触觉传感器
财产(哲学)
双模
对偶(语法数字)
计算机科学
材料科学
模式(计算机接口)
机器人
人工智能
工程类
人机交互
电子工程
认识论
文学类
哲学
艺术
作者
Yu Lv,Zhaolei Ma,Jingle Duan,Guifen Sun,Peng Wang,Sheng Qu,Feng Liu,Chuizhou Meng,Xiujuan Lin,Teng Liu,Shijie Guo
出处
期刊:InfoMat
[Wiley]
日期:2025-06-10
摘要
Abstract The realization of intelligent tactile perception in robotic systems requires multifunctional sensors capable of mimicking the dual‐mode sensing mechanisms of human skin. Herein, we present a biomimetic hydrogel‐based sensor capable of dynamic tactile detection through triboelectric sensing and static pressure monitoring via ionic‐supercapacitive sensing. The triboelectric unit achieves a peak voltage of 14.64 V, with <5% signal decay over 5000 s of cycling, enabling robust detection of transient interactions (e.g., tapping or sliding). Additionally, the ionic‐supercapacitive unit exhibits a high sensitivity of 2.69 kPa −1 between 0.8–28 kPa, a rapid response time of 0.5 s, and minimal signal drift of <5% during 7‐day continuous operation, providing stable monitoring of static interactions (e.g., touching or pressing). By leveraging a multilayer perceptron neural network, a robotic hand equipped with a biomimetic hydrogel‐based bimodal sensor demonstrates intelligent recognition of material types and hardness levels with a high accuracy of 98.5%. This study establishes a paradigm for high‐performance electronic skins, which advances human‐machine interfaces and artificial intelligence‐driven robotics through biomimetic tactile perception. image
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