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表皮电子学。

Epidermal electronics.

机构信息

Department of Materials Science and Engineering, Beckman Institute for Advanced Science and Technology, and Frederick Seitz Materials Research Laboratory, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

出版信息

Science. 2011 Aug 12;333(6044):838-43. doi: 10.1126/science.1206157.

Abstract

We report classes of electronic systems that achieve thicknesses, effective elastic moduli, bending stiffnesses, and areal mass densities matched to the epidermis. Unlike traditional wafer-based technologies, laminating such devices onto the skin leads to conformal contact and adequate adhesion based on van der Waals interactions alone, in a manner that is mechanically invisible to the user. We describe systems incorporating electrophysiological, temperature, and strain sensors, as well as transistors, light-emitting diodes, photodetectors, radio frequency inductors, capacitors, oscillators, and rectifying diodes. Solar cells and wireless coils provide options for power supply. We used this type of technology to measure electrical activity produced by the heart, brain, and skeletal muscles and show that the resulting data contain sufficient information for an unusual type of computer game controller.

摘要

我们报告了几类电子系统,其厚度、有效弹性模量、弯曲刚度和面密度与表皮相匹配。与传统的基于晶圆的技术不同,将这些器件层压到皮肤上仅基于范德华相互作用就可以实现共形接触和充分的附着力,对用户来说是机械上不可见的。我们描述了包含电化学生物传感器、温度传感器、应变传感器以及晶体管、发光二极管、光电探测器、射频电感器、电容器、振荡器和整流二极管的系统。太阳能电池和无线线圈为电源供应提供了选择。我们使用这种类型的技术来测量心脏、大脑和骨骼肌产生的电活动,并表明由此产生的数据包含足够的信息用于一种特殊类型的电脑游戏控制器。

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