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Synthesis and application of epoxy-ended hyperbranched polymers

机译:环氧树脂结束超支化聚合物的合成与应用

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摘要

Epoxy-ended hyperbranched polymers (EHPs), as important type of functional thermosetting hyperbranched polymers, have attracted broad and continuing interest from both academic and industrial researchers. Benefiting from their high-crosslinking ability, void-containing topological structure and very low viscosity, EHPs have been widely applied in reinforcing and toughening diglycidyl ether of bisphenol-A (DGEBA) and in solvent-free or environmentally-friendly coatings. Therefore, the design and synthesis of EHPs provide a robust tool for controlling the interfacial interaction between EHPs and DGEBA to finally gain excellent comprehensive performance. In this review, the perspectives and recent advances of preparation methods, performance control and promising applications of various EHPs have been comprehensively summarized. In addition, a single toughening function, a simultaneously reinforcing and toughening function and the mechanism of DGEBA by EHPs are also discussed and investigated by integrating molecular simulations, dynamic mechanical analysis (DMA) and scanning electron microscope (SEM) technologies. EHPs with high contents of epoxy group show simultaneous reinforcing and toughening in DGEBA, regardless of their aliphatic and aromatic structures, and whether there is phase-separation or homogenous structure associated with the fractured surface. The simultaneous reinforcing and toughening mechanism changes the conventional conception of inter-contradiction between the toughening and reinforcing function. It was also found that EHPs with different synthetic strategies and diverse performance have allowed an increasing number of versatile industrial applications.
机译:环氧端结束的超支化聚合物(EHPS),作为重要的功能热固性超支化聚合物,吸引了来自学术和工业研究人员的广泛和持续的兴趣。受益于其高交联能力,含空隙的拓扑结构和非常低的粘度,EHPS已被广泛应用于加强和增韧双酚-A(DGEBA)的二缩水甘油醚和无溶剂或环保涂料。因此,EHP的设计和合成提供了一种用于控制EHP和DGEBA之间的界面相互作用的强大工具,最终获得优异的综合性能。在本次审查中,全面地汇总了各种EHP的准备方法,性能控制和有前途应用的观点和最新进展。另外,还通过集分子模拟,动态机械分析(DMA)和扫描电子显微镜(SEM)技术来讨论和研究单一增韧功能,同时增强和增强功能和DGEBA的机理和DGEBA的机制。具有高含量环氧树脂的EHPS在DGEBA中同时增强和增韧,无论其脂族和芳族结构如何,以及是否存在与骨折表面相关的相分离或均匀的结构。同时增强和增韧机构改变了增韧和增强功能之间的矛盾间的常规概念。还发现,具有不同合成策略和多样性性能的EHP允许越来越多的通用工业应用。

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