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3-羧酸基和甲酰基衍生香豆素作为光氧化或光还原过程中的光引发剂,用于可见光下的光聚合:光复合材料的合成及 3D 打印应用。

3-Carboxylic Acid and Formyl-Derived Coumarins as Photoinitiators in Photo-Oxidation or Photo-Reduction Processes for Photopolymerization upon Visible Light: Photocomposite Synthesis and 3D Printing Applications.

机构信息

CNRS, IS2M UMR 7361, Université de Haute-Alsace, F-68100 Mulhouse, France.

Université de Strasbourg, 67081 Strasbourg, France.

出版信息

Molecules. 2021 Mar 21;26(6):1753. doi: 10.3390/molecules26061753.

Abstract

In this paper, nine organic compounds based on the coumarin scaffold and different substituents were synthesized and used as high-performance photoinitiators for free radical photopolymerization (FRP) of meth(acrylate) functions under visible light irradiation using LED at 405 nm. In fact, these compounds showed a very high initiation capacity and very good polymerization profiles (both high rate of polymerization (Rp) and final conversion (FC)) using two and three-component photoinitiating systems based on coum/iodonium salt (0.1%/1% /) and coum/iodonium salt/amine (0.1%/1%/1% //), respectively. To demonstrate the efficiency of the initiation of photopolymerization, several techniques were used to study the photophysical and photochemical properties of coumarins, such as: UV-visible absorption spectroscopy, steady-state photolysis, real-time FTIR, and cyclic voltammetry. On the other hand, these compounds were also tested in direct laser write experiments (3D printing). The synthesis of photocomposites based on glass fiber or carbon fiber using an LED conveyor at 385 nm (0.7 W/cm) was also examined.

摘要

本文合成了九种基于香豆素骨架和不同取代基的有机化合物,并将其用作在可见光照射下(使用 405nm 的 LED)引发甲基(丙烯酸酯)官能团自由基光聚合(FRP)的高效光引发剂。实际上,这些化合物在使用基于香豆素/碘鎓盐(0.1%/1%//)和香豆素/碘鎓盐/胺(0.1%/1%/1%//)的双组分和三组分光引发体系时,表现出非常高的引发能力和非常好的聚合曲线(高聚合速率(Rp)和最终转化率(FC))。为了证明光聚合引发的效率,使用了几种技术来研究香豆素的光物理和光化学性质,例如:紫外-可见吸收光谱、稳态光解、实时傅里叶变换红外光谱和循环伏安法。另一方面,这些化合物也在直接激光写入实验(3D 打印)中进行了测试。还检查了使用 385nm(0.7W/cm)的 LED 输送带的基于玻璃纤维或碳纤维的光复合材料的合成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d891/8003961/2dd012f837b8/molecules-26-01753-sch001.jpg

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