材料科学
石墨烯
微加工
标度系数
数码产品
纳米技术
应变计
柔性电子器件
光电子学
可穿戴技术
可穿戴计算机
复合材料
计算机科学
制作
电气工程
医学
工程类
病理
嵌入式系统
替代医学
作者
Yong Ju Yun,Jongil Ju,Joong Hoon Lee,Sung‐Hwan Moon,Soon‐Jung Park,Young Heon Kim,Won G. Hong,Dong Han Ha,Heeyeong Jang,Geon Hui Lee,Hyung‐Min Chung,Jonghyun Choi,Sung Woo Nam,Sanghoon Lee,Yongseok Jun
标识
DOI:10.1002/adfm.201701513
摘要
Epidermal electronics are extensively explored as an important platform for future biomedical engineering. Epidermal devices are typically fabricated using high‐cost methods employing complex vacuum microfabrication processes, limiting their widespread potential in wearable electronics. Here, a low‐cost, solution‐based approach using electroconductive reduced graphene oxide (RGO) sheets on elastic and porous poly(dimethylsiloxane) (PDMS) thin films for multifunctional, high‐performance, graphene‐based epidermal bioelectrodes and strain sensors is presented. These devices are fabricated employing simple coatings and direct patterning without using any complicated microfabrication processes. The graphene bioelectrodes show a superior stretchability (up to 150% strain), with mechanical durability up to 5000 cycles of stretching and releasing, and low sheet resistance (1.5 kΩ per square), and the graphene strain sensors exhibit a high sensitivity (a gauge factor of 7 to 173) with a wide sensing range (up to 40% strain). Fully functional applications of dry bioelectrodes in monitoring human electrophysiological signals (i.e., electrocardiogram, electroencephalography, and electromyogram) and highly sensitive strain sensors for precise detection of large‐scale human motions are demonstrated. It is believed that our unique processing capability and multifunctional device platform based on RGO/porous PDMS will pave the way for low‐cost processing and integration of 2D materials for future wearable electronic skin.
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