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首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Pyrromethene derivatives in three-component photoinitiating systems for free radical photopolymerization
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Pyrromethene derivatives in three-component photoinitiating systems for free radical photopolymerization

机译:三组分光引发体系中的吡咯亚甲基衍生物用于自由基光聚合

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摘要

1,3,5,7,8-pentamethyl pyrromethene difluoroborate complex (HMP) and 2,6-diethyl-8-phenyl-1,3,5,7-tetramethylpyrromethene difluoroborate complex (EPP) were used to initiate the polymerization of a diacrylate in a two- and a three-component photoinitiating system (PIS), together with an amine (ethyl-4-dimethylaminobenzoate, EDB) and triazine A (2-(4methoxyphenyl)-4,6- bis(triehloromethyl)-1,3,5-triazine, TA) as coinitiators. For both pyrromethene dyes, the highest conversion was achieved with the three-component PIS. As these dyes have high-fluorescence quantum yields, steady state and time-resolved techniques were used to study the possible fluorescence quenching by the amine and the triazine, as well as laser flash photolysis to investigate the electron transfer process that occurs in these PIS from either the singlet or triplet excited states. The electron transfer reaction is evidenced by using time-resolved photoconductivity. Experiments show that the main interaction between the dye and both coinitiators is through its excited singlet state and the process is more efficient when TA is present. The beneficial effect noted when both coinitiators are used in a three-component system is ascribed to secondary reactions between the coinitiators and intermediates that lead to the generation of higher amount of initiating species and the recovery of the initial dye
机译:1,3,5,7,8-五甲基吡咯烷二氟硼酸酯络合物(HMP)和2,6-二乙基-8-苯基-1,3,5,7-四甲基吡咯烷二氟硼酸酯络合物(EPP)用于引发聚合两组分和三组分光引发体系(PIS)中的二丙烯酸酯与胺(-4-二甲基氨基苯甲酸乙酯,EDB)和三嗪A(2-(4-甲氧基苯基)-4,6-双(三卤代甲基)-1) 3,5-triazine,TA)作为共引发剂。对于两种吡咯亚甲基染料,三组分PIS均可实现最高的转化率。由于这些染料具有很高的荧光量子产率,因此采用稳态和时间分辨技术研究了胺和三嗪可能的荧光猝灭,以及激光闪光光解法研究了这些PIS中PIS发生的电子转移过程。单重态或三重态激发态。通过使用时间分辨的光电导性可以证明电子转移反应。实验表明,染料与两种共引发剂之间的主要相互作用是通过其激发的单重态,当存在TA时,该过程更为有效。当两种共引发剂都用于三组分体系时,注意到的有益效果归因于共引发剂和中间体之间的次级反应,这导致生成更多数量的引发物种并回收初始染料。

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