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Wearable and Highly Sensitive Graphene Strain Sensors for Human Motion Monitoring

机译:用于人体运动监测的可穿戴高灵敏度石墨烯应变传感器

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摘要

Sensing strain of soft materials in small scale has attracted increasing attention. In this work, graphene woven fabrics (GWFs) are explored for highly sensitive sensing. A flexible and wearable strain sensor is assembled by adhering the CWFs on polymer and medical tape composite film. The sensor exhibits the following features: ultra-light, relatively good sensitivity, high reversibility, superior physical robustness, easy fabrication, ease to follow human skin deformation, and so on. Some weak human motions are chosen to test the notable resistance change, including hand clenching, phonation, expression change, blink, breath, and pulse. Because of the distinctive features of high sensitivity and reversible extensibility, the GWFs based piezoresistive sensors have wide potential applications in fields of the displays, robotics, fatigue detection, body monitoring, and so forth.
机译:小规模的软材料传感应变已引起越来越多的关注。在这项工作中,对石墨烯机织织物(GWF)进行了探索,以实现高度灵敏的传感。通过将CWF粘附在聚合物和医用胶带复合薄膜上来组装柔性可穿戴应变传感器。该传感器具有以下特征:超轻,灵敏度相对较高,可逆性高,物理鲁棒性强,易于制造,易于跟随人的皮肤变形等。选择一些微弱的人体动作来测试明显的阻力变化,包括手握紧,发声,表情变化,眨眼,呼吸和脉搏。由于具有高灵敏度和可逆可扩展性的独特功能,基于GWF的压阻传感器在显示器,机器人技术,疲劳检测,身体监测等领域具有广泛的潜在应用。

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  • 来源
    《Advanced Functional Materials》 |2014年第29期|4666-4670|共5页
  • 作者单位

    Department of Physics and Nanoscience and Nanotechnology Laboratory Institute for Advanced Study Nanchang University Nanchang 330031, China,Center for Nano and Micro Mechanics Tsinghua University Beijing 100084, China;

    Department of Physics and Nanoscience and Nanotechnology Laboratory Institute for Advanced Study Nanchang University Nanchang 330031, China;

    Center for Nano and Micro Mechanics Tsinghua University Beijing 100084, China,School of Materials Science and Engineering State Key Laboratory of New Ceramics and Fine Processing Key Laboratory of Materials Processing Technology of MOE singhua University Beijing 100084, China;

    Center for Nano and Micro Mechanics Tsinghua University Beijing 100084, China,School of Materials Science and Engineering State Key Laboratory of New Ceramics and Fine Processing Key Laboratory of Materials Processing Technology of MOE singhua University Beijing 100084, China;

    School of Materials Science and Engineering State Key Laboratory of New Ceramics and Fine Processing Key Laboratory of Materials Processing Technology of MOE singhua University Beijing 100084, China;

    Center for Nano and Micro Mechanics Tsinghua University Beijing 100084, China,School of Materials Science and Engineering State Key Laboratory of New Ceramics and Fine Processing Key Laboratory of Materials Processing Technology of MOE singhua University Beijing 100084, China;

    School of Materials Science and Engineering State Key Laboratory of New Ceramics and Fine Processing Key Laboratory of Materials Processing Technology of MOE singhua University Beijing 100084, China;

    Department of Mechanical Engineering Tsinghua University Beijing 100084, China;

    Center for Nano and Micro Mechanics Tsinghua University Beijing 100084, China,School of Materials Science and Engineering State Key Laboratory of New Ceramics and Fine Processing Key Laboratory of Materials Processing Technology of MOE singhua University Beijing 100084, China;

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