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首页> 外文期刊>Macromolecules >Design,Development,and Evaluation of Monovinyl Acrylates Characterized by Secondary Functionalities as Reactive Diluents to Diacrylates
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Design,Development,and Evaluation of Monovinyl Acrylates Characterized by Secondary Functionalities as Reactive Diluents to Diacrylates

机译:具有二级功能作为二丙烯酸酯活性稀释剂的丙烯酸单乙烯基酯的设计,开发和评估

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This study focuses on the design and development of novel monovinylic(meth)acrylate monomers with enhanced polymerization kinetics and the evaluation of their performance as reactive diluents in diacrylate systems.Novel(meth)acrylic monomers characterized by several new secondary functionalities are developed in this study and are shown to exhibit reactivities 10-70 fold greater than traditional monoacrylates such as hexyl acrylate.These monomers were designed based on our understanding of interactions between monomer structure,polymerizations kinetics,and polymer properties.Performance of these monovinyl monomers as reactive diluents is also investigated in this study.Copolymerization of these monomers with diacrylates enhanced both the reactivity and the mechanical properties of the diacrylate system.Specifically,while copolymerization of a diacrylate system with traditional monoacrylates such as hexyl acrylate decreases the overall reactivity of the system,its copolymerization with the novel monomers led to comonomer mixtures that were 30-50% more reactive than either of the individual components,with initial polymerization rates increased by as much as 2 times that of the more reactive component.Furthermore,the copolymerization of these novel monovinyl systems with diacrylates also enabled formation of polymers with enhanced mechanical properties over the corresponding diacrylates including a more homogeneous network structure as indicated by a glass transition temperature that was narrowed by up to 55% while increasing the glass transition temperature by as much as 10 °C.
机译:这项研究致力于设计和开发具有增强的聚合动力学的新型单乙烯基(甲基)丙烯酸酯单体,并评估其在二丙烯酸酯体系中作为反应性稀释剂的性能。本研究开发了以几种新的二级功能为特征的新型(甲基)丙烯酸单体并显示出比传统单丙烯酸酯(如丙烯酸己酯)高10-70倍的反应性。这些单体是根据我们对单体结构,聚合动力学和聚合物性质之间相互作用的理解而设计的。这些单体与二丙烯酸酯的共聚反应增强了二丙烯酸酯体系的反应性和机械性能。特别是,当二丙烯酸酯体系与传统的单丙烯酸酯(如丙烯酸己酯)共聚时,会降低体系的整体反应活性,而与新型单体导致共聚单体混合物的反应性比任何一种单独的组分高30-50%,初始聚合速率增加了反应性更高的组分的2倍。此外,这些新型单乙烯基体系与与相应的二丙烯酸酯相比,二丙烯酸酯还能够形成具有增强的机械性能的聚合物,包括更均匀的网络结构,如玻璃化转变温度最多可缩小55%,同时将玻璃化转变温度提高多达10°C。

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