Publication | Closed Access
One-Step Multifunctionalization of Random Copolymers via Self-Assembly
122
Citations
5
References
2003
Year
EngineeringMolecular Self-assemblyChemistryPrecision MacromoleculePolymer ChemistryMaterials ScienceRandom Copolymer FunctionalizationMultifunctionalization StrategyMolecular EngineeringSupramolecular PolymerRandom CopolymersBiomolecular EngineeringBlock Co-polymersNatural SciencesSelf-assemblyPolymer SciencePolymer Self-assemblyPolymer ReactionPolymer Synthesis
A novel methodology for random copolymer functionalization based on a noncovalent, one-step, multifunctionalization strategy has been developed. Random copolymers possessing both palladated-pincer complexes and diaminopyridine moieties (hydrogen-bonding entities) have been synthesized using ring-opening metathesis polymerization. Noncovalent functionalization of the resultant copolymers is accomplished via (1) directed self-assembly, (2) multistep self-assembly, and (3) one-step orthogonal self-assembly. This system shows complete specificity of each recognition motif for its complementary unit, with no observable changes in the association constants regardless of the degree of functionalization.
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