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Effects of 1 degrees, 2 degrees, and 3 degrees Thiols on Thiol-Ene Reactions: Polymerization Kinetics and Mechanical Behavior

机译:1度,2度和3级硫醇对硫醇-NEE反应的影响:聚合动力学和机械行为

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The effect of thiol substitution in radical thiol-ene reactions has been studied by using model, monofunctional thiols as well as multifunctional thiol monomers along with the assessment of their subsequent polymerization reactions and polymer mechanical behavior. FT-IR was used to monitor the polymerization rate and quantify the overall conversion. While the total conversion was observed to range from 70% to 100%, the polymerization rate was found to decrease by as much as 10-fold as the thiol substitution was changed from primary to tertiary. Analogous multi-thiol monomers of similar structure but varying substitution were synthesized to observe the effect of substitution type on polymerization kinetics and polymer behavior. Methylation at the alpha-carbon was varied from primary to tertiary to observe these differences. Mechanical properties were assessed by using dynamic mechanical analysis and water sorption experiments, where the glass transition temperatures were found to be within 1-2 degrees C as thiol substitution varied. Furthermore, primary thiol films absorbed 1 3% more water than secondary thiol films. Resin shelf stability experiments were performed by using rheometry to measure storage time-dependent viscosity changes, and it was found that secondary thiol films remained relatively stable for up to 100 times longer than their primary counterparts. It was concluded that while there are differences under relatively slow initiation conditions, at typical initiation rates all three thiol substitutions may be made to react at similar rates for both monofunctional and polymeric systems.
机译:通过使用模型,单官能硫醇以及多官能硫醇单体以及多官能硫醇单体以及分析它们随后的聚合反应和聚合物机械行为的评估,研究了硫醇取代在自由基硫醇-NEE反应中的影响。 FT-IR用于监测聚合率并量化整体转化率。虽然观察到总转化为70%至100%,但发现聚合速率随着硫醇取代从初级到第三级改变而降低多达10倍。合成了类似结构但不同取代的类似结构的多硫醇单体,以观察取代类型对聚合动力学和聚合物行为的影响。 α-碳的甲基化因初级至第三碳而异,以观察这些差异。通过使用动态机械分析和水吸附实验来评估机械性能,其中发现玻璃化转变温度在1-2摄氏度内,随着硫醇取代而变化。此外,初级硫醇薄膜比仲硫醇薄膜吸收13%。通过使用流变术进行树脂架稳定性实验以测量储存时间依赖性粘度变化,并且发现仲硫醇薄膜比其主要对应物相对较长至多100倍。得出结论是,虽然在相对缓慢的引发条件下存在差异,但是在典型的启动率下,可以使所有三种硫醇取代的含量以相似的单官能和聚合物系统的速率进行反应。

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