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Trimerization of Phenyl Cyanate Ester

机译:氰酸苯酯的三聚化

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摘要

The kinetics of phenyl cyanate ester trimerization is studied in the bulk using differential scanning calorimetry. Dynamic experiments for different heating rates are analyzed for the activation energy using the model-free Kissinger-Akahira-Sunose(KAS) isoconversion method. The activation energy and other kinetic parameters are also obtained by fitting the dynamic data to a first order autocatalytic reaction model, which well describes the experimental data. The activation energy obtained from the KAS isoconversion method (70.1 kJ/mol) is in good agreement with that obtained from the kinetic model (73.2 kJ/mol) and is much lower than the more bulky cyanate esters studied in our laboratory, which have activation energies of approximately 95 kJ/mol. In addition, the rate constant for the phenyl cyanate ester is one to two orders higher than the bulkier cyanate esters in the temperature range of 200 to 300 °C. Future work will focus on how the reaction kinetics change for trimerization of the phenyl cyanate ester in nanopores.
机译:使用差示扫描量热法研究了苯甲酸氰酸酯三聚反应的动力学。使用无模型的Kissinger-Akahira-Sunose(KAS)等转换方法,分析了不同升温速率的动态实验的活化能。通过将动态数据拟合到一阶自催化反应模型也可以获得活化能和其他动力学参数,该模型很好地描述了实验数据。通过KAS等转换方法获得的活化能(70.1 kJ / mol)与从动力学模型获得的活化能(73.2 kJ / mol)非常吻合,并且比在我们的实验室中研究的具有活化作用的更大体积的氰酸酯要低得多。能量约为95 kJ / mol。此外,在200至300°C的温度范围内,苯基氰酸酯的速率常数比体积较大的氰酸酯高1-2个数量级。未来的工作将集中在如何改变纳米孔中氰酸苯酯的三聚反应动力学上。

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