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首页> 外文期刊>ACS nano >Self-Powered and Self-Functional Cotton Sock Using Piezoelectric and Triboelectric Hybrid Mechanism for Healthcare and Sports Monitoring
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Self-Powered and Self-Functional Cotton Sock Using Piezoelectric and Triboelectric Hybrid Mechanism for Healthcare and Sports Monitoring

机译:使用压电和摩擦电机的医疗保健和体育监测自动和自动功能性棉袜

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摘要

Wearable devices rely on hybrid mechanisms that possess the advantages of establishing a smarter system for healthcare, sports monitoring, and smart home applications. Socks with sensing capabilities can reveal more direct sensory information on the body for longer duration in daily life. However, the limitation of suitable materials for smart textile makes the development of multifunctional socks a major challenge. In this paper, we have developed a self-powered and self-functional sock (S-2-sock) to realize diversified functions including energy harvesting and sensing various physiological signals, i.e., gait, contact force, sweat level, etc., by hybrid integrating poly(3,4-ethylenedioxythiophene) polystyrenesulfonate (PEDOT:PSS)-coated fabric triboelectric nanogenerator (TENG) and lead zirconate titanate (PZT) piezoelectric chips. An output power of 1.71 mW is collected from a PEDOT:PSS-coated sock with mild jumping at 2 Hz and load resistance of 59.7 M Omega The study shows that cotton socks worn daily can potentially be a power source for enabling self-sustained socks comprising wireless transmission modules and integrated circuits in the future. We also investigate the influences of environmental humidity, temperature, and weight variations and verify that our S-2-sock can successfully achieve walking pattern recognition and motion tracking for smart home applications. On the basis of the sensor fusion concept, the outputs from TENG and PZT sensors under exercise activities are effectively merged together for quick detection of the sweat level. By leveraging the hybrid S-2-sock, we can achieve more functionality in the applications of foot-based energy harvesting and monitoring the diversified physiological signals for healthcare, smart homes, etc.
机译:可穿戴设备依赖于混合机制,具有建立医疗保健,体育监测和智能家居应用的更智能系统的优势。具有传感能力的袜子可以揭示身体上的更直接的感官信息,以便在日常生活中更长的时间。然而,智能纺织品的合适材料的限制使得多功能袜的发展成为一个重大挑战。在本文中,我们开发了一种自动和自动功能的袜子(S-2-2袜),实现多元化的功能,包括能量收集和感测各种生理信号,即步态,接触力,汗水等级等,通过杂化聚合聚(3,4-亚乙基氧基噻吩)聚苯乙烯磺酸盐(PEDOT:PSS) - 涂料织物摩擦纳米料(滕)和铅锆酸盐钛酸铅(PZT)压电芯片。从一个PEDOT收集1.71 MW的输出功率:PSS涂层袜子以2 Hz的温和跳跃,负载电阻为59.7米欧米茄,研究表明,每天佩戴的棉花袜子可能是一种用于使自我持续的袜子的电源未来无线传输模块和集成电路。我们还研究了环境湿度,温度和体重变化的影响,并验证了我们的S-2袜子可以成功实现智能家居应用的行走模式识别和运动跟踪。在传感器融合概念的基础上,运动活动中滕和PZT传感器的输出得到了有效地合并在一起,以便快速检测汗水水平。通过利用杂交S-2袜子,我们可以在脚踏的能量收集和监测医疗保健,智能家庭等的多样化生理信号中实现更多功能。

著录项

  • 来源
    《ACS nano》 |2019年第2期|共13页
  • 作者单位

    Natl Univ Singapore Dept Elect &

    Comp Engn 4 Engn Dr 3 Singapore 117576 Singapore;

    Natl Univ Singapore Dept Elect &

    Comp Engn 4 Engn Dr 3 Singapore 117576 Singapore;

    Natl Univ Singapore Dept Elect &

    Comp Engn 4 Engn Dr 3 Singapore 117576 Singapore;

    Shanghai Jiao Tong Univ Dept Micro Nano Elect Natl Key Lab Sci &

    Technol Micro Nano Fabricat Shanghai 200240 Peoples R China;

    Natl Univ Singapore Dept Elect &

    Comp Engn 4 Engn Dr 3 Singapore 117576 Singapore;

    Shanghai Jiao Tong Univ Dept Micro Nano Elect Natl Key Lab Sci &

    Technol Micro Nano Fabricat Shanghai 200240 Peoples R China;

    Soochow Univ Sch Mech &

    Elect Engn Jiangsu Prov Key Lab Adv Robot Suzhou 215123 Peoples R China;

    Natl Univ Singapore Dept Elect &

    Comp Engn 4 Engn Dr 3 Singapore 117576 Singapore;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学;
  • 关键词

    triboelectric; piezoelectric; textile; sock; sensor;

    机译:摩擦电;压电;纺织;袜子;传感器;

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