Liang Bo, Wei Jinwei, Fang Lu, Cao Qingpeng, Tu Tingting, Ren Hangxu, Ye Xuesong
College of Biomedical Engineering and Instrument Science, Zhejiang University, Hangzhou 310027, PR China.
College of Life Information Science and Instrument Engineering, Hangzhou Dianzi University, Hangzhou 310018, PR China.
ACS Omega. 2019 Dec 5;4(25):21072-21077. doi: 10.1021/acsomega.9b02440. eCollection 2019 Dec 17.
A rapid and inexpensive method to produce high-resolution liquid metal patterns and electronics on stretchable substrates was introduced. Two liquid-phase gallium-indium (GaIn) alloy patterns, conductive lines, and interdigitated electrodes, were directly written or shadow mask-printed on a prestretched elastomeric substrate surface. Then, the prestretched substrate was released to recover its original length, and thus, electronic patterns simultaneously shrank on it. After these patterns were transferred to another prestretched substrate by the stamp printing method, the patterning resolution was demonstrated to increase by totally 50 times for the two successive stretch-release-shrink operations. Additionally, the resistance of the handwritten liquid metal conductive line traces remained nearly unchanged during the stretching process, which is believed to be feasible for electrical connections in stretchable electronics. The rapid prototyping of a serpentine strain sensor was successfully demonstrated to be highly sensitive and repeatable with a stretching ratio ranging from 0 to 200%. The proposed method paves a new way to fabricate stretchable electronic devices with high patterning resolution.
介绍了一种在可拉伸基板上制作高分辨率液态金属图案和电子产品的快速且廉价的方法。两种液相镓铟(GaIn)合金图案,即导线和叉指电极,被直接书写或通过荫罩印刷在预拉伸的弹性体基板表面上。然后,释放预拉伸的基板以恢复其原始长度,因此,电子图案在其上同时收缩。通过压印法将这些图案转移到另一个预拉伸的基板上后,对于连续两次拉伸 - 释放 - 收缩操作,图案分辨率被证明总共提高了50倍。此外,手写液态金属导线迹线的电阻在拉伸过程中几乎保持不变,这被认为对于可拉伸电子产品中的电气连接是可行的。成功证明了蛇形应变传感器的快速原型制作具有高灵敏度和可重复性,拉伸比范围为0至200%。所提出的方法为制造具有高图案分辨率的可拉伸电子器件开辟了一条新途径。