Single-Center, but Multipotent Lewis acids: Illuminating the Multiple Lewis Acidity of Triaryl-Boranes via Atropisomeric Dative Adducts

24 January 2024, Version 2
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

We report the illumination of the exotic and peculiar molecular phenomenon of single-centered, but multiple Lewis acidity for triaryl boranes with fine-tuned steric effects and appropriate symmetry design. The existence of this unique molecular property was indirectly confirmed by the formation of B(sp3)–N(sp3) atropisomeric piperidine–borane adducts using state-of-the-art NMR techniques in combination with computational methods. Additional 19F EXSY experiments also revealed that these sterically strained piperidine–borane adducts display conformational interconversions, which take place via dissociative rather than rotameric mechanism.

Keywords

Anisotropy
Atropisomerism
Fluorine NMR
Lewis acids
Steric effects

Supplementary materials

Title
Description
Actions
Title
Supporting Information for the Article "Single-Center, but Multipotent Lewis acids: Illuminating the Multiple Lewis Acidity of Triaryl-Boranes via Atropisomeric Dative Adducts"
Description
Detailed information on the NMR (Sections 1.1, 3, 7) and computational studies (Sections 1.2, 2, 4–5, 8, 10) of the presented piperidine–borane adducts are found in the Supporting Information. The SI includes experimental procedures as well as the full assignment process of the respective piperidine–borane atropisomeric states (Section 6), the atomic coordinates of the computed structures and additional references.
Actions

Comments

Comments are not moderated before they are posted, but they can be removed by the site moderators if they are found to be in contravention of our Commenting Policy [opens in a new tab] - please read this policy before you post. Comments should be used for scholarly discussion of the content in question. You can find more information about how to use the commenting feature here [opens in a new tab] .
This site is protected by reCAPTCHA and the Google Privacy Policy [opens in a new tab] and Terms of Service [opens in a new tab] apply.