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A Theoretical Exploration of the Potential of ICAR ATRP for One‐ and Two‐Pot Synthesis of Well‐Defined Diblock Copolymers
Authors:Carolina Toloza Porras  Dagmar R D'hooge  Paul H M Van Steenberge  Marie‐Françoise Reyniers  Guy B Marin
Institution:Laboratory for Chemical Technology, Ghent University, Krijgslaan 281 (S5), Gent, Belgium
Abstract:Kinetic Monte Carlo simulations are performed to investigate the capability of ICAR ATRP for the synthesis of well‐defined poly(isobornyl acrylate‐b‐styrene) block(‐like) copolymers using one‐pot semi‐batch and two‐pot batch procedures. The block copolymer quality is quantified via a block deviation (〈BD〉) value. For 〈BD〉 values lower than 0.30, the quality is defined as good and for well‐chosen polymerization conditions the formation of homopolymer chains upon addition of the second monomer can be suppressed. A better block quality is obtained when isobornyl acrylate is polymerized first. For lower Cu levels a one‐pot semi‐batch procedure allows a much faster ATRP and better control over the polymer properties than a two‐pot batch procedure.
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Keywords:atom transfer radical polymerization (ATRP)  block copolymers  diffusion  kinetic Monte Carlo  kinetics (polym  )
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