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A wrist-band coupled, human skin based triboelectric generator for harvesting biomechanical energy

机译:腕带式,基于人体皮肤的摩擦发电机,用于收集生物力学能量

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Effectively harvesting ambient mechanical energy is very important for realizing self-powered and autonomous electronics, which has numerous applications in sensor networks, wireless devices, and wearable or implantable electronics, etc. This paper presented a human skin based triboelectric generator (TEG), coupled to a light and flexible wrist-band to be used for wearable smart device applications. We developed a simple, cost effective, and feasible fabrication method of a micro-structured Polydimethylsiloxane (PDMS) thin film as one of the triboelectric layers, the other layer being the human skin. Here, electricity was generated by repetitive contact-separation actions between these two triboelectric surfaces. Results showed the fabricated prototype is capable of generating a maximum open circuit voltage of 28.2V and 12µW peak power by mild finger pressing over the device at 2.9Hz frequency. The proposed harvester responds to low-frequency kinetic energy of human-body-induced motion; so it has the potential to convert the mechanical energy of finger pressing into electrical energy.
机译:有效地收集周围的机械能对于实现自供电和自主的电子设备非常重要,电子设备在传感器网络,无线设备以及可穿戴或可植入电子设备等方面具有广泛的应用。轻巧灵活的腕带,可用于可穿戴智能设备应用。我们开发了一种简单,经济高效且可行的微结构化聚二甲基硅氧烷(PDMS)薄膜制造方法,作为摩擦电层之一,另一层是人体皮肤。在此,通过这两个摩擦电表面之间的重复接触分离作用产生了电。结果表明,通过以2.9Hz的频率轻轻按压器件,所制造的原型能够产生28.2V的最大开路电压和12µW的峰值功率。拟议的收割机对人体运动的低频动能作出响应;因此它具有将指压的机械能转换成电能的潜力。

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