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首页> 外文期刊>Journal of Macromolecular Science. Physics >Photo-differential Scanning Calorimetry Study on Photopolymerization of Polyacrylate/E7 Liquid Crystal Blends
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Photo-differential Scanning Calorimetry Study on Photopolymerization of Polyacrylate/E7 Liquid Crystal Blends

机译:聚丙烯酸酯/ E7液晶混合物光聚合的光差分扫描量热学研究

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摘要

Photo-differential scanning calorimetry (photo-DSC) was used to investigate the cure kinetics of a photo-initiated polymerization of tripropylene glycol diacrylate (TPGDA) monomers mixed with a eutectic liquid crystal mixture, E7, chosen due to its significant optical properties. The thermal photo-polymerization reactions were performed in isothermal mode in order to identify and evaluate the different thermal effects occurring during the photo-polymerization reaction under UV light. The results obtained help to better understand the curing mechanisms as well as the kinetics of the curing reactions. The isothermal photo-DSC provided complex thermograms showing the presence of two thermal effects: an exothermic heat (positive activation energy) generated during the conversion of monomers and an endothermic heat produced by the UV lamp. The latter phenomenon was observed in our previous work and was associated to the heating of the polymer dispersed liquid crystals (PDLC) material by the UV irradiation lamp. The dependence of photopolymerization on the time and intensities of the curing UV light were investigated. The results showed that the high intensity UV light heats the material and slows the process of phase separation which, in turn, affects the electro-optical properties of the material under study. The photo DSC results also revealed that the heating of the system was insignificant and can, therefore, be neglected, for materials exposed to UV radiation with an irradiation time of 5 seconds and a low intensity of 13.80 mW/cm(2).
机译:使用光差分扫描量热法(Photo-DSC)来研究与其显着的光学性质的共晶液晶混合物,E7混合的三丙二醇二丙酯(TPGDA)单体的皮带聚合的固化动力学。热光聚合反应在等温模式下进行,以鉴定和评价在紫外光下的光聚合反应期间发生的不同热效应。结果获得了有助于更好地理解固化机制以及固化反应的动力学。等温光照DSC提供了复杂的热分析图,显示出两种热效应的存在:在单体转化过程中产生的放热热(阳性活化能量)和由UV灯产生的吸热热。在我们之前的工作中观察到后一种现象,并与UV照射灯加热聚合物分散的液晶(PDLC)材料的加热。研究了光聚合对固化紫外光的时间和强度的依赖性。结果表明,高强度UV光热加热材料并减缓相分离的过程,反过来影响正在研究的材料的电光特性。照片DSC结果还显示,系统的加热是微不足道的,因此可以忽略含有5秒的照射时间和13.80mW / cm(2)的低强度的材料。

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