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首页> 外文期刊>Macromolecular rapid communications: Publishing the newsletters of the European Polymer Federation >Cu(II)-Mediated Atom Transfer Radical Polymerization of Methyl Methacrylate via a Strategy of Thermo-Regulated Phase-Separable Catalysis in a Liquid/Liquid Biphasic System: Homogeneous Catalysis, Facile Heterogeneous Separation, and Recycling
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Cu(II)-Mediated Atom Transfer Radical Polymerization of Methyl Methacrylate via a Strategy of Thermo-Regulated Phase-Separable Catalysis in a Liquid/Liquid Biphasic System: Homogeneous Catalysis, Facile Heterogeneous Separation, and Recycling

机译:在液体/液体双相系统中,通过热调节相分离催化的策略,通过Cu(II)介导的甲基丙烯酸甲酯的原子转移自由基聚合:均相催化,便捷的多相分离和回收

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摘要

A strategy of thermo-regulated phase-separable catalysis (TPSC) is applied to the Cu(II)- mediated atom transfer radical polymerization (ATRP) of methyl methacrylate (MMA) in a p-xylene/PEG-200 biphasic system. Initiators for continuous activator regeneration ATRP (ICAR ATRP) are used to establish the TPSC-based ICAR ATRP system using water-soluble TPMA as a ligand, EBPA as an initiator, CuBr 2 as a catalyst, and AIBN as a reducing agent. By heating to 70 °C, unlimited miscibility of both solvents is achieved and the polymerization can be carried out under homogeneous conditions; then on cooling to 25 °C, the mixture separates into two phases again. As a result, the catalyst complex remains in the PEG-200 phase while the obtained polymers stay in the p-xylene phase. The catalyst can therefore be removed from the resultant polymers by easily separating the two different layers and can be reused again. It is important that well-defined PMMA with a controlled molecular weight and narrow molecular weight distribution could be obtained using this TPSC-based ICAR ATRP system.
机译:在对二甲苯/ PEG-200双相体系中,将热调节相分离催化(TPSC)策略应用于甲基丙烯酸甲酯(MMA)的Cu(II)介导的原子转移自由基聚合(ATRP)。用于连续活化剂再生的引发剂ATRP(ICAR ATRP)用于建立基于TPSC的ICAR ATRP系统,该体系使用水溶性TPMA作为配体,EBPA作为引发剂,CuBr 2作为催化剂,AIBN作为还原剂。通过加热到70°C,可以实现两种溶剂的无限溶混性,并且可以在均相条件下进行聚合。然后冷却至25°C,混合物再次分离为两相。结果,催化剂络合物保留在PEG-200相中,而获得的聚合物保留在对二甲苯相中。因此,可以通过容易地将两个不同的层分离而将催化剂从所得聚合物中除去,并且可以再次使用。重要的是,使用这种基于TPSC的ICAR ATRP系统,可以获得分子量可控且分子量分布窄的良好PMMA。

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