volume | 65 |
| Issue number | 27 |
| DOIs | |
| State | Published - 1 Jul 2026 |
Keywords
- free diborene
- masked diborene
- pyridine homocoupling
- reversible interconversion
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