摩擦电效应
灵敏度(控制系统)
材料科学
指纹(计算)
触觉传感器
戒指(化学)
纳米技术
计算机科学
人工智能
工程类
化学
复合材料
电子工程
有机化学
机器人
作者
Hongwei Hu,Jie Song,Zhong Yan,Jie Cao,Lei Han,Zhongqiang Zhang,Guanggui Cheng,Jianning Ding
出处
期刊:ACS Sensors
[American Chemical Society]
日期:2024-05-17
卷期号:9 (6): 2907-2914
标识
DOI:10.1021/acssensors.4c00009
摘要
Flexible self-powered tactile sensors, with applications spanning wearable electronics, human-machine interaction, prosthetics, and soft robotics, offer real-time feedback on tactile interactions in diverse environments. Despite advances in their structural development, challenges persist in sensitivity and robustness, particularly when additional functionalities, such as high transparency and stretchability. In this study, we present a novel approach integrating a bionic fingerprint ring structure with a PVDF-HFP/AgNWs composite fiber electrode membrane, fabricated via 3D printing technology and electrospinning, respectively, yielding a triboelectric nanogenerator (TENG)-based self-powered tactile sensor. The sensor demonstrates high sensitivity (5.84 V/kPa in the 0-10 kPa range) and rapid response time (10 ms), attributed to the microring texture on its surface, and exhibits exceptional robustness, maintaining electrical output integrity even after 24,000 cycles of loading. These findings highlight the potential of the microring structures in addressing critical challenges in flexible sensor technology.
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