Direct synthesis of novel acidic and zwitterionic block copolymers via TEMPO-mediated living free-radical polymerization

Citation
Li. Gabaston et al., Direct synthesis of novel acidic and zwitterionic block copolymers via TEMPO-mediated living free-radical polymerization, POLYMER, 40(16), 1999, pp. 4505-4514
Citations number
20
Categorie Soggetti
Organic Chemistry/Polymer Science
Journal title
POLYMER
ISSN journal
00323861 → ACNP
Volume
40
Issue
16
Year of publication
1999
Pages
4505 - 4514
Database
ISI
SICI code
0032-3861(199907)40:16<4505:DSONAA>2.0.ZU;2-K
Abstract
A series of novel acidic and zwitterionic water-soluble diblock copolymers has been synthesized directly (i.e. without protecting group chemistry) via the TEMPO-mediated living free-radical polymerization of various hydrophil ic styrenic monomers. Ln all syntheses TEMPO-capped poly(sodium 4-styrenesu lfonate) was utilized as a well-defined macro-initiator. Chain extension of this macro-initiator with 2-vinylpyridine proved very inefficient. Using 4 -vinylbenzyltrimethylammonium chloride as comonomer led to an insoluble zwi tterionic complex, whereas water-soluble zwitterionic block copolymers were obtained wi th 4-(dimethylamino)methylstyrene. Micellar solutions were obt ained with the less hydrophilic 4-vinylbenzyl alcohol comonomer. A series o f strong acid-weak acid block copolymers with varying sodium 4-styrene-sulf onate contents (20-80 mol%) were prepared via chain extension of the macro- initiator using sodium 4-styrenecarboxylate. These acidic block copolymers undergo reversible pH-induced aggregation in aqueous solution and C-13 n.m. r. spectroscopy studies suggest that the carboxylic acid block forms the hy drophobic micellar core. Dynamic light scattering studies indicate intensit y-average micelle diameters of 20-60 nm. (C) 1999 Elsevier Science Ltd. All rights reserved.