Telluronium cations have long been known to engage their counteranions via secondary interactions. Yet, this property has rarely been exploited for anion binding. Motivated by such an application, we have now synthesized a bis-telluronium dication ([]) that was obtained as a tetrafluoroborate salt by reaction of 2,7-di--butyl-9,9-dimethylxanthene-4,5-diboronic acid with phenoxatellurine difluoride and BF·OEt. As confirmed by the formation of Te-(μ-BF)-Te bridges in the structure of [][BF], [] functions as a bidentate Lewis acid toward anions. [][BF] has also been converted into the more exposed [][BArF] ([BArF] = [B(3,5-(CF)CH)]). The latter, which readily ionizes PhCCl, displays a chloride anion binding constant that exceeds that of a monofunctional model compound by almost 4 orders of magnitude. The unique properties of this new bis-telluronium dication are further highlighted by its ability to activate PhPAuCl and -(PhP)PtCl, leading to catalytic systems highly active in the cycloisomerization of propargylamide or enyne substrates.
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http://dx.doi.org/10.1021/jacs.1c04482 | DOI Listing |
J Am Chem Soc
June 2021
Department of Chemistry, Texas A&M University, College Station, Texas 77843, United States.
Telluronium cations have long been known to engage their counteranions via secondary interactions. Yet, this property has rarely been exploited for anion binding. Motivated by such an application, we have now synthesized a bis-telluronium dication ([]) that was obtained as a tetrafluoroborate salt by reaction of 2,7-di--butyl-9,9-dimethylxanthene-4,5-diboronic acid with phenoxatellurine difluoride and BF·OEt.
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