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Electrode-Free Triboelectric Nanogenerator for Harvesting Human Biomechanical Energy and as a Versatile Inartificial Physiological Monitor

机译:用于收获人生物力学能量的无电极摩擦纳米料,作为多功能的人工生理监测器

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摘要

The emergence of portable health monitors and wearable versatile sensors brings a promising approach for real-time physiological surveillance. However, the complicated wiring connections and unsustainable power supplies have largely hindered their combination. Herein, a human body-based electrode-free triboelectric nanogenerator (TENG) is demonstrated, which can not only effectively harvest biomechanical energy from human walking and running, but can also serve as a self-powered versatile inartificial physiological monitor. Most importantly, no electrode material is required in the TENG. In virtue of triboelectrification between the sole and the floor, electricity is produced during human motions with the desirable open-circuit voltage of more than 150V under casual walking. The performance of the TENG is investigated under variable environmental conditions and different configurations to evaluate its adaptability. By extracting inartificial electric signals from any part of the human body, information of the footwork, lameness, body weight, and jumping height can be actively transmitted out without using any external power sources. This work provides a new self-powered route of health surveillance and disease diagnosis.
机译:便携式健康监视器和可穿戴多功能传感器的出现带来了一种有希望的实时生理监测方法。然而,复杂的接线连接和不可持续的电源在很大程度上阻碍了它们的组合。在此,证明了一种基于人体的无电极的摩擦纳米能器(Teng),其不仅可以有效地从人类行走和运行中收获生物力学能量,而且还可以作为自我通用的多功能人为中间生理监测器。最重要的是,滕中不需要电极材料。在鞋底和地板之间的摩擦力方面,在人类运动过程中产生电力,在休闲行走下的理想开路电压超过150V。在可变的环境条件和不同的配置下调查Teng的性能,以评估其适应性。通过从人体的任何部分提取从人体的任何部分,可以在不使用任何外部电源的情况下在不使用任何外部电源的情况下主动地传输信息的信息。这项工作提供了一种新的自动监测和疾病诊断路径。

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