Chen Zhuo, Zhang Yang, Zhu Bin, Wu Yigen, Du Xiaohui, Lin Liwei, Wu Dezhi
Department of Mechanical & Electrical Engineering, Xiamen University, Xiamen 361005, China.
Shenzhen Research Institute of Xiamen University, Shenzhen 518057, China.
ACS Appl Mater Interfaces. 2022 May 4;14(17):19672-19682. doi: 10.1021/acsami.2c01356. Epub 2022 Apr 20.
Tactile pressure sensing over a wide operation range (>1 MPa) is challenging for a variety of applications in fields such as aviation, oceanography, and biomedicine. Recently, innovative strategies have been utilized to improve the performances of tactile sensors using specially designed structures, dielectric layers, and electrodes. Here, a hierarchical structural design based on ionic gel films has been utilized to build iontronic pressure sensors with ultrahigh sensitivities and broad operation ranges. Sculptured patterns made by a controlled CO laser scanning process have been produced on polyimide films to achieve two kinds of protrusion structures for high specific surface areas and strength to withstand high pressure. The iontronic sensor has been constructed by adding two screen-printed electrodes of high surface areas to achieve an ultrahigh sensitivity of 2593 kPa and a wide pressure range from 0 Pa to 3.36 MPa. The prototype device also has a fast response and recovery time of 26 and 13 ms, respectively, and an excellent mechanical durability in the endurance test of over 2700 repeated loading and unloading cycles under a pressure of 1 MPa. Several application examples have been demonstrated, including the detection of physiological signals on human volunteers, the feedback control of intelligent robots, the grasping operation of underwater soft grippers, and the environmental wind-speed monitoring. As such, this work demonstrates a versatile and economical methodology to produce high-performance flexible sensors for various potential applications.
对于航空、海洋学和生物医学等领域的各种应用而言,在大于1兆帕的宽工作范围内进行触觉压力传感具有挑战性。最近,人们利用创新策略,通过特殊设计的结构、介电层和电极来提高触觉传感器的性能。在此,基于离子凝胶膜的分层结构设计被用于构建具有超高灵敏度和宽工作范围的离子电子压力传感器。通过可控的CO激光扫描工艺在聚酰亚胺薄膜上制作了雕刻图案,以实现两种具有高比表面积和强度的突出结构,从而能够承受高压。通过添加两个高表面积的丝网印刷电极构建了离子电子传感器,实现了2593千帕的超高灵敏度以及从0帕到3.36兆帕的宽压力范围。该原型设备的响应时间和恢复时间也分别很快,为26毫秒和13毫秒,并且在1兆帕压力下进行的超过2700次重复加载和卸载循环的耐久性测试中具有出色的机械耐久性。文中展示了几个应用实例,包括对人类志愿者生理信号的检测、智能机器人 的反馈控制、水下软夹爪的抓取操作以及环境风速监测。因此,这项工作展示了一种通用且经济的方法,用于生产适用于各种潜在应用的高性能柔性传感器。