Lin Zewen, Qiu Xiaowen, Cai Zhouqishuo, Li Jialiang, Zhao Yanan, Lin Xinping, Zhang Jinmeng, Hu Xiaolan, Bai Hua
College of Materials, Xiamen University, Xiamen, 361005, PR China.
Innovation Laboratory for Sciences and Technologies of Energy Materials of Fujian Province (IKKEM), Xiamen, China.
Nat Commun. 2024 Jun 5;15(1):4806. doi: 10.1038/s41467-024-48906-w.
3D printing of liquid metal remains a big challenge due to its low viscosity and large surface tension. In this study, we use Carbopol hydrogel and liquid gallium-indium alloy to prepare a liquid metal high internal phase emulsion gel ink, which can be used for direct-ink-writing 3D printing. The high volume fraction (up to 82.5%) of the liquid metal dispersed phase gives the ink excellent elastic properties, while the Carbopol hydrogel, as the continuous phase, provides lubrication for the liquid metal droplets, ensuring smooth flow of the ink during shear extrusion. These enable high-resolution and shape-stable 3D printing of three-dimensional structures. Moreover, the liquid metal droplets exhibit an electrocapillary phenomenon in the Carbopol hydrogel, which allows for demulsification by an electric field and enables electrical connectivity between droplets. We have also achieved the printing of ink on flexible, non-planar structures, and demonstrated the potential for alternating printing with various materials.
由于液态金属的低粘度和大表面张力,其3D打印仍然是一个巨大的挑战。在本研究中,我们使用卡波姆水凝胶和液态镓铟合金制备了一种液态金属高内相乳液凝胶墨水,可用于直接墨水书写3D打印。液态金属分散相的高体积分数(高达82.5%)赋予墨水优异的弹性性能,而卡波姆水凝胶作为连续相,为液态金属液滴提供润滑,确保墨水在剪切挤压过程中顺畅流动。这些使得能够对三维结构进行高分辨率和形状稳定的3D打印。此外,液态金属液滴在卡波姆水凝胶中表现出电毛细管现象,这允许通过电场进行破乳,并实现液滴之间的电连通性。我们还实现了在柔性、非平面结构上打印墨水,并展示了与各种材料交替打印的潜力。