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The influence of water on visible-light initiated free-radical/cationic ring-opening hybrid polymerization of methacrylate/epoxy: Polymerization kinetics crosslinking structure and dynamic mechanical properties

机译:水对可见光引发的甲基丙烯酸酯/环氧树脂自由基/阳离子开环杂化聚合的影响:聚合动力学交联结构和动态力学性能

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摘要

The objective of this study was to determine the influence of water on the polymerization kinetics, crosslinking structure and dynamic mechanical properties of methacrylate/epoxy polymers cured by visible-light initiated free-radical/cationic ring-opening hybrid polymerization. Water-containing formulations were prepared by adding ~4–7 wt% D2O depending on the water miscibility of monomer resins. The water-containing adhesives were compared with the adhesives photo-cured in the absence of water. The results show an improved degree of conversion for both methacrylates and epoxy by adding water. The rate of the epoxy cationic ring-opening reaction is increased while the rate of free radical polymerization is decreased in the presence of water. The decreased crosslinking density noted in the presence of water suggests that the chain transfer reaction between water and epoxy competes with the hydroxyl-based chain transfer mechanism. There is potential application of this visible-light initiated hybrid polymerization in biomaterials, e.g. dental restorations and tissue engineering scaffolds.
机译:这项研究的目的是确定水对由可见光引发的自由基/阳离子开环杂化聚合反应固化的甲基丙烯酸酯/环氧聚合物的聚合动力学,交联结构和动态力学性能的影响。根据单体树脂与水的混溶性,通过添加〜4-7 wt%的D2O制备含水配方。将含水粘合剂与在不存在水的情况下光固化的粘合剂进行比较。结果表明,通过添加水,甲基丙烯酸酯和环氧化合物的转化率均得到改善。在水的存在下,环氧阳离子开环反应的速率增加,而自由基聚合的速率降低。在水存在下注意到的交联密度降低表明水和环氧树脂之间的链转移反应与基于羟基的链转移机理竞争。这种可见光引发的杂化聚合在生物材料中有潜在的应用。牙齿修复和组织工程支架。

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