Cui Haoao, Liu Yijian, Tang Ruili, Ren Jie, Yao Liang, Cai Yuhao, Chen Da
Laboratory for Intelligent Flexible Electronics, College of Electronic and Information Engineering, Shandong University of Science and Technology, Qingdao 266590, China.
Beijing Smart-Chip Microelectronics Technology Co., Ltd., Beijing 100192, China.
Micromachines (Basel). 2023 Mar 16;14(3):662. doi: 10.3390/mi14030662.
Capacitive pressure sensors based on porous structures have been widely researched and applied to a variety of practical applications. To date, it remains a big challenge to develop a capacitive pressure sensor with a high sensitivity and good linearity over a wide pressure range. In this paper, a sensitive, flexible, porous capacitive pressure sensor was designed and manufactured by means of the "salt template method" and man-made grooves. To this aim, the size of the salt particles used for forming pores/air voids, time taken for thorough dissolution of salt particles, and the depth of the man-made groove by a pin were taken into consideration to achieve a better effect. With pores and the groove, the sensor is more liable be compressed, which will result in a dramatic decrease in distance between the two electrodes and a conspicuous increase of the effective dielectric constant. The optimize-designed sensor represents a sensitivity 6-8 times more than the sensor without the groove in the pressure range of 0-10 kPa, not to mention the sensor without pores or the groove, and it can keep good linearity within the measurement range (0-50 kPa). Besides, the sensor shows a low detection limit of 3.5 Pa and a fast response speed (≈50 ms), which makes it possible to detect a tiny applied pressure immediately. The fabricated sensor can be applied to wearable devices to monitor finger and wrist bending, and it can be used in the object identification of mechanical claws and object cutting of mechanical arms, and so on.
基于多孔结构的电容式压力传感器已得到广泛研究,并应用于各种实际应用中。迄今为止,开发一种在宽压力范围内具有高灵敏度和良好线性度的电容式压力传感器仍然是一个巨大的挑战。本文通过“盐模板法”和人工刻槽设计并制造了一种灵敏、柔性的多孔电容式压力传感器。为此,考虑了用于形成孔隙/气隙的盐颗粒尺寸、盐颗粒完全溶解所需的时间以及用销钉刻出的人工刻槽深度,以达到更好的效果。有了孔隙和刻槽,传感器更容易被压缩,这将导致两个电极之间的距离急剧减小,有效介电常数显著增加。优化设计的传感器在0-10 kPa的压力范围内,灵敏度比没有刻槽的传感器高出6-8倍,更不用说没有孔隙或刻槽的传感器了,并且在测量范围(0-50 kPa)内能够保持良好的线性度。此外,该传感器的检测下限低至3.5 Pa,响应速度快(≈50 ms),这使得能够立即检测到微小的外加压力。所制备的传感器可应用于可穿戴设备以监测手指和手腕的弯曲,还可用于机械爪的物体识别和机械臂的物体切割等。