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首页> 外文期刊>Nano Energy >A stretchable fiber nanogenerator for versatile mechanical energy harvesting and self-powered full-range personal healthcare monitoring
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A stretchable fiber nanogenerator for versatile mechanical energy harvesting and self-powered full-range personal healthcare monitoring

机译:可拉伸的纤维纳米料,用于多功能机械能量收集和自动全范围个人医疗监测

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摘要

AbstractWearable electronics have gained dramatic development in recent years, owing to the advancement in flexible/stretchable electronics, and achieved considerable progress in various applications. Nanogenerators capable of harvesting energy from human activities is considered as a promising alternative for powering the wearable electronic devices, considering the sustainability and rich biomechanical energy from human body. Currently, most of the nanogenerators are aimed at converting limited forms of mechanical energy, mostly pressing or bending, which hampers adaptive exploitation of bodily energy source. Also, the incapability to respond to multiple forms of mechanical stimuli deters the nanogenerators from functioning as full-range human activities sensors. Here, we devise a stretchable integrated nanogenerator-sensory coaxial core-sheath fiber with improved functionality and sustainability. The combination of materials engineering and structure design enables the fiber to scavenge versatile mechanical energy, including stretch, bend, twist and press, through a gap size variation induced electrostatic effect. Besides, the fiber realizes the detection of joint-bending and joint-twisting related motions, such as walking and elbow rotation, and also succeeds in capturing subtle physiological signals, such as breath, pulse and speech recognition, which paves the way for full-range personal healthcare monitoring and documenting in a self-powered, wearable and noninvasive manner.
机译:<![cdata [ 抽象 近年来可穿戴电子设备获得了剧烈的发展,由于灵活/可拉伸电子设备的进步,并在各种应用中取得了相当大的进展。能够从人体活动中收取能量的纳米液被认为是为可穿戴电子设备供电的有前途的替代方案,考虑到人体的可持续性和丰富的生物力学能量。目前,大多数纳米液旨在转换有限的机械能,大多数压或弯曲,​​这阻碍了对体能源的自适应开采。此外,响应多种形式的机械刺激的不能阻止纳米液作为全范围人类活性传感器的功能。在这里,我们设计了一种可拉伸的集成纳米电磁炉 - 感官同轴芯鞘芯,具有改善的功能和可持续性。材料工程和结构设计的组合使光纤能够通过间隙尺寸变化感应静电效应来清除多功能机械能,包括拉伸,弯曲,扭曲和压力。此外,光纤实现了接头弯曲和关节扭曲相关运动的检测,例如步行和肘部旋转,并且还在捕获微妙的生理信号,例如呼吸,脉冲和语音识别,这为全部铺平了道路以自动的,可穿戴和非侵入性的方式进行个人医疗监控和记录。 < CE:第TI部分

著录项

  • 来源
    《Nano Energy》 |2017年第2017期|共8页
  • 作者单位

    Department of Electrical and Computer Engineering National University of Singapore;

    Department of Electrical and Computer Engineering National University of Singapore;

    Department of Electrical and Computer Engineering National University of Singapore;

    State Key Laboratory of High Performance Ceramics and Superfine Microstructure Shanghai Institute of Ceramics Chinese Academy of Sciences;

    State Key Laboratory of High Performance Ceramics and Superfine Microstructure Shanghai Institute of Ceramics Chinese Academy of Sciences;

    State Key Laboratory of High Performance Ceramics and Superfine Microstructure Shanghai Institute of Ceramics Chinese Academy of Sciences;

    Department of Electrical and Computer Engineering National University of Singapore;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 能源与动力工程;
  • 关键词

    Stretchable fiber nanogenerator; Wearable; Self-powered; Personal healthcare monitoring;

    机译:可伸展纤维纳米液;可穿戴;自我支持;个人医疗保健监测;

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