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Styrene–vinyl pyridine diblock copolymers: Synthesis by RAFT polymerization and self‐assembly in solution and in the bulk
Author(s) -
Zamfir Mirela,
Patrickios Costas S.,
Montagne Franck,
Abetz Clarissa,
Abetz Volker,
OssRonen Liat,
Talmon Yeshayahu
Publication year - 2012
Publication title -
journal of polymer science part a: polymer chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.768
H-Index - 152
eISSN - 1099-0518
pISSN - 0887-624X
DOI - 10.1002/pola.25935
Subject(s) - copolymer , chain transfer , polymer chemistry , materials science , polymerization , gel permeation chromatography , raft , monomer , micelle , reversible addition−fragmentation chain transfer polymerization , chemical engineering , styrene , toluene , radical polymerization , polymer , chemistry , organic chemistry , aqueous solution , composite material , engineering
Reversible addition‐fragmentation chain transfer (RAFT) polymerization along with benzyl dithiobenzoate chain transfer agent was employed for the controlled preparation of four diblock copolymers of styrene (St, less polar monomer) and 2‐ or 4‐vinyl pyridine (2VP or 4VP, more polar monomers): St 161 ‐ b ‐2VP 48 , St 161 ‐ b ‐2VP 121 , St 161 ‐ b ‐4VP 76 , and St 161 ‐ b ‐4VP 107 , where the subscripts indicate the experimentally determined degrees of polymerization for each block. These diblock copolymers and their common St homopolymer precursor were characterized in terms of their molecular weights and compositions using gel permeation chromatography and 1 H NMR spectroscopy, respectively. All four diblock copolymers self‐assembled in dilute toluene solutions to form reverse spherical micelles, which were characterized using atomic force microscopy and cryogenic transmission electron microscopy. Both microscopy techniques revealed that the 4VP‐bearing diblock copolymers formed larger micelles than the 2VP‐bearing ones, a result of the greater 4VP‐toluene incompatibility as compared to the 2VP‐toluene one. Finally, films cast from chloroform solutions of the diblocks were investigated in terms of their bulk morphologies using transmission electron microscopy. While the 2VP‐containing block copolymer self‐assembled into a spherical morphology, the 4VP‐containing one with comparable composition and molecular weight formed a cylindrical structure, manifesting the greater 4VP‐St incompatibility as compared to that of the 2VP‐St pair. © 2012 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem, 2012

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