Mao Linna, Pan Taisong, Ke Yizhen, Yan Zhuocheng, Huang Sirong, Guo Dengji, Gao Neng, Huang Wen, Yao Guang, Gao Min, Lin Yuan
School of Materials and Energy, University of Electronic Science and Technology of China, Chengdu, 610054 P.R. China.
State Key Laboratory of Electronic Thin Films and Integrated Devices, University of Electronic Science and Technology of China, Chengdu 610054, P.R. China.
Lab Chip. 2022 Apr 12;22(8):1630-1639. doi: 10.1039/d2lc00141a.
Electromechanical coupling plays a key role in determining the performance of stretchable strain sensor. Current regulation of the electromechanical coupling in stretchable strain sensor is largely restricted by the intrinsic mechanical properties of the device. In this study, a microfluidic strain sensor based on the core-shell package design with the auxetic metamaterial (AM) is presented. By overriding the mechanical properties of the device, the AM in the package effectively tunes the deformation of the microfluidic channel with the applied strain and configures the directional strain sensitivity with a large modulation range. The gauge factor (GF) of the strain sensor in the radial direction of the channel can be gradually shifted from the intrinsically negative value to a positive one by adopting the AMs with different designs. By simply replacing the AM in the package, the microfluidic strain sensor with the core-shell package can be configurated as an omnidirectional or directional stretchable strain sensor. With the directional sensitivity brought by the rational AM design, the application of the AM-integrated strain sensor in the skin-mounted tactile detection is demonstrated with high tolerance to unintended wrist movements.
机电耦合在决定可拉伸应变传感器的性能方面起着关键作用。目前,可拉伸应变传感器中机电耦合的调控在很大程度上受到器件固有机械性能的限制。在本研究中,提出了一种基于带有负泊松比超材料(AM)的核壳封装设计的微流体应变传感器。通过超越器件的机械性能,封装中的AM有效地调节了微流体通道在施加应变时的变形,并配置了具有大调制度范围的定向应变灵敏度。通过采用不同设计的AM,通道径向方向上应变传感器的应变片系数(GF)可以从固有的负值逐渐转变为正值。通过简单地更换封装中的AM,具有核壳封装的微流体应变传感器可以被配置为全向或定向可拉伸应变传感器。凭借合理的AM设计带来的定向灵敏度,展示了集成AM的应变传感器在皮肤安装触觉检测中的应用,对意外的手腕运动具有高耐受性。