论文标题

环氧 - 硫醇玻璃二聚体的经层化速率

Rates of transesterication in epoxy-thiol vitrimers

论文作者

Gablier, Alexandra, Saed, Mohand O., Terentjev, Eugene M.

论文摘要

Vitrimers是动态交联聚合物网络的重要子集,具有许多技术应用,可用于其出色的特性,并且能够通过在所谓的玻璃化温度上面的塑料流重新处理。我们报告了一种简单有效的方法,该方法是通过利用环氧树脂和硫醇的“点击”化学来生成依靠其交换式交换的这种自适应交联网络,这也具有低玻璃过渡温度的优势。我们改变了硫醇垫片的化学结构,以探测浓度和酯基对宏观弹性塑性过渡的局部环境的影响。为每种化学结构和不同浓度的催化剂确定固定键交换的热活化能,确定最佳的条件和抑制键交换。但是,我们还发现,弹性塑性过渡的温度受到网络的刚度(动态橡胶模量)的强烈影响,即使粘结性激活能量较高,柔软的网络的玻璃化温度也较低。化学和物理控制因素的这种组合应有助于优化玻璃二聚体塑料的加工性。

Vitrimers, an important subset of dynamically crosslinked polymer networks, have many technological applications for their excellent properties, and the ability to be re-processed through plastic flow above the so-called vitrification temperature. We report a simple and efficient method of generating such adaptive crosslinked networks relying on transesterification for their bond exchange by utilising the `click' chemistry of epoxy and thiols, which also has the advantage of a low glass transition temperature. We vary the chemical structure of thiol spacers to probe the effects of concentration and the local environment of ester groups on the macroscopic elastic-plastic transition. The thermal activation energy of transesterification bond exchange is determined for each chemical structure, and for a varying concentration of catalyst, establishing the conditions for the optimal, and for the suppressed bond exchange. However, we also discover that the temperature of elastic-plastic transition is strongly affected by the stiffness (dynamic rubber modulus) of the network, with softer networks having a much lower vitrification temperature even when their bond-exchange activation energy is higher. This combination of chemical and physical control factors should help optimise the processability of vitrimer plastics.

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