Controlled Radical Polymerization of Styrene and Methyl Acrylate in the Presence of Reversible Addition-Fragmentation Chain Transfer Agents, Phenylethyl Phenyl Dithioacetate and Phenyldithioacetic Acid


Autoria(s): Goh, Y. K.; Whittaker, M. R.; Monteiro, M. J.
Data(s)

01/01/2005

Resumo

The use of phenyldithioacetic acid (PDA) in homopolymerizations of styrene or methyl acrylate produced only a small fraction of chains with dithioester end groups. The polymerizations using 1-phenylentyl phenyldithioacetate (PEPDTA) and PDA in the same reaction showed that PDA had little or no influence on the rate or molecular weight distribution even when a 1:1 ratio is used. The mechanistic pathway for the polymerizations in the presence of PDA seemed to be different for each monomer. Styrene favors addition of styrene to PDA via a Markovnikov type addition to form a reactive RAFT agent. The polymer was shown by double detection SEC to contain dithioester end groups over the whole distribution. This polymer was then used in a chain extension experiment and the M-n was close to theory. A unique feature of this work was that PDA could be used to form a RAFT agent in situ by heating a mixture of styrene and PDA for 24 h at 70 degrees C and then polymerizing in the presence of AIBN to give a linear increase in Mn and low values of PDI (< 1.14). In the case of the polymerization of MA with PDA, the mechanism was proposed to be via degradative chain transfer. (c) 2005 Wiley Periodicals, Inc.

Identificador

http://espace.library.uq.edu.au/view/UQ:75409

Idioma(s)

eng

Publicador

John Wiley & Sons Inc

Palavras-Chave #Kinetics (polym.) #Living Polymerization #Radical Polymerization #Reversible Addition Fragmentation Chain Transfer (raft) #Polymer Science #Transfer Raft Polymerization #Cumyl Dithiobenzoate #Rate Coefficients #Homopolymerizations #Termination #Polymers #Design #C1 #250501 Synthesis of Macromolecules #680303 Polymeric materials (e.g. paints) #030305 Polymerisation Mechanisms #030306 Synthesis of Materials #0303 Macromolecular and Materials Chemistry
Tipo

Journal Article