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首页> 外文期刊>Macromolecular chemistry and physics >Kinetic Study on the Catalytic Effect of Ionic Liquids on the Polymerization of Methyl Methacrylate Co-initiated by Imine Bases
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Kinetic Study on the Catalytic Effect of Ionic Liquids on the Polymerization of Methyl Methacrylate Co-initiated by Imine Bases

机译:离子液体对亚胺碱共引发的甲基丙烯酸甲酯聚合反应动力学的动力学研究

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摘要

The polymerization of methyl methacrylate (MMA) co-initiated by imine bases (IBA) is significantly accelerated by ionic liquids (ILs). IL traces added to an imine base/MMA mixture lead to both a significant decrease of the IBA polymerization activation temperature (as well as the Arrhenius activation energy) and an increase of the polymerization rate. The radical character of the polymerization is proved by copolymerization experiments of MMA with methacrylonitrile and comparison with literature known copolymerization parameters. The polymerization kinetics and temperature dependence of this process in the presence of the IL are quantified by the polymerization rate law, revealing the tremendous impact of the IL on the monomer consumption. The mechanistic interpretations are supported by DFT calculations. The activation of the IBA polymerization is strongly dependent on the IL interaction strengths with the IBA components, as suggested by correlation of k(P) with the empirically determined Kamlet-Taft parameters alpha and beta of the IL. Complex interaction events are responsible for the acceleration.
机译:由亚胺碱(IBA)共引发的甲基丙烯酸甲酯(MMA)的聚合反应通过离子液体(IL)显着加速。添加到亚胺碱/ MMA混合物中的IL痕迹会导致IBA聚合活化温度(以及Arrhenius活化能)的显着降低和聚合速率的增加。通过MMA与甲基丙烯腈的共聚实验并与文献中已知的共聚参数进行比较,证明了聚合的自由基特性。在IL存在下,该方法的聚合动力学和温度依赖性通过聚合速率定律定量,揭示了IL对单体消耗的巨大影响。力学解释受DFT计算支持。 IBA聚合的激活很大程度上取决于IL与IBA组分的相互作用强度,这是通过k(P)与凭经验确定的IL的Kamlet-Taft参数α和β的相关性来表明的。复杂的交互事件是加速的原因。

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