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首页> 外文期刊>Dyes and Pigments >Methylene blue-clay nano-pigment as a new photosensitizer for preparing three-component photoinitiating systems with high thermal stability
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Methylene blue-clay nano-pigment as a new photosensitizer for preparing three-component photoinitiating systems with high thermal stability

机译:亚甲基蓝粘土纳米颜料作为一种新的光敏剂,用于制备具有高热稳定性的三组件光引发系统

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摘要

The use of three-component photoinitiating systems (PISs), as a major type of visible light photoinitiating systems, are considerably growing in different industries. However, their low storage and thermal stability could be an obstacle that prevents the fast growth of this type of PIS. In this study, a methylene blue nano-pigment was synthesized, characterized and used as a new photosensitizer (PS) in a three-component PIS. The prepared nanopigment was characterized by using CHNS, TGA, XRD and TEM techniques. The photopolymerization characteristics of this new PIS was studied by using RT-FTIR. In addition, the thermal stability of the new three-component PIS was investigated by using DSC analysis. Moreover, mechanical properties of SR349 acrylate monomer which was cured in the presence of this PIS were evaluated by using DMTA technique. In addition, the morphology of the nanoparticles in the cured system was analyzed by using TEM and XRD. The results showed that the proposed PIS could be efficiently used for the free radical photopolymerization of acrylate monomers and oligomers. It was also demonstrated that the thermal stability of the prepared PIS was remarkably better than that for a reference PIS. Photocurable systems which were prepared by using this new three-component PIS were found to be thermally stable up to 100 degrees C. Finally, it was revealed that the cured system in the presence of the new three-component PIS had a very good stiffness and relatively high glass transition temperature.
机译:使用三组件的光诱导系统(PISS)作为主要类型的可见光光引发系统,在不同的行业中显着增长。然而,它们的低存储和热稳定性可能是防止这种类型的快速生长的障碍。在该研究中,合成了亚甲基蓝纳米颜料,其特征在于三分组分PI中的新光敏剂(PS)。通过使用CHN,TGA,XRD和TEM技术表征制备的纳米种。使用RT-FTIR研究了这种新PI的光聚合特性。此外,通过使用DSC分析研究了新的三组分PIS的热稳定性。此外,通过使用DMTA技术评估在该PIS存在下固化的SR349丙烯酸酯单体的机械性能。此外,通过使用TEM和XRD分析固化体系中纳米颗粒的形态。结果表明,所提出的PIS可以有效地用于丙烯酸酯单体和低聚物的自由基光聚合。还证实制备的PI的热稳定性显着优于参考PI的优于参考PIS的热稳定性。通过使用这种新的三组分PIS制备的光固化系统被发现热稳定至100℃。最后,揭示了在新的三组分PIS存在下的固化系统具有非常好的刚度和相对较高的玻璃化转变温度。

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