Bromoform-assisted aqueous free radical polymerisation: a simple, inexpensive route for the preparation of block copolymers

In the quest for commercially relevant block copolymer additives, for which overall average molecular composition is key but molar mass distribution is of little importance, we present a straightforward, sulfur- and metal-free aqueous route to block copolymers using commercially available starting m...

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Veröffentlicht in:Polymer chemistry 2021-08, Vol.12 (3), p.4317-4325
Hauptverfasser: Hutchins-Crawford, Helena J, Ninjiaranai, Padarat, Derry, Matthew J, Molloy, Robert, Tighe, Brian J, Topham, Paul D
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Sprache:eng
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Zusammenfassung:In the quest for commercially relevant block copolymer additives, for which overall average molecular composition is key but molar mass distribution is of little importance, we present a straightforward, sulfur- and metal-free aqueous route to block copolymers using commercially available starting materials. Based on synthetic techniques first described in the 1950s for hydrophobic monomers in organic solvents, we have shown that bromoform (CHBr 3 ) can be used to create block copolymers. Unlike common bromine-containing chain transfer agents such as carbon tetrabromide (CBr 4 ), bromoform is partially water-miscible and relatively inexpensive. Herein, we demonstrate this new aqueous-based technology using N , N -dimethylacrylamide (DMA) and N -isopropylacrylamide (NIPAM) as exemplar monomers to synthesise PDMA- b -PNIPAM block copolymers of varying composition directly in water. This study demonstrates the potential for such a simple, inexpensive route to functional block copolymers where further research to decipher the detailed mechanism and true potential of this technique will be of great value. Synthesis of 'uncontrolled' commercially-relevant block copolymers by metal- and sulfur-free, bromoform-assisted polymerisation.
ISSN:1759-9954
1759-9962
DOI:10.1039/d1py00672j