Copolymers incorporated with β-substituted acrylate synthesized by organo-catalyzed group-transfer polymerization

被引:0
作者
Motosuke Imada
Yasumasa Takenaka
Takeharu Tsuge
Hideki Abe
机构
[1] RIKEN Center for Sustainable Resource Science,Bioplastic Research Team
[2] Tokyo Institute of Technology,Department of Materials Science and Engineering
[3] Nippon Shokubai Co.,Research Center, Innovation and Business Development Division
[4] Ltd,undefined
来源
Polymer Journal | 2021年 / 53卷
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摘要
Various copolymers incorporated with β-substituted acrylates, such as alkyl crotonates (e.g., methyl crotonate (MC), ethyl crotonate (EC), isopropyl crotonate (iPC), and n-butyl crotonate (nBC)) and methyl cinnamate (MCin), were synthesized by group-transfer polymerization (GTP) using a silicon-based Lewis acid catalyst. In addition to β-substituted acrylates, α-substituted acrylates (e.g., methyl methacrylate (MMA) and n-butyl methacrylate (nBMA)) were examined as comonomers. Proton nuclear magnetic resonance (1H NMR) spectroscopy and matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF-MS) characterizations of the obtained copolymers revealed that each monomer component was incorporated sufficiently. The thermal stabilities of the resulting copolymers were investigated by dynamic mechanical analysis (DMA), indicating that the glass-transition temperature (Tg) of the copolymers can be widely varied over a relatively high-temperature range by selecting the optimal comonomer. More specifically, the Tg values of poly(MC-random-EC) (MC/EC molar ratio = 50/50), poly(MC-random-nBC) (MC/nBC molar ratio = 50/50), poly(MC-random-MCin) (MC/MCin molar ratio = 54/46), and poly(nBC-random-MCin) (nBC/MCin molar ratio = 56/44) were 173, 130, 216, and 167 °C, respectively.
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页码:989 / 999
页数:10
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  • [1] Webster OW(1983)Group-transfer polymerization. 1. A new concept for addition polymerization with organosilicon initiators J Am Chem Soc. 105 5708-9
  • [2] Hertler WR(1984)Group-transfer polymerization. 3. Lewis acid catalysis Macromolecules 17 1415-7
  • [3] Sogah DY(1987)Group transfer polymerization. Polymerization of acrylic monomers Macromolecules 20 1473-88
  • [4] Farnham WB(1995)Group transfer polymerization of n-butyl acrylate with lewis acid catalysts. 1. kinetic investigation using HgI2 as a catalyst in toluene Macromolecules 28 8035-42
  • [5] RajanBabu TV(1995)Group transfer polymerization of n-butyl acrylate with lewis acid catalysts. 2. Kinetic investigation using the HgI2/Me3SiI catalyst system in toluene and methylene chloride Macromolecules 28 8043-50
  • [6] Hertler WR(2018)Metal‐catalyzed group‐transfer polymerization: a versatile tool for tailor‐made functional (Co)polymers Chem Eur J 24 509-18
  • [7] Sogah DY(2009)Strong Brønsted acid as a highly efficient promoter for group transfer polymerization of methyl methacrylate Macromolecules 42 8747-50
  • [8] Webster OW(2013)Recent progress in organocatalytic group transfer polymerization Polym Chem. 4 4278-91
  • [9] Sogah DY(1953)Polymerization of esters of cinnamic acid J Am Chem Soc. 75 3272-3
  • [10] Hertler WR(1992)Synthesis of substituted polymethylenes from alkyl cinnamates bearing bulky alkyl ester groups Eur Polym J. 28 213-7