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基于全密闭腔结构的摩擦纳米发电机鞋垫,用于高性能生物力学能量收集。

An airtight-cavity-structural triboelectric nanogenerator-based insole for high performance biomechanical energy harvesting.

机构信息

Key Laboratory of Optoelectronic Technology & Systems (Ministry of Education), Department of Optoelectronic Engineering, Chongqing University, Chongqing 400044, P.R. China.

出版信息

Nanoscale. 2019 Apr 4;11(14):6802-6809. doi: 10.1039/c9nr00083f.

Abstract

Human biomechanical energy is considered as a potential solution for providing electricity to wearable electronics due to its fluctuating amplitude and low frequency. Here, we present a waterproof and high-performance triboelectric nanogenerator (TENG)-based insole to scavenge human motion energy for the sustainable working of portable devices. In the protocol, an airtight-cavity-airbag structural insole based on a TENG was designed to collect mechanical energy. An elastic airbag was used to drive the contact and separation of triboelectric layers through their corresponding expansion and contraction. Owing to these structural innovations, this TENG-based insole performs with outstanding electrical output, is able to generate an alternating current with a maximum power of 5.47 mW under human walking, and can charge a 960 μF capacitor to 1.5 V in 9 min. With this novel structure, the designed insole can be a great wearable energy harvesting device for driving wearable electronics with energy converted from human motion. The results suggest broad potential applications ranging from powering personal sensing devices to the Internet of Things.

摘要

人体生物力学能量因其波动幅度和低频而被认为是为可穿戴电子设备提供电力的一种潜在解决方案。在这里,我们提出了一种基于防水和高性能摩擦纳米发电机 (TENG) 的鞋垫,用于收集人体运动能量,以实现便携式设备的可持续工作。在方案中,设计了基于 TENG 的密封腔气囊结构鞋垫来收集机械能。弹性气囊通过相应的膨胀和收缩来驱动摩擦层的接触和分离。由于这些结构创新,这种基于 TENG 的鞋垫具有出色的电输出性能,在人行走时可产生最大 5.47 mW 的交流电,并且可以在 9 分钟内将 960 μF 的电容器充电至 1.5 V。通过这种新颖的结构,设计的鞋垫可以成为一种出色的可穿戴能量收集设备,可将人体运动转化的能量用于驱动可穿戴电子设备。研究结果表明,其具有从为个人感测设备供电到物联网的广泛潜在应用。

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