To implement pillarplex salts as building units for network materials, the arrangement of these supramolecules in the solid-state was investigated in terms of crystal arrangement as a function of metal, anion and non-covalent interactions. Additionally, modification of the macrocyclic ligand by introduction of functional groups or modification on guest molecules of mechanical-interlocked molecules by encapsulation of end-functionalised alkyl chains or the introduction of sterically demanding stopper molecules was examined.
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To implement pillarplex salts as building units for network materials, the arrangement of these supramolecules in the solid-state was investigated in terms of crystal arrangement as a function of metal, anion and non-covalent interactions. Additionally, modification of the macrocyclic ligand by introduction of functional groups or modification on guest molecules of mechanical-interlocked molecules by encapsulation of end-functionalised alkyl chains or the introduction of sterically demanding sto...
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