Jaras Justinas, Navaruckiene Aukse, Ostrauskaite Jolita
Department of Polymer Chemistry and Technology, Kaunas University of Technology, Radvilenu Rd. 19, LT-50254 Kaunas, Lithuania.
Materials (Basel). 2023 Mar 7;16(6):2156. doi: 10.3390/ma16062156.
A series of thermoresponsive shape-memory photopolymers have been synthesized from the mixtures of two biobased monomers, tetrahydrofurfuryl acrylate and tridecyl methacrylate, with the addition of a small amount of 1,3-benzendithiol (molar ratio of monomers 0-10:0.5:0.03, respectively). Ethyl (2,4,6 trimethylbenzoyl) phenylphosphinate was used as photoinitiator. The calculated biorenewable carbon content of these photopolymers was in the range of (63.7-74.9)%. The increase in tetrahydrofurfuryl acrylate content in the photocurable resins resulted in a higher rate of photocuring, increased rigidity, as well as mechanical and thermal characteristics of the obtained polymers. All photopolymer samples showed thermoresponsive shape-memory behavior when reaching their glass transition temperature. The developed biobased photopolymers can replace petroleum-derived thermoresponsive shape-memory polymer analogues in a wide range of applications.
通过两种生物基单体丙烯酸四氢糠酯和甲基丙烯酸十三烷基酯的混合物,并添加少量的1,3 - 苯二硫醇(单体摩尔比分别为0 - 10:0.5:0.03),合成了一系列热响应形状记忆光聚合物。使用2,4,6 - 三甲基苯甲酰基苯基膦酸乙酯作为光引发剂。这些光聚合物计算得出的生物可再生碳含量在(63.7 - 74.9)%范围内。光固化树脂中丙烯酸四氢糠酯含量的增加导致光固化速率更高,所得聚合物的刚性、机械和热性能增强。所有光聚合物样品在达到其玻璃化转变温度时均表现出热响应形状记忆行为。所开发的生物基光聚合物可在广泛的应用中替代石油衍生的热响应形状记忆聚合物类似物。