首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Zirconium complexes to overcome oxygen inhibition in free-radical photopolymerization of acrylates: Kinetic, mechanism, and depth profiling
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Zirconium complexes to overcome oxygen inhibition in free-radical photopolymerization of acrylates: Kinetic, mechanism, and depth profiling

机译:克服锆在丙烯酸酯自由基光聚合中的氧抑制作用的锆配合物:动力学,机理和深度分布

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摘要

The photopolymerization process of acrylate coatings initiated by visible light (γ > 380 nm) and performed in air was studied in the presence of zirconium complexes. Depth profiling experiments were performed using confocal Raman microscopy showing that the conversion, which is low at the surface of the sample, increases with increasing depth and reaches a full conversion close to the substrate. RT-FTIR spectroscopy corroborates Raman results in evidencing the efficiency of some zirconium compounds to reduce oxygen inhibition. Finally, laser flash photolysis experiments revealed that the beneficial effect in air is attributable to the reaction of the zirconium complex on the peroxyl radicals formed from the reaction of oxygen with radicals. Therefore, the oxygen present in the medium is depleted, allowing a better efficiency of the photopolymerization process.
机译:在锆配合物的存在下,研究了由可见光(γ> 380 nm)引发并在空气中进行的丙烯酸酯涂层的光聚合过程。使用共聚焦拉曼显微镜进行深度分析实验,结果表明,样品表面的转化率很低,但随着深度的增加而增加,并在接近底物的位置达到了完全转化率。 RT-FTIR光谱证实了拉曼光谱的结果,证明了某些锆化合物降低氧抑制的效率。最后,激光闪光光解实验表明,在空气中的有益作用归因于锆络合物对由氧与自由基反应形成的过氧自由基的反应。因此,存在于介质中的氧气被耗尽,从而使得光聚合过程的效率更高。

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