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首页> 外文期刊>Macromolecules >Core-First Synthesis of Three-Armed Star-Shaped Polymers by Rare Earth Metal-Mediated Group Transfer Polymerization
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Core-First Synthesis of Three-Armed Star-Shaped Polymers by Rare Earth Metal-Mediated Group Transfer Polymerization

机译:稀土金属介导的三臂星形聚合物的核心 - 首先合成三臂金属介导的基团转移聚合

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摘要

Addressing polymer topologies is one of the key methods for tailoring polymer properties. Herein, we report for the first time on the core-first synthesis of three-armed star-shaped polymers with adjustable molecular weights via rare earth metal-mediated group transfer polymerization (REM-GTP). Based on the versatility of REM-GTP, enabling polymerization of a broad variety of functional monomers not accessible via conventional techniques, a novel and fast method toward directed polymeric structures was established. Therefore, the trinuclear catalyst was synthesized by 3-fold C-H bond activation of 1,3,5-tris(3,5-dimethy1-4-pyridinyObenzene using Cp2YCH2TMS(THF) as precursor complex. Kinetic investigations in comparison to monometallic cp(2)Y(sym-collidinyl) on the polymerization of diethyl vinylphosphonate (DEVP) and 2-isopropeny1-2-oxazoline (IPOx) evidenced activity of all three metal centers. However, in REM-GTP generally occurring incomplete initiation provoked by the interaction of initiators and monomers, potential impurities, and applied reaction conditions led to a distribution of stars, long linear, and short linear polymers originating from chain growth in three, two, and one direction, respectively. For further visualization PIPOx produced by the trinuclear complex was converted into P(IPOx-graft-2-ethyl-2-oxazoline) using living cationic ring-opening polymerization. AFM scans confirmed the occurrence of the three types of polymer. Additionally, comparable solely linear PDEVP and PIPOx were synthesized by dinuclear complexes generated by C-H bond activation of 1,3-bis(3,5-dimethyl-4-pyridinyl)benzene and 1,4-bis(3,5-dimethyl-4-pyridinyl)benzene using Cp2YCH2TMS(THF) as precursor. In the case of PDEVP, the mass fraction of the low molecular weight polymer, being formed by chain growth in one direction, was accessible via GPC analysis. Further stochastic examinations on the incomplete initiation for multinuclear complexes corroborated our findings accurately.
机译:寻址聚合物拓扑是剪裁聚合物性质的关键方法之一。在此,我们首次报告三臂首次合成三臂的星形聚合物,通过稀土金属介导的基团转移聚合(REM-GTP)具有可调节的分子量。基于REM-GTP的多功能性,建立了通过常规技术,新的和快速方法朝向定向聚合物结构的往往可用的各种功能性单体的聚合。因此,三核催化剂通过3倍的CH键活化的1,3,5-三(3,5-二甲基-4-吡啶苯苯苯苯苯苯苯并)合成,使用CP2CH2TMS(THF)作为前体复合物。与MoneFormallic CP相比的动力学研究(2 )Y(Sym-Collidinyl)对二乙基磷酸二乙基膦酸盐(Devp)和2-异丙烯酰胺1-2-恶唑啉(iPox)的聚合,证明了所有三种金属中心的活性。然而,在REM-GTP中通常发生不完全的启动,通过相互作用引发引发剂和单体,潜在的杂质和施加的反应条件导致恒星,长线性和短线性聚合物的分布分别分别为三个,两个和一个方向的链延长。对于由三核络合物产生的进一步可视化哌氏菌属使用活阳离子开环聚合转化为p(ipox-移植物-2-乙基-2-恶唑啉)。AFM扫描证实了三种类型的聚合物的发生。另外,可相当的线性pdevp和ppox通过CP2YCH2TMS(THF)由1,3-双(3,5-二甲基-4-吡啶基)苯和1,4-双(3,5-二甲基-4-吡啶基)苯(THF)产生的二核复合物合成了二核复合物(3,5-二甲基-4-吡啶基)苯(THF) )作为前体。在PDEVP的情况下,通过GPC分析可以通过PDEVP,通过链条生长形成的低分子量聚合物的质量分数。对多核复合物不完全发起的进一步随机检查精确地证实了我们的研究结果。

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  • 来源
    《Macromolecules》 |2017年第17期|共8页
  • 作者单位

    Tech Univ Munich Catalysis Res Ctr Wacker Lehrstuhl Makromol Chem Lichtenbergstr 4 D-85748 Garching Germany;

    Tech Univ Munich Catalysis Res Ctr Wacker Lehrstuhl Makromol Chem Lichtenbergstr 4 D-85748 Garching Germany;

    Tech Univ Munich Catalysis Res Ctr Wacker Lehrstuhl Makromol Chem Lichtenbergstr 4 D-85748 Garching Germany;

    Tech Univ Munich Catalysis Res Ctr Wacker Lehrstuhl Makromol Chem Lichtenbergstr 4 D-85748 Garching Germany;

    Tech Univ Munich Catalysis Res Ctr Ernst Otto Fischer Str 1 D-85748 Garching Germany;

    Tech Univ Munich Catalysis Res Ctr Wacker Lehrstuhl Makromol Chem Lichtenbergstr 4 D-85748 Garching Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高分子化学(高聚物);
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