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水印刷电子学:用于生物电子学和人机交互的超薄可拉伸 Ag-In-Ga 电子皮肤。

Hydroprinted Electronics: Ultrathin Stretchable Ag-In-Ga E-Skin for Bioelectronics and Human-Machine Interaction.

机构信息

Institute of Systems and Robotics , University of Coimbra , Coimbra 3030-290 , Portugal.

Integrated Soft Materials Lab, Department of Mechanical Engineering , Carnegie Mellon University , Pittsburgh , Pennsylvania 15213 , United States.

出版信息

ACS Appl Mater Interfaces. 2018 Nov 14;10(45):38760-38768. doi: 10.1021/acsami.8b13257. Epub 2018 Oct 30.

DOI:10.1021/acsami.8b13257
PMID:30338978
Abstract

We introduce a soft ultrathin and stretchable electronic skin with surface-mounted components that can be transferred and wrapped around any three-dimensional (3D) surface or self-adhere to the human skin. The ∼5 μm thick circuit is fabricated by printing the pattern over a temporary tattoo paper using a desktop laser printer, which is then coated with a silver ink and eutectic gallium-indium (EGaIn) liquid metal alloy. The resulting "Ag-In-Ga" traces are highly conductive and maintain low electrical resistivity as the circuit is stretched to conform to nondevelopable 3D surfaces. We also address integration of surface-mounted microelectronic chips by introducing a novel z-axis conductive interface composed of magnetically aligned EGaIn-coated Ag-Ni microparticles embedded in polyvinyl alcohol (PVA). This " zPVA conductive glue" allows for robust electrical contacts with microchips that have pins with dimensions as small as 300 μm. If printed on the temporary tattoo transfer paper, the populated circuit can be attached to a 3D surface using hydrographic transfer. Both printing and interfacing processes can be performed at the room temperature. We demonstrate examples of applications, including an electronic tattoo over the human epidermis for electromyography signal acquisition, an interactive circuit with touch buttons, and light-emitting diodes transferred over the 3D printed shell of a robotic prosthetic hand, and a proximity measurement skin transferred over a 3D surface.

摘要

我们介绍了一种具有表面安装组件的柔软超薄可拉伸电子皮肤,可以转移并包裹在任何三维(3D)表面上,或自行粘附在人体皮肤上。厚度约为 5μm 的电路是通过使用台式激光打印机在临时纹身纸上打印图案来制造的,然后在其表面涂覆一层银油墨和共晶镓-铟(EGaIn)液态金属合金。由此制成的“Ag-In-Ga”迹线具有高度导电性,并且当电路拉伸以适应不可展开的 3D 表面时,其电阻保持较低。我们还通过引入一种由磁性排列的 EGaIn 涂层 Ag-Ni 微颗粒嵌入聚乙烯醇(PVA)中组成的新型 z 轴导电接口来解决表面安装微电子芯片的集成问题。这种“zPVA 导电胶”允许与具有尺寸小至 300μm 的引脚的微芯片进行牢固的电接触。如果将其打印在临时纹身转移纸上,则可以使用水射流转移将填充电路粘贴到 3D 表面上。打印和接口过程都可以在室温下进行。我们展示了一些应用示例,包括贴附在人类表皮上用于肌电图信号采集的电子纹身、带有触摸按钮的交互式电路、转移到 3D 打印机器人假肢手外壳上的发光二极管,以及转移到 3D 表面上的接近度测量皮肤。

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