Key Laboratory of Cryogenics, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, China.
Lab Chip. 2019 Feb 26;19(5):807-814. doi: 10.1039/c8lc01357h.
A liquid-metal based capacitive soft pressure microsensor is proposed in this work for measuring pressure in microchannels. To measure the pressure of the target microchannel, a short detection channel is fabricated and connected to the target microchannel. Because the detection channel has only one outlet at the end which is connected to the target microchannel, the fluid in the detection channel will stay still during the measurement and the pressure remains constant inside the detection channel. A segment of reference fluid which is immiscible with the working fluid is sealed inside the detection channel. Because the chip material is soft, the pressure change will lead to the movement of the interface between the reference fluid and working fluid inside the detection channel. A pair of liquid metal electrodes are fabricated on both sides of the detection channel. By measuring the capacitance between these two liquid metal electrodes, the movement of the interface can be detected, and thus the pressure change can be detected as well. To minimize the influence from the environment, two liquid metal shield layers are placed on the top and the bottom of the microchannel layer separately. The microsensor was first tested in a microfluidic system and then utilized to measure the blood pressure of rabbit carotid artery in vivo. The experimental results showed excellent stability and linear correlation between capacitance and the value of fluid pressure. The pressure sensor can achieve a resolution of 7.5 mmHg within a pressure range of 20-300 mmHg. This work provides a promising approach to develop an implantable blood or intraocular pressure-monitoring device for clinical use.
本文提出了一种基于液态金属的电容式软压微传感器,用于测量微通道中的压力。为了测量目标微通道的压力,制作了一个短的检测通道并将其连接到目标微通道。由于检测通道在末端只有一个与目标微通道相连的出口,因此在测量过程中检测通道中的流体将保持静止,检测通道内的压力保持恒定。一段与工作流体不混溶的参考流体被密封在检测通道内。由于芯片材料柔软,压力变化会导致检测通道内参考流体和工作流体之间的界面移动。在检测通道的两侧制作了一对液态金属电极。通过测量这两个液态金属电极之间的电容,可以检测到界面的移动,从而可以检测到压力变化。为了最小化环境的影响,在微通道层的顶部和底部分别放置了两个液态金属屏蔽层。该微传感器首先在微流控系统中进行了测试,然后用于测量兔颈动脉的体内血压。实验结果表明,电容与流体压力值之间具有出色的稳定性和线性相关性。压力传感器在 20-300mmHg 的压力范围内可以实现 7.5mmHg 的分辨率。这项工作为开发用于临床应用的可植入式血液或眼内压监测设备提供了一种有前途的方法。