High internal phase emulsions gel ink fordirect-ink-writing 3D printing of liquid metal
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Springer Nature Limited
Abstract
【Abstract】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.
Description
随着3D打印技术在柔性电子器件的设计和制造领域中的不断应用与发展,液态金属的3D打印技术,尤其是挤出型的3D打印技术,引起了极大的关注。然而,液态金属的低粘度和高表面张力使其不适用于挤出型3D打印,因此需要对其流变特性进行调控。目前的解决办法是将液态金属分散进聚合物基体内(如PVA溶液、聚二甲基硅氧烷),形成复合导电油墨,尽管这些墨水具备剪切变稀的特性,能够顺利从打印针头挤出,但仅能实现在平面基底上的图案打印,打印线条极易蠕变,无法进行高度上堆叠。此外,液态金属油墨的可打印性与导电激活之间也存在矛盾,快速实现复合油墨中液态金属阈渗的方法仍需要进一步研究。针对上述问题,白华教授与胡晓兰副教授团队在液态金属的3D打印研究方向取得重要进展,团队实现了液态金属导电线路在柔性基底的3D打印,并首次实现了在非平面结构(0°~ 90°)上3D打印液态金属导线,这将扩大液态金属在复杂结构器件上的应用。文章第一作者是我校材料学院2022级博士生林泽文。
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Nature Communications,2024,15:doi.org/10.1038/s41467-024-48906-w