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首页> 外文期刊>Journal of Applied Polymer Science >Photocure properties of photoreactive polymers high-heat-resistant with cinnamate groups
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Photocure properties of photoreactive polymers high-heat-resistant with cinnamate groups

机译:具有肉桂酸酯基团的高耐热性光反应性聚合物的光固化性能

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New high-heat-resistant photoreactive polymers with cinnamate groups were synthesized by the reaction of cinnamic acid (CA) and epoxy resins. Their photocure properties were investigated with Fourier transform infrared spectroscopy, UV-visible spectroscopy, and thermogravimetric analysis (TGA). Their photocure reaction rates and the extent of reaction conversion increased with the intensity of UV irradiation. To investigate their photocure reaction kinetics, their reaction conversion rates were plotted against reaction conversion so that their photocure reactions could be analyzed in terms of an nth-order kinetics reaction equation. The YX400OH-CA photoreactive polymer with a biphenyl moiety, which was expected to have strong molecular interactions, showed a lower reaction conversion rate and reaction constant, and the highest reaction conversion rate and reaction constant was observed in XP2030-CA with an optimum cure reaction space and a reduction of molecular interactions compared with the other photoreactive polymers. Thermal stability was studied by observation of the changes in the transmittance of the photocured polymer films upon heating and by measurement of the weight loss with temperature with TGA. These photoreactive polymers showed good thermal properties, with almost no transmittance change in the visible range even after they were heated at 250 degrees C for 1 h, and they exhibited little weight loss up to about 250 degrees C. (c) 2007 Wiley Periodicals, Inc.
机译:通过肉桂酸(CA)与环氧树脂的反应合成了具有肉桂酸酯基的新型高耐热光反应性聚合物。用傅立叶变换红外光谱,紫外可见光谱和热重分析(TGA)研究了它们的光固化性能。它们的光固化反应速率和反应转化程度随紫外线照射强度的增加而增加。为了研究它们的光固化反应动力学,将它们的反应转化率对反应转化率作图,以便可以根据n阶动力学反应方程式分析它们的光固化反应。具有联苯部分的YX400OH-CA光反应性聚合物具有较强的分子相互作用,预期具有较低的反应转化率和反应常数,在具有最佳固化反应的XP2030-CA中观察到最高的反应转化率和反应常数与其他光反应性聚合物相比,空间小,分子相互作用减少。通过观察加热时光固化的聚合物膜的透射率的变化以及通过使用TGA测量随温度的重量损失来研究热稳定性。这些光反应性聚合物表现出良好的热性能,即使在250摄氏度下加热1小时后,在可见光范围内几乎没有透射率变化,并且在约250摄氏度下它们的重量损失很小。(c)2007 Wiley期刊,公司

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