Durand-Silva Alejandra, Cortés-Guzmán Karen P, Johnson Rebecca M, Perera Sachini D, Diwakara Shashini D, Smaldone Ronald A
Department of Chemistry and Biochemistry, University of Texas at Dallas, 800 West Campbell Road, Richardson, Texas 75080, United States.
ACS Macro Lett. 2021 Apr 20;10(4):486-491. doi: 10.1021/acsmacrolett.1c00121. Epub 2021 Apr 6.
Dynamic covalent bonds impart new properties to 3D printable materials that help to establish 3D printing as an accessible and efficient manufacturing technique. Here, we studied the effect of a thermally reversible Diels-Alder cross-linker on the shape stability of photoprintable resins and their self-healing properties. Resins containing different concentrations of dynamic covalent cross-links in a polyacrylate network showed that the content of dynamic cross-links plays a key role in balancing shape stability with self-healing ability. The shape stability of the printed objects was evaluated by measuring the dimensional changes after thermal treatment. The self-healing efficiency of the 3D printed resins was characterized with a scratch test and tensile testing. A dynamic covalent cross-link concentration of 1.8 mol % was enough to provide 99% self-healing efficiency without disrupting the shape stability of the printed objects. Our work shows the potential of dynamic covalent bonds in broadening the availability of 3D printable materials that are compatible with vat photopolymerization.
动态共价键赋予3D可打印材料新的性能,有助于将3D打印确立为一种易于使用且高效的制造技术。在此,我们研究了热可逆狄尔斯-阿尔德交联剂对可光打印树脂的形状稳定性及其自愈性能的影响。在聚丙烯酸酯网络中含有不同浓度动态共价交联的树脂表明,动态交联的含量在平衡形状稳定性和自愈能力方面起着关键作用。通过测量热处理后的尺寸变化来评估打印物体的形状稳定性。用划痕试验和拉伸试验对3D打印树脂的自愈效率进行了表征。1.8 mol%的动态共价交联浓度足以提供99%的自愈效率,而不会破坏打印物体的形状稳定性。我们的工作展示了动态共价键在拓宽与光聚合相容的3D可打印材料可用性方面的潜力。