Wanzlick's equilibrium in tri- and tetraaminoolefins

The dissociation mechanism of electron-rich olefins into their parent carbenes has been a controversial topic since Wanzlick's pioneering work. Herein, we present a combined synthetic and computational study on the formation (dissociation, respectively) of hetero- and homo-carbene dimers derive...

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Veröffentlicht in:Organic Chemistry Frontiers 2021-11, Vol.8 (23), p.6663-6669
Hauptverfasser: Messelberger, Julian, Kumar, Manoj, Goodner, Stephen J., Munz, Dominik
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Sprache:eng
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Zusammenfassung:The dissociation mechanism of electron-rich olefins into their parent carbenes has been a controversial topic since Wanzlick's pioneering work. Herein, we present a combined synthetic and computational study on the formation (dissociation, respectively) of hetero- and homo-carbene dimers derived from benzimidazolin-2-ylidenes (benzNHCs), imidazolidin-2-ylidenes (saNHC), and cyclic (alkyl) (amino) carbenes (CAACs) through sublimation ( in vacuo ) as well as in condensed phase. We quantify the effect of proton catalysis and report that even triaminoolefins dissociate to their free carbenes, yet only under proton catalysis. Accordingly, we report how the judicious choice of the base (KO t Bu vs. KHMDS) and solvent (hexane/benzene vs. THF) allows N , N ′-dimethylbenzimidazolin-2-ylidene to be obtained quantitatively as a metastable, kinetic product. This free carbene had been previously reported to dimerize directly to the olefin-dimer, which is the thermodynamic product.
ISSN:2052-4129
2052-4110
2052-4129
2052-4110
DOI:10.1039/D1QO01320C