Bischoff Derek J, Lee Taeheon, Kang Kyung-Seok, Molineux Jake, O'Neil Parker Wallace, Pyun Jeffrey, Mackay Michael E
Department of Materials Science and Engineering, University of Delaware, Newark, DE, 19716, USA.
Department of Chemistry and Biochemistry & Wyant College of Optical Sciences, University of Arizona, Tucson, AZ, 85721, USA.
Nat Commun. 2023 Nov 20;14(1):7553. doi: 10.1038/s41467-023-43117-1.
Multiple relaxation times are used to capture the numerous stress relaxation modes found in bulk polymer melts. Herein, inverse vulcanization is used to synthesize high sulfur content (≥50 wt%) polymers that only need a single relaxation time to describe their stress relaxation. The S-S bonds in these organopolysulfides undergo dissociative bond exchange when exposed to elevated temperatures, making the bond exchange dominate the stress relaxation. Through the introduction of a dimeric norbornadiene crosslinker that improves thermomechanical properties, we show that it is possible for the Maxwell model of viscoelasticity to describe both dissociative covalent adaptable networks and living polymers, which is one of the few experimental realizations of a Maxwellian material. Rheological master curves utilizing time-temperature superposition were constructed using relaxation times as nonarbitrary horizontal shift factors. Despite advances in inverse vulcanization, this is the first complete characterization of the rheological properties of this class of unique polymeric material.
多个弛豫时间用于捕捉本体聚合物熔体中存在的多种应力松弛模式。在此,采用逆硫化法合成高硫含量(≥50 wt%)的聚合物,这类聚合物只需一个弛豫时间就能描述其应力松弛情况。这些有机多硫化物中的S-S键在高温下会发生解离键交换,使得键交换主导应力松弛过程。通过引入一种能改善热机械性能的二聚降冰片二烯交联剂,我们证明了粘弹性的麦克斯韦模型有可能描述解离共价自适应网络和活性聚合物,这是麦克斯韦材料为数不多的实验实现之一。利用弛豫时间作为非任意水平位移因子构建了采用时间-温度叠加的流变主曲线。尽管逆硫化技术取得了进展,但这是对这类独特聚合物材料流变性能的首次完整表征。