School of Material Science and Engineering, Georgia Institute of Technology, Atlanta, GA, 30332-0245, USA.
College of Textiles, Key Laboratory of High Performance Fibers & Products, Ministry of Education, Donghua University, Shanghai, 201020, P. R. China.
Adv Mater. 2018 Oct;30(43):e1804944. doi: 10.1002/adma.201804944. Epub 2018 Sep 6.
Flexible and stretchable physical sensors capable of both energy harvesting and self-powered sensing are vital to the rapid advancements in wearable electronics. Even so, there exist few studies that can integrate energy harvesting and self-powered sensing into a single electronic skin. Here, a stretchable and washable skin-inspired triboelectric nanogenerator (SI-TENG) is developed for both biomechanical energy harvesting and versatile pressure sensing. A planar and designable conductive yarn network constructed from a three-ply-twisted silver-coated nylon yarn is embedded into flexible elastomer, endowing the SI-TENG with desired stretchability, good sensitivity, high detection precision, fast responsivity, and excellent mechanical stability. With a maximum average power density of 230 mW m , the SI-TENG is able to light up 170 light-emitting diodes, charge various capacitors, and drive miniature electronic products. As a self-powered multifunctional sensor, the SI-TENG is adopted to monitor human physiological signals, such as arterial pulse and voice vibrations. Furthermore, an intelligent prosthetic hand, a self-powered pedometer/speedometer, a flexible digital keyboard, and a proof-of-concept pressure-sensor array with 8 × 8 sensing pixels are successively demonstrated to further confirm its versatile application prospects. Based on these merits, the developed SI-TENG has promising applications in wearable powering technology, physiological monitoring, intelligent prostheses, and human-machine interfaces.
能够进行能量收集和自供电传感的灵活可拉伸物理传感器对于可穿戴电子设备的快速发展至关重要。即便如此,能够将能量收集和自供电传感集成到单个电子皮肤中的研究仍然很少。在这里,开发了一种可拉伸和可清洗的仿皮肤摩擦纳米发电机(SI-TENG),用于进行生物力学能量收集和多功能压力传感。由三层扭曲的镀银尼龙纱线构成的平面且可设计的导电纱线网络被嵌入到柔性弹性体中,使 SI-TENG 具有所需的可拉伸性、良好的灵敏度、高检测精度、快速响应能力和出色的机械稳定性。SI-TENG 的最大平均功率密度为 230 mW m,能够点亮 170 个发光二极管、给各种电容器充电以及驱动微型电子产品。作为一种自供电的多功能传感器,SI-TENG 被用于监测人体生理信号,如动脉脉搏和声音振动。此外,还展示了智能假肢、自供电计步器/速度计、柔性数字键盘以及具有 8×8 个感测像素的压力传感器阵列的概念验证,进一步证实了其多功能的应用前景。基于这些优点,所开发的 SI-TENG 在可穿戴供电技术、生理监测、智能假肢和人机接口方面具有广阔的应用前景。