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首页> 外文期刊>Polymer Degradation and Stability >Thermal degradation of visible-light-cured thiol-methacrylate networks photoactivated with Camphorquinone
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Thermal degradation of visible-light-cured thiol-methacrylate networks photoactivated with Camphorquinone

机译:樟脑醌光活化的可见光固化硫醇甲基丙烯酸酯网络的热降解

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This report describes the yellowing of visible light-cured thiol-ene networks formulated with Camphorquinone (CQ) as photoactivator. CQ displays an intense dark yellow color due to the presence of a conjugated diketone chromophore that absorbs at 470 nm. Irradiation of CQ with visible light produces an excited triplet state which interacts with oxidizable species, thus decomposing into colorless products. During the course of this study it was found that the color of thiol-ene networks changes from colorless to yellow after 4 months storage at 20 ℃. This investigation was carried out to provide clarification of this issue. The yellowing in initially photobleached thiol-methacrylate networks was studied by UV-visible spectroscopy. The yellowing of the networks was apparent after 4 h at 50 ℃, 1.5 h at 70 ℃ or 20 min at 110 ℃ However, color changes were perceptible after 40 days at 20 °G The change in color observed in the studied polymer networks is explained in terms of the regeneration of CQ through hydrogen transfer reactions between thiyl radicals and ketyl radicals. Results obtained in this research demonstrate that the yellowing displayed by thiol-methacrylate systems photoactivated with CQ jeopardizes the long-term stability of the derived films and bulk materials. Visible light photopolymerization offers many advantages over UV photopolymerization. However, in the particular case of thiol-ene resins photoactivated with CQ, the use of visible light is accompanied by undesired yellowing of the resulting polymers.
机译:该报告描述了以樟脑醌(CQ)作为光活化剂配制的可见光固化硫醇-烯网络的泛黄。由于存在在470 nm处吸收的共轭二酮发色团,CQ显示出深黄色。用可见光照射CQ会产生激发的三重态,该态与可氧化的物质相互作用,从而分解为无色产物。在此研究过程中,发现在20℃储存4个月后,硫醇-烯网络的颜色从无色变为黄色。进行此调查是为了澄清此问题。通过紫外-可见光谱研究了最初光漂白的硫醇甲基丙烯酸酯网络中的泛黄。在50℃下4 h,70℃下1.5 h或110℃20分钟后,网络明显变黄。但是,在20°G 40天后,颜色可以察觉。解释了在所研究的聚合物网络中观察到的颜色变化硫基和酮基之间通过氢转移反应再生CQ。这项研究中获得的结果表明,用CQ光活化的甲基丙烯酸硫醇酯系统会发黄,这会损害衍生膜和散装材料的长期稳定性。可见光光聚合比紫外线光聚合具有许多优势。然而,在用CQ光活化的硫醇-烯树脂的特定情况下,使用可见光伴随所得到的聚合物不希望的泛黄。

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