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首页> 外文期刊>Macromolecules >Synthesis of Hyperbranched Polymers with Pendent Norbornene Functionalities via RAFT Polymerization of a Novel Asymmetrical Divinyl Monomer
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Synthesis of Hyperbranched Polymers with Pendent Norbornene Functionalities via RAFT Polymerization of a Novel Asymmetrical Divinyl Monomer

机译:通过新型不对称二乙烯基单体的RAFT聚合合成具有侧链降冰片烯功能的超支化聚合物

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Hyperbranched polymers with numerous pendent norbornene functionalities have been synthesized via the radical polymerization of a novel asymmetrical divinyl monomer hearing a higher reactivity methacrylate group and it lower reactivity norbornene group. Mediated by a rapid reversible addition-fragmentation chain transfer (RAFT) equilibrium, the concentration of polymeric chain radicals is decreased, and thus the gelation did not occur until higher monomer conversions (ca. 90%). An increase in reaction temperature call also significantly promote the formation of the hyperbranched structure owing to the decreased stability of the intermediate radicals derived from the norbornene group, which was confirmed by a model copolymerization system of two single vinyl monomers with similar structures to the vinyl groups in the asymmetrical divinyl monomer. Furthermore, Tri-SEC and conventional Sin-SEC as well as H-1 NMR. analyses show that hyperbranched structures and higher molecular weights were formed at moderate-to-high monomer conversion stage, whereas the early polymerization stage only afforded linear polymers with a relatively narrower molecular weight distribution.
机译:通过具有较高反应性甲基丙烯酸酯基团和较低反应性降冰片烯基团的新型不对称二乙烯基单体的自由基聚合反应,已经合成了具有许多侧链降冰片烯官能度的超支化聚合物。在快速可逆的加成-断裂链转移(RAFT)平衡的介导下,聚合物链自由基的浓度降低,因此直到更高的单体转化率(约90%)才发生凝胶化。由于降冰片烯基衍生的中间基团的稳定性降低,反应温度升高也显着促进了超支链结构的形成,这由具有与乙烯基相似结构的两种单一乙烯基单体的模型共聚体系所证实。在不对称二乙烯基单体中。此外,Tri-SEC和常规Sin-SEC以及H-1 NMR。分析表明,在中高单体转化阶段会形成超支链结构和较高的分子量,而早期聚合阶段只能提供分子量分布相对较窄的线性聚合物。

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