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UV-Vis/FT-NIR in situ monitoring of visible-light induced polymerization of PEGDA hydrogels initiated by eosin/triethanolamine/O₂

机译:UV-Vis / FT-NIR原位监测曙红/三乙醇胺/ O 2引发的pEGDa水凝胶的可见光诱导聚合

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摘要

In conjunction with a tertiary amine coinitiator, eosin, a photoreducible dye, has been shown to successfully circumvent oxygen inhibition in radical photopolymerization reactions. However, the role of O₂ in the initiation and polymerization processes remains inconclusive. Here, we employ a UV-Vis/FT-NIR analytical tool for real-time, simultaneous monitoring of chromophore and monomer reactive group concentrations to investigate the eosin-activated photopolymerization of PEGDA-based hydrogels under ambient conditions. First, we address the challenges associated with spectroscopic monitoring of the polymerization of hydrogels using UV-Vis and FT-NIR, proposing metrics for quantifying the extent of signal loss from reflection and scattering, and showing their relation to microgelation and network formation. Second, having established a method for extracting kinetic information by eliminating the effects of changing refractive index and scattering, the coupled UV-Vis/FT-NIR system is applied to the study of eosin-activated photopolymerization of PEGDA in the presence of O₂. Analysis of the inhibition time, rate of polymerization, and rate of eosin consumption under ambient and purged conditions indicates that regeneration of eosin in the presence of oxygen and consumption of oxygen occur via a nonchain process. This suggests that the uniquely high O₂ resilience is due to alternative processes such as energy transfer from photo-activated eosin to oxygen. Uncovering the intricacies of the role of O₂ in eosin-mediated initiation aids the design of O₂ resistant free radical polymerization systems relevant to photonics, optoelectronics, biomaterials, and biosensing.
机译:已经证明,与叔胺共引发剂结合的曙红(一种可光还原的染料)可以成功地规避自由基光聚合反应中的氧抑制作用。但是,O 2在引发和聚合过程中的作用尚无定论。在这里,我们采用UV-Vis / FT-NIR分析工具实时,同时监测发色团和单体反应基团的浓度,以研究在环境条件下基于PEGDA的水凝胶的曙红活化光聚合。首先,我们解决了与使用UV-Vis和FT-NIR光谱监测水凝胶聚合反应有关的挑战,提出了量化反射和散射信号损失程度的指标,并显示了它们与微凝胶化和网络形成的关系。其次,已经建立了通过消除折射率变化和散射的影响来提取动力学信息的方法,将偶联的UV-Vis / FT-NIR系统用于在O 2存在下曙红活化的PEGDA的光聚合反应的研究。在环境和吹扫条件下的抑制时间,聚合速率和曙红消耗速率的分析表明,存在氧时曙红的再生和氧气的消耗是通过非链式过程发生的。这表明独特的高O 2回弹性是由于其他过程,例如从光活化曙红到氧气的能量转移。揭示O 2在曙红介导的引发作用中的复杂作用,有助于设计与光子学,光电子学,生物材料和生物传感有关的抗O 2自由基聚合体系。

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