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Synthesis of di‐ and tetra‐adducts by addition of polystyrene macroradicals onto fullerene C<sub>60</sub>
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References
2004
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Materials ScienceAbstract Br‐terminated PolystyrenesExperimental SynthesisEngineeringMacromolecular EngineeringC 60Polymer ScienceLow PolydispersitiesFullereneOrganic ChemistryChemistryPolystyrene MacroradicalsPolymerization KineticsHybrid MaterialsPolymer ReactionPolymer ChemistryPolymer SynthesisPolymers
Abstract Br‐terminated polystyrenes of controlled molar masses and low polydispersities prepared by atom transfer radical polymerization (ATRP) can be converted to macroradicals using an appropriate catalytic complex (CuBr/bipyridine/100 °C). The addition of this macroradicals PS° to 6–6 bonds of C 60 follows a specific atom transfer radical addition mechanism that favors the grafting of even number of chains onto the fullerene core. This peculiar mechanism, resulting from the properties of C 60 , offers an easy synthetic route toward well‐defined di‐ and tetra‐adducts. In these adducts the disturbance of the electronic structure of the fullerene is kept at its minimum, as only one double bond needs to be opened on the C 60 to add two PS chains and only two double bonds are converted to single bonds in the tetra‐adduct. © 2004 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 42: 3456–3463, 2004
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