Synthesis of PPV-b-PEG block copolymers via CuAAC conjugation

[Display omitted] •PPV polymers with well-defined endgroups and chain length have been synthesized.•Clickable endgroups are embedded in the anionic polymerization initiator.•PPV-PEG block copolymers were synthesized via CuAAC reactions.•The obtained block copolymers show self-assembly behavior. The...

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Veröffentlicht in:European polymer journal 2014-06, Vol.55, p.114-122
Hauptverfasser: Cosemans, Inge, Vandenbergh, Joke, D’Olieslaeger, Lien, Ethirajan, Anitha, Lutsen, Laurence, Vanderzande, Dirk, Junkers, Tanja
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Sprache:eng
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Zusammenfassung:[Display omitted] •PPV polymers with well-defined endgroups and chain length have been synthesized.•Clickable endgroups are embedded in the anionic polymerization initiator.•PPV-PEG block copolymers were synthesized via CuAAC reactions.•The obtained block copolymers show self-assembly behavior. The synthesis of amphiphilic rod-coil block copolymers with a poly(p-phenylene vinylene) (PPV) rod-like block using a Click chemistry approach is investigated and a facile reaction pathway towards poly(p-phenylene vinylene)-block-poly(ethylene glycol) (PPV-b-PEG) block copolymers is presented. To reach this aim, an alkyne-functionalized PPV block (synthesized from anionic sulfinyl precursor route polymerization) was synthesized and subsequently coupled to azide-functionalized poly(ethylene glycol) of different lengths. Self-assembly of these materials in aqueous solution demonstrate successful micelle formation with core–shell morphology and different sizes for these PPV-b-PEG block copolymers as is confirmed by TEM and DLS measurements respectively.
ISSN:0014-3057
1873-1945
DOI:10.1016/j.eurpolymj.2014.03.016