摩擦电效应
材料科学
压力传感器
可扩展性
纳米技术
制作
纱线
参数统计
机织物
电容
灵敏度(控制系统)
声学
测距
复合材料
平纹织物
面积密度
机械工程
编织
可穿戴技术
压力测量
柔性电子器件
环氧树脂
电容感应
阻力
作者
Qingyun Tao,Cong Zheng,Ruihua Wang,Jiyong Hu,Jinhua Jiang
标识
DOI:10.1021/acsami.5c15705
摘要
The scalable manufacturing of all-textile triboelectric pressure sensors capable of high-sensitivity and crosstalk-free pressure distribution mapping remains challenging. This study develops a scalable triboelectric fabric pressure mapping sensor with high sensitivity and free crosstalk by directly interlacing polytetrafluoroethylene/stainless steel (PTFE-SS) braided yarns (negative materials) and the polyamide 66/stainless steel (PA66-SS) braided yarn (positive materials) into the plain derivative weave fabric on an industrialized loom, enabling scalable production. Crucially, the results demonstrate that reducing warp/weft densities significantly boosts electrical output. We further establish the first equivalent circuit model (FO-ECM) for the triboelectric woven fabric pressure mapping sensor, achieving a 0.978 fitting coefficient to predict output under varying weave densities, thereby enabling digital parametric design. Significantly, parameter optimization of warp/weft densities identified an optimal configuration that enhances electrical output, achieving high sensitivity (2.942 V·kPa –1, 0–1 kPa). Furthermore, the triboelectric woven fabric pressure sensor was extended to develop an interference-free triboelectric fabric sensor array (TFSA) through structural spacing design, eliminating crosstalk by elucidating the dominant role of fringe electric fields and quantitatively modeling their spatial decay, thereby enabling high-spatial-resolution pressure mapping. Finally, the distributed pressure mapping of typical human body activities demonstrated the practical performance of the developed triboelectric fabric sensor. This facile integrated approach─from scalable fabrication to interference-free arrays─advances real-time wearable self-powered health monitoring.
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