首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Contribution of blocking positions on the curing behaviors, networks and thermal properties of aromatic diamine-based benzoxazines
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Contribution of blocking positions on the curing behaviors, networks and thermal properties of aromatic diamine-based benzoxazines

机译:抗封闭位置对芳族二胺的苯并恶嗪的固化行为,网络和热性质的贡献

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摘要

To elucidate the contribution of blocking positions on aromatic diamine-based benzoxazines, we prepared several 4,4'-bis(3,4-dihydro-2H-1,3-benzoxazin-3-yl) diphenyl methane monomers with different phenols. The molecular chemical structures of the bi-functional monomers are characterized by FTIR and H-1-NMR. Particularly, the newly developed m-cresol based benzoxazine is further confirmed by C-13-NMR and ESI-MS and the oxazine ring position is verified. The curing behaviors are investigated by dynamic differential scanning calorimetry (DSC). Activation energies are analyzed by Kissinger, Ozawa and Starink methods at various heating rates. Due to structure difference in polymerized network, polymer with high amount of arylamine Mannich bridge shows low autocatalysis capability. The glass transition temperature (T-g) is closely related to the blocking position while thermal stability decreases comparatively regardless of the blocking position. High arylamine Mannich bridging leads to large amount of dangling groups, which reduces the decomposition peak temperature.
机译:为了阐明阻断位置对芳族二胺的苯并恶嗪的贡献,我们制备了几种4,4'-BIS(3,4-二氢-2H-1,3-苯并恶唑嗪-3-基)二苯基甲烷单体用不同的酚醛制备。双官能单体的分子化学结构的特征在于FTIR和H-1-NMR。特别地,通过C-13-NMR和ESI-MS和ESI-MS进一步证实了新开发的M-甲酚的苯并恶嗪,并验证了恶唑环位置。通过动态差分扫描量热法(DSC)来研究固化行为。激活能量是通过各种加热速率的基辛格,ozawa和明星方法分析的。由于聚合网络中的结构差异,具有大量芳基曼奇桥的聚合物显示出低的自催化能力。玻璃化转变温度(T-G)与阻挡位置密切相关,同时无论堵塞位置如何,热稳定性相对减小。高芳基胺曼尼希桥接导致大量的悬垂基团,这降低了分解峰值温度。

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