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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Network cracks-based wearable strain sensors for subtle and large strain detection of human motions
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Network cracks-based wearable strain sensors for subtle and large strain detection of human motions

机译:基于网络裂缝的可穿戴应变传感器,用于人类运动的微妙和大应变检测

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摘要

As an imitation of human skin's tactile sensing ability, flexible and stretchable strain sensors are highly desirable because of their various applications in health monitoring, robotics, and human-machine interfaces. However, it is still a big challenge to fabricate strain sensors with both high sensitivity and broad sensing range. Herein, we report a simple, low cost and scalable fabrication strategy to construct high performance strain sensors based on network cracks formed in multilayer carbon nanotubes (CNTs) films/polydimethylsiloxane (PDMS) composites. The microscopic thickness of multilayer CNTs can be precisely controlled to tune the formation of network cracks in CNTs films/PDMS composite, which is critical for simultaneously amplifying the sensitivity signal and sensing range of strain sensors. The optimized CNTs films/PDMS composite under appropriate stretching would fracture into gaps, islands, and bridges connecting separated islands. The formed network cracks easily, resulting in both high gauge factor (maximum value of 87) and a wide sensing range (up to 100%) of the strain sensor, which allows the detection of strain as low as 0.007% with excellent stability (1500 cycles), making it suitable for both subtle and large strain detection, including subtle signals of artery pulses, music vibration and large scale motions of joint bending.
机译:作为人体皮肤的触觉感测能力的模仿,由于它们在健康监测,机器人和人机界面中的各种应用,因此非常需要柔性和可伸缩的应变传感器。然而,在具有高灵敏度和广泛的传感范围内制造应变传感器仍然是一个很大的挑战。在此,我们报告了一种简单,低成本和可扩展的制造策略,以构建基于在多层碳纳米管(CNT)膜/聚二甲基硅氧烷(PDMS)复合材料中形成的网络裂缝的高性能应变传感器。可以精确地控制多层CNT的微观厚度,以调整CNT薄膜/ PDMS复合材料中的网络裂缝的形成,这对于同时放大灵敏度传感器的灵敏度信号和感测范围至关重要。在适当拉伸下的优化的CNT薄膜/ PDMS复合材料将骨折,岛屿和连接分离岛的桥梁。所形成的网络容易裂缝,导致高规计因子(最大值87)和宽的传感范围(最多100%)的应变传感器,允许检测低至0.007%,具有优异的稳定性(1500循环),使其适用于微妙和大规模的应变检测,包括动脉脉冲的微妙信号,音乐振动和关节弯曲的大规模运动。

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  • 作者单位

    Chinese Acad Sci Key Lab Graphene Technol &

    Applicat Zhejiang Prov Ningbo Inst Mat Technol &

    Engn Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Key Lab Graphene Technol &

    Applicat Zhejiang Prov Ningbo Inst Mat Technol &

    Engn Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Key Lab Graphene Technol &

    Applicat Zhejiang Prov Ningbo Inst Mat Technol &

    Engn Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Key Lab Graphene Technol &

    Applicat Zhejiang Prov Ningbo Inst Mat Technol &

    Engn Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Key Lab Graphene Technol &

    Applicat Zhejiang Prov Ningbo Inst Mat Technol &

    Engn Ningbo 315201 Zhejiang Peoples R China;

    Max Planck Inst Polymer Res Ackermannweg 10 D-55128 Mainz Germany;

    Natl Sun Yat Sen Univ Dept Mat &

    Optoelect Sci Kaohsiung 804 Taiwan;

    Chinese Acad Sci Key Lab Graphene Technol &

    Applicat Zhejiang Prov Ningbo Inst Mat Technol &

    Engn Ningbo 315201 Zhejiang Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
  • 关键词

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