Grauzeliene Sigita, Kastanauskas Marius, Talacka Vaidas, Ostrauskaite Jolita
Department of Polymer Chemistry and Technology, Kaunas University of Technology, Radvilenu Rd. 19, Kaunas LT-50254, Lithuania.
AmeraLabs, Kestucio str. 6A, Kaunas LT-44320, Lithuania.
ACS Appl Polym Mater. 2022 Aug 12;4(8):6103-6110. doi: 10.1021/acsapm.2c00914. Epub 2022 Aug 2.
In this study, photocurable resins based on glycerol and vanillin were designed, synthesized, and applied to digital light processing three-dimensional (3D) printing and vitrimeric abilities such as shape-memory, self-healing, and recyclability have been investigated. First, photocurable resins were prepared and synthesized by combining renewable resources and photocuring as an environmentally friendly strategy for the synthesis of vitrimers. Afterward, the most suitable resin for optical 3D printing was selected by photorheometry, and the thermal and mechanical properties of the resulting polymers were tested. Furthermore, by activating dynamic transesterification reactions at elevated temperatures, the photocured polymer exhibited self-healing, recyclability, and shape-memory properties. The vitrimer with a weight ratio of 8:2 of glycerol- and vanillin-based monomers demonstrated a welding efficiency of tensile strength up to 114.12%, 75% recyclability by alcoholysis, and shape-memory properties above and below two glass transition temperatures.
在本研究中,设计、合成了基于甘油和香草醛的光固化树脂,并将其应用于数字光处理三维(3D)打印,同时研究了其诸如形状记忆、自修复和可回收性等类玻璃物质的性能。首先,通过将可再生资源与光固化相结合来制备和合成光固化树脂,这是一种合成类玻璃物质的环保策略。之后,通过光流变学选择最适合光学3D打印的树脂,并测试所得聚合物的热性能和机械性能。此外,通过在升高的温度下激活动态酯交换反应,光固化聚合物表现出自修复、可回收性和形状记忆性能。甘油基和香草醛基单体重量比为8:2的类玻璃物质显示出拉伸强度焊接效率高达114.12%,通过醇解实现75%的可回收性,以及在两个玻璃化转变温度之上和之下的形状记忆性能。