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Flexible fiber based woven structured triboelectric nanogenerator for self-powered system

机译:用于自供电系统的基于柔性纤维的机织结构摩擦纳米发电机

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Woven -structured or textile-based triboelectric nanogenerators (TENGs) can convert mechanical energy generated from human activities into electrical energy, which can then be used as an efficient power source for portable and wearable devices. However, previously developed woven-structured TENGs have poor stretchability, and fibers with multiple strands are required for weaving. In this paper, we propose a fiber-based woven-structured TENG (WTENG) having high elasticity and flexibility. The proposed WTENG generates an electrical output of ~34.4 μW/cm2 by the continuous contact with and separation from human skin, and we confirm its durability and applicability to wearable devices. We believe that the proposed WTENG can be applied to various products, such as smart clothing, as well as to wearable energy harvesting devices because it can be manufactured on a large scale.
机译:机织结构或基于纺织物的摩擦电纳米发电机(TENG)可以将人类活动产生的机械能转换为电能,然后可以将其用作便携式和可穿戴设备的有效电源。然而,先前开发的编织结构的TENG具有差的拉伸性,并且需要多股纤维进行编织。在本文中,我们提出了一种具有高弹性和柔韧性的纤维基编织结构的TENG(WTENG)。拟议的WTENG产生的电输出为〜34.4μW/ cm 2 通过与人类皮肤的持续接触和分离,我们确认了它的耐用性和对可穿戴设备的适用性。我们认为,建议的WTENG可以应用于各种产品,例如智能服装,也可以应用于可穿戴的能量收集设备,因为它可以大规模生产。

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