材料科学
双模
毛囊
灵敏度(控制系统)
对偶(语法数字)
感知
生物医学工程
生物
工程类
神经科学
航空航天工程
细胞生物学
电子工程
艺术
文学类
作者
Chenxi Lu,Qian Gan,Senjiang Yu,Liang Hu,Lingwei Li
标识
DOI:10.1002/adfm.202500519
摘要
Abstract Pressure/magnetism dual‐mode sensors for tactile/touchless perception are desired to adapt multifunctional applications. However, it remains a challenge to possess high sensitivity and a wide linear response range in both modes. Here, a bionic e‐skin with magnetic cilia and hair‐follicle architecture (MCHFA) is proposed to achieve high‐sensitivity and wide‐linear‐range pressure/magnetism dual‐mode perception (0–26 kPa: S = 2.72 kPa −1 , R 2 = 0.99; 26–400 kPa: S = 0.60 kPa −1 , R 2 = 0.99; 10–171 mT: S = 2.8 T −1 , R 2 = 0.94), where the high sensitivity is mainly dominated by the easy deformation of cilia and the wide linear range is attributed to the gradient compressibility of the synergistic architectures of the cilia and the hair‐follicle. Additionally, high resolutions of pressure (0.20%) and magnetism (11.0%) are obtained due to the wide‐linear‐range high sensitivity in both modes. These excellent characteristics in dual modes endow the MCHFA‐based sensor multifunctional applications in health monitoring and human–machine interfaces, such as a finger bending game for the rehabilitation training and the prevention of senile dementia, and a noncontact coded lock taking advantage of less risks in cross infection and personal information leakage.
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