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Photochemical curing of epoxies in the liquid-crystalline state

机译:环氧树脂的光化学固化

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Abstract: In this work the cationic photoinduced crosslinking of the diglycidylether of 4-hydroxyphenyl-4'-hydroxybenzoate was investigated in the liquid crystalline state as well as in the isotropic state. The photochemical curing technique was applied because only small amounts of the initiating species were necessary to form networks of epoxy compounds. As the photoinitiator system, a mixture of $alpha, $alpha'- dimethoxydeoxybenzoin and dicumyliodonium-hexafluorophosphate proved to be the most effective. FTIR-spectra of the networks were compared with those of the starting material. Only small amounts of nonreacted epoxy groups were found in the networks synthesized either in the isotropic state or in the liquid crystalline state. Furthermore, different results were obtained with DSC-measurements. Networks prepared in the liquid crystalline state showed two glass transition temperatures. In contrast, networks synthesized in the isotropic state have only one glass transition temperature. Moreover, polarization microscopy was used to find ordered structures. The networks formed in the liquid crystalline state showed frozen ordered structures. Heating of such networks above the melting point of the starting material did not lead to a change of the frozen ordered structures. Additionally, differences between the frozen ordered structure of the networks and the crystalline structure of the starting compound were observed by this method. Finally, the material properties of networks with ordered structures are different from common networks with disordered structures. !28
机译:摘要:在这项工作中,研究了在液晶状态和各向同性状态下阳离子光诱导的4-羟基苯基-4'-羟基苯甲酸酯的二环氧甘油醚的交联。之所以使用光化学固化技术,是因为仅需要少量的引发剂即可形成环氧化合物网络。作为光引发剂体系,$α,$α'-二甲氧基脱氧苯偶姻和二枯草碘鎓六氟磷酸盐的混合物被证明是最有效的。将网络的FTIR光谱与起始材料进行了比较。在各向同性状态或液晶状态下合成的网络中,仅发现少量未反应的环氧基。此外,通过DSC测量获得了不同的结果。以液晶状态制备的网络显示出两个玻璃化转变温度。相反,在各向同性状态下合成的网络只有一个玻璃化转变温度。此外,偏振显微镜用于发现有序结构。在液晶状态下形成的网络显示出冻结的有序结构。在起始材料的熔点以上加热这些网络并不会导致冻结的有序结构发生变化。另外,通过该方法观察到网络的冷冻有序结构与起始化合物的晶体结构之间的差异。最后,具有序结构的网络的材料特性不同于具有无序结构的普通网络。 !28

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