In situ synthesis of thermo-responsive ABC triblock terpolymer nano-objects by seeded RAFT polymerizationElectronic supplementary information (ESI) available: Text showing the chemical structure of ECT and Fig. S1 and S2 showing the TEM images of the seed-nanoparticles of PS135-b-PDMA80-TTC1212 and the PS135-b-PDMA80-b-PNIPAM368 triblock terpolymer nanospheres. See DOI: 10.1039/c4py00510d

RAFT polymerization of N -isopropylacrylamide under heterogeneous conditions in the presence of diblock copolymer nano-objects of polystyrene- block -poly( N , N -dimethylacrylamide) trithiocarbonate (PS- b -PDMA-TTC) with the Z -group RAFT terminal on the outer side of the solvophilic poly( N , N -...

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Bibliographic Details
Main Authors Qu, Yaqing, Huo, Fei, Li, Quanlong, He, Xin, Li, Shentong, Zhang, Wangqing
Format Journal Article
LanguageEnglish
Published 26.08.2014
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Summary:RAFT polymerization of N -isopropylacrylamide under heterogeneous conditions in the presence of diblock copolymer nano-objects of polystyrene- block -poly( N , N -dimethylacrylamide) trithiocarbonate (PS- b -PDMA-TTC) with the Z -group RAFT terminal on the outer side of the solvophilic poly( N , N -dimethylacrylamide) (PDMA) block is performed. This heterogeneous RAFT polymerization, which is named seeded RAFT polymerization, affords the in situ synthesis of the polystyrene- block -poly( N , N -dimethylacrylamide)- block -poly( N -isopropylacrylamide) (PS- b -PDMA- b -PNIPAM) triblock terpolymer nano-objects. The molecular weight of the triblock terpolymer linearly increases with the monomer conversion during the seeded RAFT polymerization. The morphology of the PS- b -PDMA- b -PNIPAM triblock terpolymer nano-objects is merely duplicated from the seed of the PS- b -PDMA-TTC diblock copolymer, which is the binary mixture of nanospheres and nanorods, when the polymerization degree (DP) of the poly( N -isopropylacrylamide) (PNIPAM) block is low or moderately large. When the DP of the PNIPAM block is relatively large, the triblock terpolymer nanospheres are formed. The size of the PS- b -PDMA- b -PNIPAM triblock terpolymer nano-objects slightly increases initially and subsequently decreases with the monomer conversion during the seeded RAFT polymerization. In water at temperature above the phase-transition temperature (PTT) of the PNIPAM block, the PNIPAM chains deposit onto the polystyrene (PS) core to form the triblock terpolymer multicompartment nano-objects containing a microphase separated solvophobic core of PS/PNIPAM and a solvophilic PDMA corona. Our findings are anticipated to be useful in preparation of concentrated ABC triblock terpolymer nano-objects. Synthesis of thermo-responsive ABC triblock terpolymer nano-objects by seeded RAFT polymerization is achieved. At temperature above LCST, the triblock terpolymer nano-objects convert into multicompartment nanoparticles.
Bibliography:PNIPAM
b
135
Electronic supplementary information (ESI) available: Text showing the chemical structure of ECT and Fig. S1 and S2 showing the TEM images of the seed-nanoparticles of PS
368
80
10.1039/c4py00510d
triblock terpolymer nanospheres. See DOI
PDMA
-
TTC1212 and the PS
ISSN:1759-9954
1759-9962
DOI:10.1039/c4py00510d