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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Recyclable polymer networks containing hydroxyurethane dynamic cross-links: Tuning morphology, cross-link density, and associated properties with chain extenders
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Recyclable polymer networks containing hydroxyurethane dynamic cross-links: Tuning morphology, cross-link density, and associated properties with chain extenders

机译:含有羟基氨基乙烷动态交联的可回收聚合物网络:调整形态,交联密度和链延长的相关性能

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摘要

Conventional polymer networks are incapable of being reprocessed or recycled in the melt state, leading to sustainability and economic losses associated with spent polymer networks. With the incorporation of hydroxyurethane dynamic cross-links resulting from reaction of tricyclocarbonate and telechelic amine-terminated polymer, polybutadiene (PB) networks and poly(tetramethylene oxide) (PTMO) networks are reprocessable with full property recovery after multiple molding steps. Two types of small-molecule chain extender are incorporated into these networks to tune their morphologies, cross-link densities and associated properties. Addition of m-xylylenediamine (XYL) chain extender to PTMO networks increases the hard-segment content and leads to nanophase separation, which is absent when XYL is not present, and the elimination of cold crystallization behavior that is observed in PTMO networks without XYL. Addition of XYL also increases the cross-link density and rubbery plateau modulus of both PB and PTMO networks, and the resulting materials remain fully reprocessable. In contrast, addition of divinylbenzene dicyclocarbonate (DVBDC) chain extender enhances the cold crystallization behavior of molded PTMO-based networks and their crystallinity. Addition of DVBDC reduces the cross-link density and rubbery plateau modulus of both PB and PTMO networks, and the resulting networks exhibit selective property losses after reprocessing. This study demonstrates the simple and effective use of chain extenders in achieving tunability of dynamic network properties to satisfy requirements in different potential applications. It also provides a better understanding of structure-property relationships in dynamic covalent networks from both chemical and physical standpoints.
机译:常规的聚合物网络是不能被再加工或在熔融状态下再循环,导致可持续性和与废聚合物网络相关联的经济损失。随着从tricyclocarbonate和远螯胺封端的聚合物,聚丁二烯(PB)网络和聚(四亚甲基氧化物)的反应产生的羟基氨基甲酸酯的动态交联的掺入(PTMO)网络是可再加工具有多个模制步骤之后完全恢复属性。两种类型的小分子扩链剂并入到这些网络来调整他们的形态,交联密度和相关联的属性。间苯二甲胺(XYL)增链剂,以PTMO网络的另外增加了硬链段含量,并导致纳米相分离,这是不存在时XYL不存在,并且是在PTMO网络观察而不XYL冷结晶行为的消除。 XYL的加成也同时增加PB和PTMO网络的交联密度和橡胶状高弹模量,和所得到的材料仍然完全可再加工。与此相反,加入二乙烯基苯dicyclocarbonate(DVBDC)扩链剂的增强模塑基于PTMO网络和它们的结晶的冷结晶行为。 DVBDC的加成降低了PB和PTMO网络的交联密度和橡胶状高弹模量,并将得到的再处理网络后显示出选择性财产损失。这项研究表明,在实现动态网络性能的可调性,以满足不同的潜在应用需求的简单而有效的利用链剂。它还提供了一个更好的了解,从化学和物理角度来看动态的共价网络结构与性能的关系。

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