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Noncovalent Assembly of [2]Rotaxane Architectures
Christopher A Hunter1, Caroline M R Low2, Martin J Packer1
1Centre for Chemical Biology Krebs Institute for Biomolecular Science Department of Chemistry University of Sheffield Sheffield S3 7HF (UK) Fax: (+44) 114-273-8673.
Abstract:
Reversible zinc-pyridine coordination and hydrogen-bonding interactions have been used to assemble a [2]rotaxane from three components. Cooperativity in the macrocyclization process that results in the porphyrin dimer makes the system exceptionally stable. However, the kinetic lability of the zinc-porphyrin interaction means the dimer is in dynamic equilibrium with its monomer, and this has been exploited in the construction of a [2]rotaxane.
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