IT Fusion Technology Research Center and Department of IT Fusion Technology, Chosun University, Gwangju 61452, Korea.
Sci Rep. 2017 Mar 28;7:45583. doi: 10.1038/srep45583.
Triboelectric energy harvesting has been applied to various fields, from large-scale power generation to small electronics. Triboelectric energy is generated when certain materials come into frictional contact, e.g., static electricity from rubbing a shoe on a carpet. In particular, textile-based triboelectric energy-harvesting technologies are one of the most promising approaches because they are not only flexible, light, and comfortable but also wearable. Most previous textile-based triboelectric generators (TEGs) generate energy by vertically pressing and rubbing something. However, we propose a corrugated textile-based triboelectric generator (CT-TEG) that can generate energy by stretching. Moreover, the CT-TEG is sewn into a corrugated structure that contains an effective air gap without additional spacers. The resulting CT-TEG can generate considerable energy from various deformations, not only by pressing and rubbing but also by stretching. The maximum output performances of the CT-TEG can reach up to 28.13 V and 2.71 μA with stretching and releasing motions. Additionally, we demonstrate the generation of sufficient energy from various activities of a human body to power about 54 LEDs. These results demonstrate the potential application of CT-TEGs for self-powered systems.
摩擦起电能量采集已经应用于从大规模发电到小型电子设备的各种领域。当某些材料发生摩擦接触时,就会产生摩擦起电能量,例如,从在地毯上摩擦鞋子产生的静电。特别是,基于纺织品的摩擦起电能量采集技术是最有前途的方法之一,因为它们不仅灵活、轻便、舒适,而且还可以穿戴。以前的大多数基于纺织品的摩擦起电发电机(TEG)通过垂直按压和摩擦某物来产生能量。然而,我们提出了一种基于波纹的纺织品摩擦起电发电机(CT-TEG),它可以通过拉伸来产生能量。此外,CT-TEG 被缝制成包含有效气隙的波纹结构,而无需额外的间隔物。由此产生的 CT-TEG 可以从各种变形中产生相当大的能量,不仅可以通过按压和摩擦,还可以通过拉伸。CT-TEG 的最大输出性能在拉伸和释放运动时可达到 28.13V 和 2.71μA。此外,我们展示了从人体各种活动中产生足够的能量,以驱动大约 54 个 LED。这些结果表明 CT-TEG 具有用于自供电系统的潜力。