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The structure of Λ-β 1-[Co(R,R-picchxn)(S-tyr)] Br 2 · 3.5H 2O and solution configuration of Λ-β 1-[Co(R,R-picchxn)(aromatic S-aminoacidate)] 2+ complexes: Model systems for the investigation of non-covalent aromatic interactions

  • Paul Emseis
  • , David E. Hibbs
  • , Peter Leverett
  • , Narsimha Reddy
  • , Peter A. Williams

Research output: Contribution to journalArticle

10 Citations (Scopus)

Abstract

Intramolecular non-covalent interactions involving aromatic residues in the ternary species Λ-β 1-[Co(R,R-picchxn)(S-aa)] 2+ (aa=Tyr, OMe-tyr or Phe) have been investigated. Such interactions are important to discriminatory processes associated with molecular recognition in chemical and biochemical systems. The single-crystal X-ray study of Λ-β 1-[Co(R,R-picchxn)(S-tyr)]Br 2·3. 5H 2O demonstrates the influence of intramolecular π-π and bifurcated NH-π interactions in determining the molecular conformation of the complex cation in the solid state. The Co(III) complexes synthesised are diamagnetic, and have been fully assigned in solution using multidimensional NMR techniques. Remarkably, the solid state conformation observed for Λ-β 1-[Co(R,R-picchxn)(S-tyr)] 2+ has been shown to predominate in solutions of all the complexes, as evidenced by appropriate rOe correlations. 1H NMR measurements carried out in order to determine equilibrium rotamer distributions confirm the dominance of this conformer in solution. NMR measurements also show that rotamer populations are relatively unchanged at elevated temperatures and in a variety of solvents. The results of this detailed study, which demonstrate the significance of non-covalent interactions involving aromatic residues to the determination of the molecular conformation, serve to highlight the suitability of these simple ternary Co(III) complexes to act as models for such interactions.
Original languageEnglish
Pages (from-to)3251-3263
Number of pages13
JournalInorganica Chimica Acta
Volume357
Issue number11
DOIs
Publication statusPublished - 2004

Keywords

  • Chemical bonds
  • Cobalt compounds
  • Ligands
  • Nuclear magnetic resonance
  • Phenylalanine
  • Tyrosine
  • NMR
  • Methyltyrosine
  • Non-covalent bonding
  • Tetradentate ligands
  • Cobalt

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