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Visually Imperceptible Liquid-Metal Circuits for Transparent, Stretchable Electronics with Direct Laser Writing

机译:具有直接激光写入功能的透明,可拉伸电子产品的视觉上看不见的液态金属电路

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摘要

A material architecture and laser-based microfabrication technique is introduced to produce electrically conductive films (sheet resistance = 2.95 sq(-1); resistivity = 1.77 x 10(-6) m) that are soft, elastic (strain limit 100%), and optically transparent. The films are composed of a grid-like array of visually imperceptible liquid-metal (LM) lines on a clear elastomer. Unlike previous efforts in transparent LM circuitry, the current approach enables fully imperceptible electronics that have not only high optical transmittance (85% at 550 nm) but are also invisible under typical lighting conditions and reading distances. This unique combination of properties is enabled with a laser writing technique that results in LM grid patterns with a line width and pitch as small as 4.5 and 100 mu m, respectivelyyielding grid-like wiring that has adequate conductivity for digital functionality but is also well below the threshold for visual perception. The electrical, mechanical, electromechanical, and optomechanical properties of the films are characterized and it is found that high conductivity and transparency are preserved at tensile strains of approximate to 100%. To demonstrate their effectiveness for emerging applications in transparent displays and sensing electronics, the material architecture is incorporated into a couple of illustrative use cases related to chemical hazard warning.
机译:引入了一种材料结构和基于激光的微细加工技术来生产柔软,有弹性(应变极限> 100%)的导电膜(薄层电阻= 2.95 sq(-1);电阻率= 1.77 x 10(-6)m) ,并且光学透明。薄膜由透明弹性体上的视觉上看不见的液态金属(LM)线的网格状阵列组成。与先前在透明LM电路中所做的努力不同,当前的方法使完全无法察觉的电子器件不仅具有高的光学透射率(在550 nm处大于85%),而且在典型的照明条件和读取距离下也不可见。这种独特的特性组合可以通过激光写入技术实现,该技术可以产生线宽和间距分别为4.5和100μm的LM栅格图案,并产生了网格状布线,具有足够的导电性以实现数字功能,但也远低于视觉感知的阈值。对薄膜的电,机械,机电和光机械性能进行了表征,发现在约100%的拉伸应变下仍可保持高电导率和透明度。为了展示其在透明显示器和传感电子设备中新兴应用的有效性,将材料体系结构并入了与化学危险警告相关的两个说明性用例中。

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