School of Biomedical Engineering, Faculty of Medicine, Dalian University of Technology, Dalian 116024, China.
Liaoning Key Lab of Integrated Circuit and Biomedical Electronic System, Dalian University of Technology, Dalian 116024, China.
Biosensors (Basel). 2023 May 14;13(5):546. doi: 10.3390/bios13050546.
Flexible pressure sensors are widely applied in tactile perception, fingerprint recognition, medical monitoring, human-machine interfaces, and the Internet of Things. Among them, flexible capacitive pressure sensors have the advantages of low energy consumption, slight signal drift, and high response repeatability. However, current research on flexible capacitive pressure sensors focuses on optimizing the dielectric layer for improved sensitivity and pressure response range. Moreover, complicated and time-consuming fabrication methods are commonly applied to generate microstructure dielectric layers. Here, we propose a rapid and straightforward fabrication approach to prototyping flexible capacitive pressure sensors based on porous electrodes. Laser-induced graphene (LIG) is produced on both sides of the polyimide paper, resulting in paired compressible electrodes with 3D porous structures. When the elastic LIG electrodes are compressed, the effective electrode area, the relative distance between electrodes, and the dielectric property vary accordingly, thereby generating a sensitive pressure sensor in a relatively large working range (0-9.6 kPa). The sensitivity of the sensor is up to 7.71%/kPa, and it can detect pressure as small as 10 Pa. The simple and robust structure allows the sensor to produce quick and repeatable responses. Our pressure sensor exhibits broad potential in practical applications in health monitoring, given its outstanding comprehensive performance combined with its simple and quick fabrication method.
柔性压力传感器广泛应用于触觉感知、指纹识别、医疗监测、人机界面和物联网等领域。其中,柔性电容压力传感器具有能耗低、信号漂移小、响应重复性高等优点。然而,目前对柔性电容压力传感器的研究主要集中在优化介电层以提高灵敏度和压力响应范围。此外,通常采用复杂且耗时的制造方法来生成微结构介电层。在这里,我们提出了一种基于多孔电极的快速、直接的柔性电容压力传感器原型制作方法。在聚酰亚胺纸的两侧产生激光诱导石墨烯(LIG),形成具有 3D 多孔结构的可压缩电极对。当弹性 LIG 电极被压缩时,有效电极面积、电极之间的相对距离和介电特性会相应变化,从而在相对较大的工作范围内(0-9.6 kPa)产生灵敏的压力传感器。传感器的灵敏度高达 7.71%/kPa,可检测小至 10 Pa 的压力。简单而坚固的结构使传感器能够产生快速且可重复的响应。鉴于其出色的综合性能以及简单快速的制造方法,我们的压力传感器在健康监测等实际应用中具有广阔的应用潜力。