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Polymer dispersity modulation by statistical copolymerization of (α-alkyl)acrylate monomers with disparate reactivity: enhanced monomer conversion and tailored dispersity for dielectric elastomer application
作者:Keling Hu, Yaojing Zhang, Shun Liu, Chengkun Su, Zhengfeng Ma,* Yang Wu, and Bin Li*
關(guān)鍵字:Polymer dispersity, Statistical copolymerization, (α-Alkyl)Acrylate, Dielectric elastomer
論文來(lái)源:期刊
具體來(lái)源:European Polymer Journal
發(fā)表時(shí)間:2024年

Polymer dispersity (D) is an important parameter in determining polymer properties. We report a new strategy for D modulation by statistical copolymerizing steric-hindered itaconates with methacrylate and acrylate monomers via organocatalyzed controlled radical polymerization. Due to the disparate monomer reactivity, D values can be tunable in a broad range (1.1-1.6) in a batch system. This strategy has demonstrated the sequential and topological control and D modulations, serving as a model tool for D modulation in any segment of A-B diblock, B-A-B and A-B-A triblock, and 3-arm star A-B diblock copolymers. The unique aspects of this method are that the segment after D modulation can initiate polymerization of various types of monomers (e.g., methacrylate, acrylate) by the labile tertiary carbon-iodide chain-end without any external assistance or special initiator and monomer selection, the metal-free nature and the renewable substitution of petroleum-based methacrylate and acrylate monomers with bio-based itaconates without sacrificing inherent properties. This work broadens the application scope of D modulation to many other emerging technologies, such as antifreezing thermoplastic dielectric elastomers used as film capacitors in the field of energy storage.