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Supramolecular chirality transfer in a stereodynamic catalysts.

Golo StorchOliver Trapp
Published in: Chirality (2018)
We present rhodium catalysts that contain stereodynamic axially chiral biphenol-derived phosphinite ligands modified with non-stereoselective amides for non-covalent interactions. A chirality transfer was achieved with (R)- or (S)-acetylphenylalanine methyl amide, and the interaction mechanism was investigated by NMR measurements. These interactions at the non-stereoselective interaction sites and the formation of supramolecular complexes result in an enrichment of either the (Rax )- or (Sax ) enantiomer of the tropos catalysts, which in turn provide the (R)- or (S)-acetylphenylalanine methyl ester in the hydrogenation of (Z)-methyl-α-acetamidocinnamate.
Keyphrases
  • highly efficient
  • transition metal
  • metal organic framework
  • magnetic resonance
  • high resolution
  • energy transfer
  • fluorescent probe
  • solid state
  • atomic force microscopy
  • quantum dots