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Wearable electrode-free triboelectric generator for harvesting biomechanical energy

机译:可穿戴式无电极摩擦发电机,用于收集生物力学能量

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In this article, we present an electrode-free triboelectric generator for harvesting biomechanical energy from human motions through triboelectrification between shoe sole and ground. A thin film of porous ethylene-vinyl acetate copolymer (EVA) is designed and pasted on shoe sole to serve as the friction surface. Electricity is generated by the contacting friction of shoe sole with ground surface during walking, which makes no initial vertical gap needed in shoe sole. At the same time, human body is employed as the natural electrode instead of fabricated electrodes, and the electricity can be obtained from any part of human body. In addition, output performances are characterized by using three different conductors as reference electrode. The output voltage of 810 V is achieved and charge of over 550 nC is transferred in one step of an adults walking. Meanwhile, 76 blue LEDs are lighted through a watch as output node. Owing to the advantage of body electrode, it has potential applications in wearable electronics and implantable devices. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在本文中,我们介绍了一种无电极的摩擦发电机,用于通过鞋底和地面之间的摩擦电气化从人体运动中收集生物机械能。设计了多孔乙烯-乙酸乙烯酯共聚物(EVA)薄膜,并将其粘贴在鞋底上以用作摩擦表面。步行过程中鞋底与地面的接触摩擦会产生电,因此鞋底不需要初始的垂直间隙。同时,人体代替天然电极被用作天然电极,并且可以从人体的任何部位获得电力。另外,通过使用三种不同的导体作为参考电极来表征输出性能。在成年人行走的一个步骤中,可达到810 V的输出电压,并传递550 nC以上的电荷。同时,通过手表作为输出节点点亮76个蓝色LED。由于体电极的优势,它在可穿戴电子设备和可植入设备中具有潜在的应用。 (C)2014 Elsevier Ltd.保留所有权利。

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