材料科学
柔性电子器件
铜
聚二甲基硅氧烷
数码产品
制作
电极
光电子学
导电体
纳米技术
激光器
电子线路
印刷电路板
转印
复合材料
电气工程
光学
冶金
医学
工程类
替代医学
化学
物理化学
病理
物理
作者
Shi Bai,Shigang Zhang,Wei-Ping Zhou,Delong Ma,Ying Ma,P. C. Joshi,Anming Hu
标识
DOI:10.1007/s40820-017-0139-3
摘要
Stretchable electronic sensing devices are defining the path toward wearable electronics. High-performance flexible strain sensors attached on clothing or human skin are required for potential applications in the entertainment, health monitoring, and medical care sectors. In this work, conducting copper electrodes were fabricated on polydimethylsiloxane as sensitive stretchable microsensors by integrating laser direct writing and transfer printing approaches. The copper electrode was reduced from copper salt using laser writing rather than the general approach of printing with pre-synthesized copper or copper oxide nanoparticles. An electrical resistivity of 96 μΩ cm was achieved on 40-μm-thick Cu electrodes on flexible substrates. The motion sensing functionality successfully demonstrated a high sensitivity and mechanical robustness. This in situ fabrication method leads to a path toward electronic devices on flexible substrates.
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