Publication | Closed Access
Electron-Triggered Metamorphism in Porphyrin-Based Self-Assembled Coordination Polymers
29
Citations
36
References
2016
Year
Supramolecular AssemblyEngineeringElectron-triggered MetamorphismSelf-assemblyMolecular Self-assemblyComplete DissociationPorphyrin-based Supramolecular ArchitectureViologen-centered Electron TransferNatural SciencesCoordination PolymerChemistrySupramolecular ChemistrySupramolecular PhotochemistryBiophysicsBiomolecular EngineeringHost-guest ChemistryPolymers
Viologen-centered electron transfer is used to trigger a complete dissociation of a porphyrin-based supramolecular architecture. In the oxidized state, self-assembly is induced by iterative association of individual porphyrin-based tectons. Dissociation of the self-assembled species is actuated upon changing the redox state of the bipyridium units involved in the tectons from their dicationic state to their radical cation state, the driving force of the disassembling process being the formation of an intramolecularly locked conformation partly stabilized by π-dimerization of both viologen cation radicals.
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