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用于智能交互的壁虎启发式基于倾斜分层微结构的超灵敏离子电子压力传感器

Gecko-Inspired Slant Hierarchical Microstructure-Based Ultrasensitive Iontronic Pressure Sensor for Intelligent Interaction.

作者信息

Luo Yongsong, Chen Xiaoliang, Tian Hongmiao, Li Xiangming, Lu Yangtianyu, Liu Yang, Shao Jinyou

机构信息

Micro- and Nano-Technology Research Center, State Key Laboratory for Manufacturing Systems Engineering, Xi'an Jiaotong University, Xi'an 710049, China.

Frontier Institute of Science and Technology (FIST), Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

Research (Wash D C). 2022 Jun 14;2022:9852138. doi: 10.34133/2022/9852138. eCollection 2022.

Abstract

Highly sensitive flexible pressure sensors play an important role to ensure the safety and friendliness during the human-robot interaction process. Microengineering the active layer has been shown to improve performance of pressure sensors. However, the current structural strategy almost relying on axial compression deformation suffers structural stiffening, and together with the limited area growth efficiency of conformal interface, essentially limiting the maximum sensitivity. Here, inspired by the interface contact behavior of gecko's feet, we design a slant hierarchical microstructure to act as an electrode contacting with an ionic gel layer, fundamentally eliminating the pressure resistance and maximizing functional interface expansion to achieving ultrasensitive sensitivity. Such a structuring strategy dramatically improves the relative capacitance change both in the low- and high-pressure region, thereby boosting the sensitivity up to 36000 kPa and effective measurement range up to 300 kPa. To verify the advantages of high sensitivity, the sensor is integrated with a soft magnetic robot to demonstrate a biomimetic Venus flytrap. The ability to perceive weak stimuli allows the sensor to be used as a sensory and feedback window, realizing the capture of small live insects and the transportation of fragile objects.

摘要

高灵敏度柔性压力传感器在确保人机交互过程中的安全性和友好性方面发挥着重要作用。对活性层进行微工程处理已被证明可以提高压力传感器的性能。然而,目前几乎依赖轴向压缩变形的结构策略会导致结构变硬,再加上共形界面的面积增长效率有限,从根本上限制了最大灵敏度。在此,受壁虎足部界面接触行为的启发,我们设计了一种倾斜分层微结构作为与离子凝胶层接触的电极,从根本上消除了耐压性,并最大限度地扩大功能界面以实现超灵敏灵敏度。这种结构化策略显著改善了低压和高压区域的相对电容变化,从而将灵敏度提高到36000 kPa,有效测量范围提高到300 kPa。为了验证高灵敏度的优势,该传感器与一个软磁机器人集成,展示了一个仿生捕蝇草。感知微弱刺激的能力使该传感器能够用作传感和反馈窗口,实现捕获小型活昆虫和运输易碎物品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97bb/9275085/9e07927499a0/RESEARCH2022-9852138.001.jpg

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