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Post Self-Crosslinking of Phthalonitrile-Terminated Polyarylene Ether Nitrile Crystals

机译:酞氯腈封端的聚芳基醚丁腈晶体的自交联

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摘要

A novel phthalonitrile-terminated polyaryl ether nitrile (PEN-Ph) was synthesized and characterized. The crystallization behavior coexisting with the crosslinking behavior in the PEN-Ph system was confirmed by rheological measurements. DSC was applied to study the crystallization kinetics and crosslinking reaction kinetics. Through the Avrami equation modified by Jeziorny, the nonisothermal crystallization kinetics were analyzed, and the Avrami exponent of about 2.2 was obtained. The analysis results of more intuitive polaring optical microscopy (POM) and SEM indicated that the shape of the crystals is similar to spherical. Moreover, the activation energy of the crystallization behavior and crosslinking behavior were obtained by the Kissinger method, and the values were about 152.7 kJ·mol−1 and 174.8 kJ·mol−1, respectively. This suggests that the activation energy of the crystallization behavior is lower than that of the crosslinking behavior, indicating that the crystallization behavior is more likely to occur than the crosslinking behavior and the crystals of PEN-Ph can be self-crosslinked to form single-polymer composites.
机译:一种新的苯二甲腈基封端的聚芳醚腈(PEN-PH)的合成和表征。与在PEN-PH系统交联行为的结晶行为共存通过流变学测量的证实。 DSC是用于研究的结晶动力学和交联的反应动力学。通过Jeziorny法改性Avrami方程,非等温结晶动力学进行了分析,得到的约2.2 Avrami指数。更直观polaring光学显微镜(POM)和SEM的分析结果表明,该晶体的形状类似于球形的。此外,是由基辛格方法得到的结晶行为的活化能和交联行为,并且这些值分别为约152.7千焦·摩尔-1和174.8千焦·摩尔-1,分别。这表明结晶行为的活化能比交联的行为的低,这表明结晶行为很可能比交联行为发生和PEN-PH的晶体可以是自交联以形成单个的聚合物复合材料。

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