Asymmetric Lewis acid catalysis directed by octahedral rhodium centrochirality

A rhodium-based asymmetric catalyst is introduced which derives its optical activity from octahedral centrochirality. Besides providing the exclusive source of chirality, the rhodium center serves as a Lewis acid by activating 2-acyl imidazoles through two point binding and enabling a very effective...

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Veröffentlicht in:Chemical science (Cambridge) 2015-01, Vol.6 (2), p.1094-1100
Hauptverfasser: Wang, Chuanyong, Chen, Liang-An, Huo, Haohua, Shen, Xiaodong, Harms, Klaus, Gong, Lei, Meggers, Eric
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Sprache:eng
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Zusammenfassung:A rhodium-based asymmetric catalyst is introduced which derives its optical activity from octahedral centrochirality. Besides providing the exclusive source of chirality, the rhodium center serves as a Lewis acid by activating 2-acyl imidazoles through two point binding and enabling a very effective asymmetric induction mediated by the propeller-like -symmetrical ligand sphere. Applications to asymmetric Michael additions (electrophile activation) as well as asymmetric α-aminations (nucleophile activation) are disclosed, for which the rhodium catalyst is found to be overall superior to its iridium congener. Due to its straightforward proline-mediated synthesis, high catalytic activity (catalyst loadings down to 0.1 mol%), and tolerance towards moisture and air, this novel class of chiral-at-rhodium catalysts will likely to become of widespread use as chiral Lewis acid catalysts for a large variety of asymmetric transformations.
ISSN:2041-6520
2041-6539
DOI:10.1039/c4sc03101f