摩擦电效应
纳米发生器
电子皮肤
材料科学
能量收集
机械能
纱线
压力传感器
压电
复合材料
光电子学
纳米技术
能量(信号处理)
机械工程
工程类
功率(物理)
统计
量子力学
物理
数学
作者
Kai Dong,Zhiyi Wu,Jianan Deng,Aurelia Chi Wang,Haiyang Zou,Chao-Yu Chen,Dongmei Hu,Bohong Gu,Baozhong Sun,Zhong Lin Wang
标识
DOI:10.1002/adma.201804944
摘要
Abstract 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 −2 , 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.
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