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Atomically accurate structural tailoring of thiacalix[4]arene-protected copper(II)-based metallamacrocycles.

Wen-Lei MuLinlin WuWei-Dong YuXiao-Yi YiYan-Mei NieChao Liu
Published in: Dalton transactions (Cambridge, England : 2003) (2023)
Accurate manipulation of ligands at specific sites in robust clusters is attractive but difficult, especially for those ligands that coordinate in intricate binding patterns. By linking the shuttlecock-like {Cu 4 (μ 4 -Cl)TC4A} motif and the phenylphosphate (PhPO 3 2- ) ligand, we elaborately design and synthesize two Cu(II)-thiacalix[4]arene metallamacrocycles (MMCs), namely Cu 12 L 3 and Cu 16 L 4 , which have regular triangular and quadrilateral topologies, respectively. While keeping the core intact, the Cl - and PhPO 3 2- in those two MMCs, which coordinated in a μ 4 -bridging fashion, can be accurately substituted with salicylate ligands. Theoretical calculations have been carried out to reveal the effect of ligand tailoring on the electronic structure of clusters. Structural regulation can affect the catalytic activity of these clusters, which has been verified by using the clusters as catalysts for selective sulfide oxidation.
Keyphrases
  • metal organic framework
  • aqueous solution
  • high resolution
  • water soluble
  • mass spectrometry
  • highly efficient
  • hydrogen peroxide
  • transition metal
  • transcription factor