Zhong Yan, Liu Kunshan, Wu Longgang, Ji Weixiang, Cheng Guanggui, Ding Jianning
School of Mechanical Engineering, Jiangsu University, Zhenjiang 212013, China.
School of Mechanical Engineering, Yangzhou University, Yangzhou 225009, China.
ACS Appl Mater Interfaces. 2024 Oct 2;16(39):52966-52976. doi: 10.1021/acsami.4c12736. Epub 2024 Sep 18.
The trade-off between high sensitivity and wide detection range remains a challenge for flexible capacitive pressure sensors. Gradient structure can provide continuous deformation and lead to a wide sensing range. However, it simultaneously augments the distance between two electrodes, which diminishes the variation in the relative distance and results in a decreased sensitivity. Herein, a conformal design is introduced into the gradient structure to construct a flexible capacitive pressure sensor. The gradient conformal dome structure is fabricated by a simple reverse dome adsorption process. Taking advantage of the progressive deformation behavior of the gradient dielectric, and the significant improvement of relative distance variation between two electrodes from the conformal design, the sensor achieves a sensitivity of 0.214 kPa in an ultrabroad linear range up to 200 kPa. It maintains high-pressure resolution under the preload of 10 and 100 kPa. Benefiting from the rapid response and excellent repeatability, the sensor can be used for physiological monitor and human motion detection, including arterial pulse, joint bending, and motion state. The gradient conformal design strategy may pave a promising avenue to develop pressure sensors with high sensitivity and wide linear range.
对于柔性电容式压力传感器而言,在高灵敏度和宽检测范围之间进行权衡仍然是一项挑战。梯度结构能够提供连续变形并实现宽传感范围。然而,它同时会增大两个电极之间的距离,这会减小相对距离的变化,从而导致灵敏度降低。在此,将共形设计引入梯度结构以构建柔性电容式压力传感器。梯度共形圆顶结构通过简单的反向圆顶吸附工艺制造。利用梯度电介质的渐进变形行为以及共形设计使两个电极之间相对距离变化的显著改善,该传感器在高达200 kPa的超宽线性范围内实现了0.214 kPa的灵敏度。在10 kPa和100 kPa的预载下,它保持了高压分辨率。得益于快速响应和出色的重复性,该传感器可用于生理监测和人体运动检测,包括动脉脉搏、关节弯曲和运动状态。梯度共形设计策略可能为开发具有高灵敏度和宽线性范围的压力传感器铺平一条有前景的道路。