摩擦电效应
多路复用
纳米发生器
触觉技术
电磁屏蔽
数码产品
纳米技术
可伸缩电子设备
材料科学
电子皮肤
电气工程
计算机科学
电信
人工智能
电压
复合材料
工程类
作者
Beibei Shao,Ming‐Han Lu,Tai-Chen Wu,Wei‐Chen Peng,Tien‐Yu Ko,Yung‐Chi Hsiao,Jiann‐Yeu Chen,Baoquan Sun,Ruiyuan Liu,Ying‐Chih Lai
标识
DOI:10.1038/s41467-024-45611-6
摘要
Abstract Large-area metamorphic stretchable sensor networks are desirable in haptic sensing and next-generation electronics. Triboelectric nanogenerator-based self-powered tactile sensors in single-electrode mode constitute one of the best solutions with ideal attributes. However, their large-area multiplexing utilizations are restricted by severe misrecognition between sensing nodes and high-density internal circuits. Here, we provide an electrical signal shielding strategy delivering a large-area multiplexing self-powered untethered triboelectric electronic skin (UTE-skin) with an ultralow misrecognition rate (0.20%). An omnidirectionally stretchable carbon black-Ecoflex composite-based shielding layer is developed to effectively attenuate electrostatic interference from wirings, guaranteeing low-level noise in sensing matrices. UTE-skin operates reliably under 100% uniaxial, 100% biaxial, and 400% isotropic strains, achieving high-quality pressure imaging and multi-touch real-time visualization. Smart gloves for tactile recognition, intelligent insoles for gait analysis, and deformable human-machine interfaces are demonstrated. This work signifies a substantial breakthrough in haptic sensing, offering solutions for the previously challenging issue of large-area multiplexing sensing arrays.
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