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首页> 外文期刊>ACS applied materials & interfaces >Laser-Processed Nature-Inspired Deformable Structures for Breathable and Reusable Electrophysiological Sensors toward Controllable Home Electronic Appliances and Psychophysiological Stress Monitoring
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Laser-Processed Nature-Inspired Deformable Structures for Breathable and Reusable Electrophysiological Sensors toward Controllable Home Electronic Appliances and Psychophysiological Stress Monitoring

机译:激光加工的自然启发可变形结构,可用于可控家用电器和心理生理压力监测的可透气和可重复使用的电生理传感器

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摘要

Physiological monitoring through skin patch stretchable devices has received extensive attention because of their significant findings in many human-machine interaction applications. In this paper, we present novel nature-inspired, kiri-spider, serpentine structural designs to sustain mechanical deformations under complex stress environments. Strain-free mechanical structures involving stable high areal coverage (spiderweb), three-dimensional out-of-plane deformations (kirigami), and two-dimensional (2D) stretchable (2D spring) electrodes demonstrated high levels of mechanical loading under various strains, which were verified through theoretical and experimental studies. Alternative to conventional microfabrication procedures, sensors fabricated by a facile and rapid benchtop programmable laser machine enabled the realization of low-cost, high-throughput manufacture, followed by transferring procedures with a nearly 100% yield. For the first time, we demonstrated laser-processed thin (similar to 10 mu m) flexible filamentary patterns embedded within the solution-processed polyimide to make it compatible with current flexible printed circuit board electronics. A patch-based sensor with thin, breathable, and sticky nature exhibited remarkable water permeability >20 g h(-1) m(-2) at a thickness of 250 mu m. Moreover, the reusability of the sensor patch demonstrated the significance of our patch-based electrophysiological sensor. Furthermore, this wearable sensor was successfully implemented to control human-machine interfaces to operate home electronic appliances and monitor mental stress in a pilot study. These advances in novel mechanical architectures with good sensing performances provide new opportunities in wearable smart sensors.
机译:通过皮肤贴片的生理监测可伸展设备由于许多人机交互应用中的重要发现而受到广泛的关注。在本文中,我们提出了新的自然风格,蛇形蜘蛛,蛇形结构设计,在复杂的压力环境下维持机械变形。涉及稳定的高面积覆盖(SpiderWeb),三维外平面变形(Kirigami)和二维(2D)拉伸(2D弹簧)电极的无应变机械结构,在各种菌株下显示出高水平的机械负载,通过理论和实验研究验证。替代传统的微型制备程序,由容易和快速的台式可编程激光机制造的传感器使得能够实现低成本,高通量制造,然后通过近100%的产量转移过程。我们首次证明了激光加工的薄(类似于10μm)柔性丝图案,嵌入在溶液加工的聚酰亚胺内,使其与电流柔性印刷电路板电子兼容。基于贴片的传感器,具有薄,透气和粘性的性质,其厚度为250μm的厚度呈显着的水渗透性> 20gh h(-1)m(-2)。此外,传感器贴片的可重用性证明了我们的贴剂基电生理传感器的重要性。此外,这种可穿戴传感器成功实施以控制人机接口,以在试点研究中监测家用电子设备并监测精神压力。这些具有良好传感性能的新型机械架构的这些进步为可穿戴智能传感器提供了新的机会。

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  • 来源
    《ACS applied materials & interfaces》 |2019年第31期|共10页
  • 作者单位

    Sungkyunkwan Univ Dept Adv Mat Sci &

    Engn Multifunct Nano Bio Elect Lab Suwon 16419 South Korea;

    DGIST Dept Informat &

    Commun Engn ICE Daegu 42988 South Korea;

    Kyung Hee Univ Acupuncture &

    Meridian Sci Res Ctr 26 Kyungheedae Ro Seoul 02447 South Korea;

    Sungkyunkwan Univ Dept Adv Mat Sci &

    Engn Multifunct Nano Bio Elect Lab Suwon 16419 South Korea;

    Kyung Hee Univ Dept Elect Engn 1732 Deogyoung Rd Yongin 17104 Gyeonggi South Korea;

    Kyung Hee Univ Acupuncture &

    Meridian Sci Res Ctr 26 Kyungheedae Ro Seoul 02447 South Korea;

    Sungkyunkwan Univ Dept Adv Mat Sci &

    Engn Multifunct Nano Bio Elect Lab Suwon 16419 South Korea;

    Sungkyunkwan Univ Dept Adv Mat Sci &

    Engn Multifunct Nano Bio Elect Lab Suwon 16419 South Korea;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    laser processed; nature-inspired; kirigami; electrophysiological; serpentine;

    机译:激光加工;自然启发;kirigami;电生理学;蛇纹石;

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