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首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Depth characterization by confocal raman microscopy of oxygen inhibition in free radical photopolymerization of acrylates: Contribution of the thiol chemistry
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Depth characterization by confocal raman microscopy of oxygen inhibition in free radical photopolymerization of acrylates: Contribution of the thiol chemistry

机译:通过共焦拉曼显微镜对丙烯酸酯的自由基光聚合中的氧抑制进行深度表征:硫醇化学的贡献

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摘要

The oxygen inhibition of acrylate photopolymerization using visible light was depth characterized by confocal Raman microscopy. The sample thickness was found to influence the depth conversion profile. With increasing sample thickness, the conversion at the surface was increased and the oxygen-affected layer (OAL) decreased, up to a limit where the profiles became independent of the thickness. The addition of a thiol in the acrylate mixture reduced the OAL and the conversion in this region increased. This effect was noticeable even at low concentration of thiol. Real-time infrared spectroscopy (RT-FTIR) experiments pointed out that for low thiol content, this beneficial effect is not only attributable to the thiol-ene process - oxygen insensitive - but also to the homopolymerization of acrylates which is enhanced. Homopolymerization and thiyl radical addition were found to have the same impact on the overall mechanism.
机译:通过共焦拉曼显微镜表征了使用可见光对丙烯酸酯光聚合的氧抑制。发现样品厚度影响深度转换曲线。随着样品厚度的增加,表面的转化率增加,而受氧影响的层(OAL)降低,直至轮廓变得与厚度无关的极限。在丙烯酸​​酯混合物中添加硫醇会降低OAL,并且该区域的转化率会增加。即使在低浓度的硫醇下,这种效果也很明显。实时红外光谱(RT-FTIR)实验指出,对于低硫醇含量,这种有益效果不仅可归因于硫醇-烯烃工艺(对氧气不敏感),而且还可以增强丙烯酸酯的均聚性。发现均聚和巯基自由基添加对整个机理具有相同的影响。

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