A Free Phosphaborene Stable at Room Temperature.
Jiancheng LiZhihao LuLiu Leo LiuPublished in: Journal of the American Chemical Society (2022)
Free phosphaborenes (R-P═B-R) are PB analogues of alkynes, and their isolation is a long-sought-after goal. Herein, we demonstrate that the combination of a π-donating and a π-accepting substituent with bulky flanking arene rings enables the isolation of a crystalline free phosphaborene 5 at room temperature. This electron push-pull cooperation, combined with the kinetic protection, hinders its inherent tendency to oligomerize. This species features a PB double bond consisting of a conventional σ bond and a delocalized π bond. The lone pair of electrons at P slightly contributes to the PB bonding. Preliminary reactivity studies show that 5 undergoes facile (cyclo)addition reactions with p -methyl benzaldehyde, p -fluoroacetophenone, and carbon disulfide, the last of which results in facile PB double bond cleavage. Our strategy has a significant impact on the future synthesis of ambiphilic heterodiatomic multiply bonded main group species.
Keyphrases
- room temperature
- heavy metals
- ionic liquid
- aqueous solution
- transition metal
- reduced graphene oxide
- quantum dots
- risk assessment
- highly efficient
- electron transfer
- molecular docking
- genetic diversity
- gold nanoparticles
- metal organic framework
- visible light
- molecular dynamics simulations
- water soluble
- solar cells
- structure activity relationship
- electron microscopy