Oxoboranes (R-BO) are transient species that rapidly trimerise to form boroxines. To date, the only method used to stabilise oxoboranes is to add a Lewis base, but this forms a three-coordinate at boron oxoborane that has a different bonding/reactivity profile. Herein we report a base-free, two-coordinate oxoborane that is isolated as a Lewis adduct with AlCl. This species, Mes*BO-AlCl (Mes*=2,4,6-Bu-CH), has a νΒΟ stretching frequency of 1843 cm, indicating a strong BO bond. Computational analysis indicates this is due to a highly polarised BO bonding interaction combined with modest BO multiple bond character. While the polarisation of the BO bond on AlCl coordination enhances the Lewis acidity at boron it also reduces the basicity at oxygen and the latter is key to accessing a base-free oxoborane. Finally, this oxoborane reacts with PhN in a unique way to form an unprecedented boron heterocycle.
Download full-text PDF |
Source |
---|---|
http://dx.doi.org/10.1002/anie.202419094 | DOI Listing |
Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!