电容感应
材料科学
触觉技术
机器人学
纳米尺度
触觉传感器
稳健性(进化)
灵敏度(控制系统)
计算机科学
纳米技术
软机器人
电子线路
机器人
人工智能
电子工程
电气工程
工程类
化学
操作系统
基因
生物化学
作者
Junli Shi,Yuan Dai,Cheng Yu,Sai Xie,Gang Li,Yuan Liu,Jingxiao Wang,Ruirui Zhang,Ningning Bai,Minkun Cai,Yuan Zhang,Yifei Zhan,Zhengyou Zhang,Cunjiang Yu,Chuan Fei Guo
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2023-03-03
卷期号:9 (9)
被引量:78
标识
DOI:10.1126/sciadv.adf8831
摘要
Iontronic pressure sensors are promising in robot haptics because they can achieve high sensing performance using nanoscale electric double layers (EDLs) for capacitive signal output. However, it is challenging to achieve both high sensitivity and high mechanical stability in these devices. Iontronic sensors need microstructures that offer subtly changeable EDL interfaces to boost sensitivity, while the microstructured interfaces are mechanically weak. Here, we embed isolated microstructured ionic gel (IMIG) in a hole array (28 × 28) of elastomeric matrix and cross-link the IMIGs laterally to achieve enhanced interfacial robustness without sacrificing sensitivity. The embedded configuration toughens and strengthens the skin by pinning cracks and by the elastic dissipation of the interhole structures. Furthermore, cross-talk between the sensing elements is suppressed by isolating the ionic materials and by designing a circuit with a compensation algorithm. We have demonstrated that the skin is potentially useful for robotic manipulation tasks and object recognition.
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