光引发剂
三乙醇胺
光化学
二苯甲酮
光致聚合物
聚合
木质素
闪光光解
单体
材料科学
光解
硫杂蒽酮
丙烯酸酯
高分子化学
苯甲酸
化学
有机化学
聚合物
动力学
反应速率常数
分析化学(期刊)
物理
量子力学
作者
Yujie Qi,Xing Huang,Haoqi Zhai,Mengquan Shi,Yuxi Zhang,Yunlong Zhang,Yuxia Zhao
标识
DOI:10.1016/j.porgcoat.2022.107210
摘要
Lignin could generate active free radicals under light irradiation and be directly used as photoinitiator (PI). However, the photoinitiation unit is unclear due to its complex molecular structure. Some previous studies indicate that the photoyellowing of lignin is due to the photosensitivity of Cα‑carbonyl β-O-4 unit in its molecular structure. Herein, four lignin model compounds D2, S3, G4 and F4 containing Cα‑carbonyl β-O-4 structure unit were synthesized and characterized. Among them, F4 was obtained by introducing co-initiator 4-(dimethylamino) benzoic acid ethyl ester (EDAB) to the lignin structural unit. The results demonstrated that under 365 nm LED irradiation, the four model compounds all could directly initiate the polymerization of acrylate monomer PEGDA but their photoinitiation efficiency was quite different. F4 exhibited the best photoinitiation performance compared with the other three PIs. As a one-component photoinitiator (PI), the photoinitiation efficiency of F4 was equal to that of a commercial two-component system benzophenone (BP)/EDAB. In addition, when combined with a hydrogen donor triethanolamine (TEOA), the photoinitiation efficiency of the two-component system F4/TEOA was higher than that of BP/TEOA. Furthermore, the photolysis mechanism of F4 was clarified through identifying the generated active species under light irradiation by electron spin resonance and laser flash photolysis.
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