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Chirality-Driven Self-Assembly of Discrete, Homochiral Fe II 2 L 3 Cages.

Bin SunEva J MeeusFelix J de ZwartEduard O BobylevTiddo Jonathan MooibroekSimon MathewJoost N H Reek
Published in: Chemistry (Weinheim an der Bergstrasse, Germany) (2023)
Coordination chemistry is a powerful method to synthesize supramolecular cages with distinct features that suit specific applications. This work demonstrates the synthesis of discrete, homochiral Fe II 2 L 3 cages via chirality-driven self-assembly. Specifically, the installation of chirality - at both the vertices and ligand backbones - allows the formation of discrete, homochiral Fe II 2 L 3 cages of different sizes via stereochemical control of the iron(II) centers. We observed that larger cages require multiple chiral centra (chiral ligands and vertices). In contrast, the formation of smaller cages is stereoselective with solely chiral ligands. The latter cages can also be formed from two chiral subcomponents, but only when they have matching chirality. Single-crystal X-ray diffraction of these smaller Fe II 2 L 3 cages revealed several non-covalent interactions as a driving force for narcissistic chiral self-sorting. This expected behavior was confirmed utilizing the shorter ligands in racemic form, yielding discrete, homochiral Fe II 2 L 3 cages formed in enantiomeric pairs.
Keyphrases
  • capillary electrophoresis
  • ionic liquid
  • metal organic framework
  • magnetic resonance
  • magnetic resonance imaging
  • computed tomography
  • mass spectrometry
  • single molecule
  • aqueous solution
  • crystal structure