Liu Shaohui, Borjigin Timur, Schmitt Michael, Morlet-Savary Fabrice, Xiao Pu, Lalevée Jacques
Centre National de la Recherche Scientifique (CNRS), L'Institut de Science des Matériaux de Mulhouse (IS2M UMR 7361), Université de Haute-Alsace, F-68100 Mulhouse, France.
Université de Strasbourg, F-67081 Strasbourg, France.
Polymers (Basel). 2023 Jan 9;15(2):342. doi: 10.3390/polym15020342.
Currently, increasing attention has been focused on light-emitting diodes (LEDs)-induced photopolymerization. The common LEDs (e.g., LED at 365 nm and LED at 405 nm) possess narrow emission bands. Due to their light absorption properties, most commercial photoinitiators are sensitive to UV light and cannot be optimally activated under visible LED irradiation. Although many photoinitiators have been designed for LED-induced free radical polymerization and cationic polymerization, there is still the issue of the mating between photoinitiators and LEDs. Therefore, the development of novel photoinitiators, which could be applied under LED irradiation, is significant. Many photoinitiating systems have been reported in the past decade. In this review, some recently developed photoinitiators used in LED-induced photopolymerization, mainly in the past 5 years, are summarized and categorized as Type Ⅰ photoinitiators, Type Ⅱ photoinitiators, and dye-based photoinitiating systems. In addition, their light absorption properties and photoinitiation efficiencies are discussed.
目前,发光二极管(LED)引发的光聚合反应受到越来越多的关注。常见的LED(如365nm的LED和405nm的LED)具有窄发射带。由于其光吸收特性,大多数商业光引发剂对紫外光敏感,在可见LED照射下不能被最佳激活。尽管已经设计了许多用于LED引发的自由基聚合和阳离子聚合的光引发剂,但光引发剂与LED之间的匹配问题仍然存在。因此,开发能够在LED照射下应用的新型光引发剂具有重要意义。在过去十年中已经报道了许多光引发体系。在这篇综述中,总结了一些最近开发的用于LED引发光聚合反应的光引发剂,主要是过去5年的,并将其分类为Ⅰ型光引发剂、Ⅱ型光引发剂和基于染料的光引发体系。此外,还讨论了它们的光吸收特性和光引发效率。