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3D printing of highly stretchable hydrogel with diverse UV curable polymers

机译:3D印刷高度可伸缩水凝胶,具有多种UV可固化聚合物

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Hydrogel-polymer hybrids have been widely used for various applications such as biomedical devices and flexible electronics. However, the current technologies constrain the geometries of hydrogel-polymer hybrid to laminates consisting of hydrogel with silicone rubbers. This greatly limits functionality and performance of hydrogel-polymer–based devices and machines. Here, we report a simple yet versatile multimaterial 3D printing approach to fabricate complex hybrid 3D structures consisting of highly stretchable and high–water content acrylamide-PEGDA (AP) hydrogels covalently bonded with diverse UV curable polymers. The hybrid structures are printed on a self-built DLP-based multimaterial 3D printer. We realize covalent bonding between AP hydrogel and other polymers through incomplete polymerization of AP hydrogel initiated by the water-soluble photoinitiator TPO nanoparticles. We demonstrate a few applications taking advantage of this approach. The proposed approach paves a new way to realize multifunctional soft devices and machines by bonding hydrogel with other polymers in 3D forms.
机译:水凝胶 - 聚合物杂交物已广泛用于各种应用,例如生物医学装置和柔性电子器件。然而,目前的技术限制了水凝胶聚合物杂交物的几何形状,以使由硅氧烷橡胶的水凝胶组成的层压物。这极大地限制了水凝胶 - 聚合物的装置和机器的功能和性能。在这里,我们报告了一种简单而多才多艺的多维3D打印方法,以制造由高度可伸缩和高含水含量的丙烯酰胺-PEGDA(AP)水凝胶与多样性UV可固化聚合物共价键合的复杂杂合3D结构。混合结构印刷在自式基于DLP的多国3D打印机上。通过通过水溶性光引发剂TPO纳米颗粒引发的AP水凝胶不完全聚合,实现AP水凝胶和其他聚合物之间的共价键合。我们展示了利用这种方法的一些应用程序。该方法通过用3D形式的其他聚合物粘合水凝胶来铺平新方法来实现多功能软件和机器。

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