Branched methacrylate copolymers from multifunctional comonomers: the effect of multifunctional monomer functionality on polymer architecture and properties
- 25 September 2003
- journal article
- research article
- Published by Royal Society of Chemistry (RSC) in Journal of Materials Chemistry
- Vol. 13 (11) , 2711-2720
- https://doi.org/10.1039/b306037n
Abstract
Soluble, branched (meth)acrylic copolymers have been synthesised via facile, one-step, batch solution polymerisations taken to high conversion. Methyl methacrylate has been copolymerised with a number of multifunctional comonomers using a chain transfer agent to prevent gelation. A variety of soluble, branched copolymer architectures have been synthesised using multifunctional monomers containing between two and six acrylate functional groups. Independent of polymer composition, all copolymers were proven to be branched with broader molecular weight distributions compared to linear analogues. The molecular weights, Mark–Houwink constants and Tg's all varied systematically depending on the functionality and concentration of the multifunctional monomer copolymerised. Although the polymer architectures are complex, this methodology is pragmatic, highly practical and very convenient. The need for high control of polymer architecture via controlled radical polymerisation for satisfying applications is questioned. It is proposed that precise control may not be necessary for many applications, whereas new, heterogeneous structures via pragmatic routes may be sufficient and more easily exploited.Keywords
This publication has 26 references indexed in Scilit:
- Hyperbranched PolymersPublished by Springer Nature ,2007
- Atom Transfer Radical Polymerization of Styrene Using a Novel Octafunctional Initiator: Synthesis of Well-Defined Polystyrene StarsMacromolecules, 1998
- Hyperbranched polymers 10 years afterJournal of Polymer Science Part A: Polymer Chemistry, 1998
- Relaxation processes in hyperbranched polyesters: influence of terminal groupsPolymer, 1997
- Preparation of Hyperbranched Polyacrylates by Atom Transfer Radical Polymerization. 2. Kinetics and Mechanism of Chain Growth for the Self-Condensing Vinyl Polymerization of 2-((2-Bromopropionyl)oxy)ethyl AcrylateMacromolecules, 1997
- Hyperbranched polyesters: End group modification and propertiesMacromolecular Symposia, 1996
- Hyperbranched Poly(ether ketones): Manipulation of Structure and Physical PropertiesMacromolecules, 1996
- Self-Condensing Vinyl Polymerization: An Approach to Dendritic MaterialsScience, 1995
- Role of End Groups on the Glass Transition of Hyperbranched Polyphenylene and Triphenylbenzene DerivativesMacromolecules, 1994
- All-aromatic hyperbranched polyesters with phenol and acetate end groups: synthesis and characterizationMacromolecules, 1993