Publication | Open Access
Strong and Selective Anion Binding within the Central Cavity of Molecular Knots and Links
93
Citations
43
References
2015
Year
Circular FeEngineeringMolecular BiologyChemistryMolecular KnotsMolecular Pentafoil KnotKnot TheoryProtein FoldingPentafoil KnotBiophysicsInorganic ChemistryCross-linkChemical BondMolecular ChemistrySupramolecular ChemistryCentral CavityBiomolecular EngineeringHost-guest ChemistrySelective Anion BindingMedicine
A molecular pentafoil knot and doubly and triply entwined [2]catenanes based on circular Fe(II) double helicate scaffolds bind halide anions in their central cavities through electrostatic and CH···X(-) hydrogen-bonding interactions. The binding is up to (3.6 ± 0.2) × 10(10) M(-1) in acetonitrile (for pentafoil knot [2·Cl](PF6)9), making these topologically complex host molecules some of the strongest synthetic noncovalent binders of halide anions measured to date, comparable in chloride ion affinity to silver salts.
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