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(V014T11A034)Liquid Metal Printing for Manufacturing Large-Scale Flexible Electronic Circuits

机译:(V014T11A034)制造大型柔性电子电路的液态金属印刷

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The advancement of printed electronics technology has significantly facilitated the development of electronic engineering. However, so far there still remain big barriers to impede the currently available printing technologies from being extensively used. Many of the difficulties came from the factors like: complicated ink-configurations, high post-treatment temperature, poor conductivity in room temperature and extremely high cost and time consuming fabrication process. From an alternative strategy, our recently invented desktop liquid metal printer offered a flexible way to better address the above deficiencies. Through modifying the system developed in the authors' lab, here we demonstrated the feasibility of the method in quickly and reliably printing out various large area electronic circuits. Particularly, the liquid metal ink made of Galn_(24.5) alloy, with a high electrical resistivity of 2.98×10~(-7) Ω-m, can be rapidly printed on polyvinyl chloride (PVC) substrate with maximum sizes spanning from centimeter size to meter large. Most important of all, all these manufactures were achieved at an extremely low cost level which clearly shows the llbiquitous value of the liquid metal printer. To evaluate the working performance of the present electronics fabrication method, the electrical resistance and wire width of the printed circuits were investigated under multiple overprinting cycles. For practical illustration purpose, LED lighting conductive patterns which can serve as a functional electronic decoration art were fabricated on the flexible plastic substrate. The present work sets up an example for directly making large-scale ending consumer electronics via a high-efficiency and low-cost way.
机译:印刷电子技术的进步已经显着促进了电子工程的发展。然而,到目前为止,仍然存在妨碍当前可用的印刷技术被广泛使用的大障碍。许多困难来自以下因素,如:复杂的墨水配置,高后处理温度,室温不良导电性,以及极高的成本和耗时的制造过程。从替代战略来看,我们最近发明的桌面液态金属打印机提供了一种灵活的方法来更好地解决上述缺陷。通过修改作者实验室中开发的系统,在这里,我们展示了快速可靠地打印出各种大面积电子电路的方法的可行性。特别地,通过Galn_(24.5)合金制成的液态金属油墨,具有2.98×10〜(-7)Ω-m的高电阻率,可以在聚氯乙烯(PVC)基板上快速印刷,其最大尺寸从厘米尺寸跨越米大。最重要的是,所有这些制造商都以极低的成本水平实现,这清楚地表明了液态金属打印机的流动值。为了评估本电子制造方法的工作性能,在多个叠印周期下研究了印刷电路的电阻和线宽。为实用的说明目的,可以在柔性塑料基板上制造可用作功能电子装饰艺术的LED照明导电图案。本作者设定了一个例子,可以通过高效率和低成本方式直接制作大型结束消费电子产品。

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