Abstract
Copper-catalyzed living radical polymerization (LRP) of styrene was carried out in the presence of fructose as a reducing agent for Cu(II) by using either 1-chloro-1-phenyl ethane (1-PECl), ethyl-2-bromoisobutyrate (EiBr) or methyl-2-bromopropionate (MBP) as an initiator and N,N,N′,N″, N″-pentamethyldiethylenetriamine (PMDETA) as ligand at 110°C. Kinetic experiments were carried out in order to reveal the effect of fructose concentration on copper-catalyzed LRP of St. This technique was successfully applied for the preparation of homo-polymers (linear and star-type polystyrene (PS)) and corresponding block co-polymers (PS-b-PMMA). The polymers thus obtained were characterized using GPC, 1H-NMR and MALDI-TOF measurements. © 2007 VSP.
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Dag, A., Mert, H., Dervaux, B., Du Prez, F. E., Tunca, U., & Hizal, G. (2007). Fructose as a reducing agent for in situ generation of Cu(I) species via an electron-transfer reaction in copper-catalyzed living/controlled radical polymerization of styrene. Designed Monomers and Polymers, 10(5), 425–438. https://doi.org/10.1163/156855507781833594
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