摘要: 开发可阳离子光聚合的氟硅单体是光聚合领域重要的研究方向。利用易得的原料和简单的工艺合成了一种氟硅缩水甘油醚环氧单体( FSi-GE)采用核磁共振波谱仪( NMR)和傅立叶变换红外光谱仪( FT-IR)对该单体的结构进行了表征,并研究了,其对环氧单体 3,4-环氧环己基甲基 3,4-环氧环己基甲酸酯( E4221)和 1,2-环氧 .4-乙烯基环己烷( VOH)组成的阳离子光聚合体系的光聚合动力学、表面疏水性、耐热性及拉伸性能的影响。结果表明:当 FSi-GE的添加量从 0增加到 0. 5%,体系的环氧基团最终转化率从 60. 6%上升到 65. 7%,固化膜表面水接触角从 56. 9°升至 104. 6°,断裂伸长率从 22. 96%升至 41. 22%,同时耐热性提高。但随着 FSi-GE的含量继续增加,表面水接触角、耐热性和断裂伸长率都呈现略微下降的趋势。说明加入适量的 FSi-GE能够有效提高 E4221/VOH体系的最终转化率、疏水性、耐热性和机械性能。
关键词:
阳离子光聚合,
氟硅单体,
缩水甘油醚环氧单体
Abstract: Developing cationic photopolymerizable fluorosilicone monomers is one of theimportant research directions in the field of photopolymerization. A fluorosilicone glycidyl ether epoxy monomer(FSi-GE)was synthesized by using readily available raw materials and simple synthesis process,and the monomer structure was characterized using NMR andFT-IR. The influence of FSi-GE on polymerization kinetics,surface water resistance,heat resistance and tensile properties of the cationic photopolymerization system comprised of3,4-epoxy-cyclohexyl methyl 3,4-epoxy-cyclohexyl formate(E4221)and 1,2-epoxy-4-vinylcyclohexane(VOH)was investigated. The results showed that when FSi-GE amount was increased from 0 to 0. 5%,the final conversion of epoxy group of the system was increased from 60. 6% to 65. 7%,the surface water contact angle was increased from 56. 9° to 104. 6°,the elongation at break was increased from 22. 96% to 41. 22%,and the heat resistance was also improved. However,with the further increase of FSi-GE amount,the surface water contact angle,heat resistance and elongation at break presented a slightly decreasing,which indicated that the appropriate FSi-GE amount could effectively improve the final conversion, hydrophobicity,heat resistance and mechanical properties of E4221/VOH system.
Key words:
cationic photopolymerization,
fluorosilicone monomer,
glycidyl ether epoxy monomer
中图分类号:
王烁天, 胡韵朗, 贾伟, 等. 氟硅缩水甘油醚环氧单体的合成与性能研究[J]. 涂料工业, 2024, 54(2): 1-6.
WANG S T, HU Y L, JIA W, et al. Synthesis and Properties of the Fluorosilicone Glycidyl Ether Epoxy Monomer[J]. Paint & Coatings Industry, 2024, 54(2): 1-6.