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High-Resolution 3D Printing of Stretchable Hydrogel Structures Using Optical Projection Lithography

机译:使用光学投影光刻的可拉伸水凝胶结构的高分辨率3D打印

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Double-network (DN) hydrogels, with their unique combination of mechanical strength and toughness, have emerged as promising materials for soft robotics and tissue engineering. In the past decade, significant effort has been devoted to synthesizing DN hydrogels with high stretchability and toughness; however, shaping the DN hydrogels into complex and often necessary user-defined two-dimensional (2D) and three-dimensional (3D) geometries remains a fabrication challenge. Here, we report a new fabrication method based on optical projection lithography to print DN hydrogels into customizable 2D and 3D structures within minutes. DN hydrogels were printed by first photo-crosslinking a single network structure via spatially modulated light patterns followed by immersing the printed structure in a calcium bath to induce ionic cross-linking. Results show that DN structures made by this method can stretch four times their original lengths. We show that strain and the elastic modulus of printed structures can be tuned based on the hydrogel composition, cross-linker and photoinitiator concentrations, and laser light intensity. To our knowledge, this is the first report demonstrating quick lithography and high-resolution printing of DN (covalent and ionic) hydrogels within minutes. The ability to shape tough and stretchable DN hydrogels in complex structures will be potentially useful in a broad range of applications.
机译:双网络(DN)水凝胶具有独特的机械强度和韧性组合,作为软机器人和组织工程的有希望的材料。在过去的十年中,致力于合成具有高拉伸性和韧性的DN水凝胶;然而,将DN水凝胶成形为复杂的并且通常是必需的用户定义的二维(2D)和三维(3D)几何形状仍然是制造挑战。这里,我们报告了一种基于光学投影光刻的新制造方法,以在分钟内将DN水凝胶印刷成可定制的2D和3D结构。通过通过空间调制的光图案首先光交联单个网络结构印刷DN水凝胶,然后将印刷结构浸入钙浴中以诱导离子交联。结果表明,该方法制造的DN结构可以伸展其原始长度的四倍。我们表明,可以基于水凝胶组合物,交联剂和光引发剂浓度和激光强度来调谐所述印刷结构的应变和弹性模量。为了我们的知识,这是第一份报告在分钟内证明了快速光刻和高分辨率印刷的DN(共价和离子)水凝胶。在复杂结构中塑造坚韧和可拉伸的DN水凝胶的能力将可能在广泛的应用中有用。

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