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Synthesis, cure kinetics, and physical properties of a new tricyanate ester with enhanced molecular flexibility

机译:具有增强的分子柔性的新型三氰酸酯的合成,固化动力学和物理性质

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摘要

1,2,3-Tris(4-cyanatophenyl)propane, a new tricyanate ester monomer that was designed to incorporate more flexible chemical linkages at junction points in the cured macromolecular network, was synthesized in nine steps with an overall yield of 26%. The highly purified monomer exhibited an activation energy of 110 kJ/mol for auto-catalytic cure at temperatures of 210 °C-290 °C, modestly lower than the comparably measured activation energy of a commercial cyanated novolac. The overall extent of cure achievable at these temperatures was also higher for the new monomer. Many physical properties of the cured monomer, including density, thermochemical stability, moisture uptake, and the impact of hydrolytic degradation on glass transition temperature were similar to those of commercial tricyanates, with a dry glass transition temperature at full conversion of at least 340 °C. These results illustrate how careful control of the local chemical structure in the vicinity of network junction points may be utilized to improve the properties of thermosetting polymer networks.
机译:1,2,3-Tris(4-cyanatophenyl)propane是一种新的三氰酸酯单体,设计用于在固化的大分子网络的连接点处引入更灵活的化学键,分9步合成,总收率为26%。对于在210°C-290°C的温度下进行自动催化固化,高度纯化的单体表现出110 kJ / mol的活化能,略低于商业上测量的氰化酚醛清漆的活化能。对于这些新单体,在这些温度下可达到的总固化程度也更高。固化后的单体的许多物理性质,包括密度,热化学稳定性,水分吸收以及水解降解对玻璃化转变温度的影响与商用三氰酸酯相似,干式玻璃化转变温度在至少340°C的完全转化下。这些结果说明了如何仔细控制网络结点附近的局部化学结构,以改善热固性聚合物网络的性能。

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