Li Shi-Long, Nie Zhong-Quan, Tian Yan-Ting, Liu Chao
College of Physics and Optoelectronics, Taiyuan University of Technology, Taiyuan 030024, China.
School of Instrumentation and Optoelectronic Engineering, Beihang University, Beijing 100191, China.
Micromachines (Basel). 2019 Aug 1;10(8):515. doi: 10.3390/mi10080515.
In this paper, a liquid refractive index (LRI) measurement system based on an electrowetting lens was proposed. The system is composed of a light source, a collimating lens, a liquid measurement chamber (LMC), an electrowetting lens and an image sensor, which is integrated into a cylindrical cavity. The refractive index of the LMC changes with the addition of the measured liquid, and the incident light cannot be focused on the image plane. By adjusting the driving voltage of the electrowetting lens, the curvature of the liquid-liquid interface changes to focus the incident light onto the image plane. The refractive index of the liquid could be measured according to the voltage value. The proposed LRI measurement system has no mechanical moving parts, and the imaging surface remains stationary, which can make the measurement simply and correctly. The experiments show that the refractive index measurement range of the system can be turned from ~1.3300 to ~1.4040, and the measurement accuracy is 10. The system can be used to measure the optical properties of liquids and has broad potential applications in chemical reagent detection and pharmaceutical testing.
本文提出了一种基于电润湿透镜的液体折射率(LRI)测量系统。该系统由光源、准直透镜、液体测量腔(LMC)、电润湿透镜和图像传感器组成,集成在一个圆柱形腔体内。随着被测液体的加入,LMC的折射率发生变化,入射光无法聚焦在像平面上。通过调节电润湿透镜的驱动电压,液-液界面的曲率发生变化,使入射光聚焦在像平面上。根据电压值可以测量液体的折射率。所提出的LRI测量系统没有机械运动部件,成像表面保持静止,这使得测量简单且正确。实验表明,该系统的折射率测量范围可从1.3300变为1.4040,测量精度为10。该系统可用于测量液体的光学性质,在化学试剂检测和药物测试中具有广泛的潜在应用。