The Key Laboratory of Bionic Engineering, Ministry of Education, Jilin University, Changchun, 130025, China.
Center of Reproductive Medicine, Center of Prenatal Diagnosis, The First Hospital of Jilin University, Changchun, 130021, China.
Adv Healthc Mater. 2023 Oct;12(27):e2301005. doi: 10.1002/adhm.202301005. Epub 2023 Aug 30.
To achieve the human sense of touch, a strain sensor needs to be coupled with a pressure sensor to identify the compliance of the contacted material. However, monitoring the pressure-strain signals simultaneously and ensuring no coupling effect between the two signals is the technical bottleneck for the flexible tactile sensor to. Herein, a composite flexible sensor based on microstructures of lotus leaf is designed and manufactured, which integrates the capacitive pressure sensor and the resistance strain sensor into one pixel to realize the simultaneous detection of pressure and strain. The electrode layer of the capacitance sensor also plays the role of the resistance strain sensor, which greatly simplifies the structure of the composite flexible sensor and obtains the compact size to integrate more easily. The device can simultaneously detect pressure and deformation, and more importantly, there is no coupling effect between the two kinds of signals. Here, the sensor has high pressure sensitivity (0.784 kPa when pressure less than 100 kPa), high strain sensitivity (gauge factor = 4.03 for strain 0-40%), and can identify materials with different compliance, which indicates the tactile ability as the human skin performs.
为了实现人类的触觉,应变传感器需要与压力传感器结合使用,以识别接触材料的顺应性。然而,同时监测压力-应变信号并确保两个信号之间没有耦合效应是柔性触觉传感器的技术瓶颈。在此,设计并制造了一种基于荷叶微结构的复合柔性传感器,它将电容式压力传感器和电阻应变传感器集成到一个像素中,实现了压力和应变的同时检测。电容传感器的电极层也起到了电阻应变传感器的作用,这大大简化了复合柔性传感器的结构,使其体积更小,更容易集成。该器件可以同时检测压力和变形,更重要的是,两种信号之间没有耦合效应。在这里,传感器具有较高的压力灵敏度(<100kPa 时为 0.784kPa)、较高的应变灵敏度(应变 0-40%时的应变系数=4.03),并且可以识别具有不同顺应性的材料,这表明其具有类似于人类皮肤的触觉能力。