Effects of crosslink density and plasticizer on thermorheological properties of dissociative guanidine-based covalent adaptable networks

IF 4.1 2区 化学 Q2 POLYMER SCIENCE
Adelle L. Koenig, Kelsey M. Allis, John S. Lehr, Michael B. Larsen
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Abstract

We report the effects of varying crosslink density and plasticizer loading on the thermorheological properties of guanidine-based covalent adaptable networks (CANs). CANs engage in dynamic bond-exchange reactions above Tg, resulting in shifts between thermoset-like materials and states capable of flow that can be greatly impacted by network characteristics beyond the exchange reaction itself. The synthesis of guanidine-based CANs by combination of carbodiimide-containing oligomers and various ratios of amine-containing crosslinker molecules and phthalate plasticizer was used to create a library of CANs with varying crosslink density and equal concentrations of guanidine functionalities. Additionally, Tg was tuned by modifying plasticizer loading. CANs at three degrees of crosslink density and three degrees of plasticizer loading were characterized by rheometry and dynamic mechanical analysis. The resulting data indicated that absolute relaxation times varied directly with crosslink density but were largely unaffected by plasticizer content or temperature relative to Tg; thus, plasticizer served to decouple Tg from relaxation dynamics. Moreover, little difference in activation energies was observed between each system, contrasting studies of associative CANs.

Abstract Image

交联密度和增塑剂对解离胍基共价适应性网络热流变特性的影响
我们报告了不同交联密度和增塑剂负载对胍基共价可适应网络(CANs)热流变特性的影响。CAN 在超过 Tg 时会发生动态的键交换反应,从而在热固性材料和能够流动的状态之间发生转变,而这种转变会受到交换反应本身之外的网络特性的极大影响。通过将含碳化二亚胺的低聚物与不同比例的含胺交联剂分子和邻苯二甲酸酯增塑剂结合起来,合成了胍基 CAN,从而创建了一个具有不同交联密度和等浓度胍官能团的 CAN 库。此外,还可通过改变增塑剂含量来调整 Tg。通过流变仪和动态机械分析,对三种交联密度和三种增塑剂含量的 CAN 进行了表征。结果数据表明,绝对弛豫时间直接随交联密度变化,但与 Tg 相比,基本上不受增塑剂含量或温度的影响;因此,增塑剂起到了使 Tg 与弛豫动力学脱钩的作用。此外,每个系统之间的活化能几乎没有差别,这与对关联 CAN 的研究形成了鲜明对比。
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来源期刊
Polymer Chemistry
Polymer Chemistry POLYMER SCIENCE-
CiteScore
8.60
自引率
8.70%
发文量
535
审稿时长
1.7 months
期刊介绍: Polymer Chemistry welcomes submissions in all areas of polymer science that have a strong focus on macromolecular chemistry. Manuscripts may cover a broad range of fields, yet no direct application focus is required.
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