Department of Electro-Optical Engineering, Southern Taiwan University of Science and Technology, Tainan 71005, Taiwan.
Sensors (Basel). 2022 Dec 7;22(24):9566. doi: 10.3390/s22249566.
In this study, a beta-barium borate sensing head (BBO-SH) was fabricated and evaluated for the measurements of fluidic concentration variations by using a non-invasive technique. The BBO-SH could be coupled to a fluidic container through thin interlayer water in a heterodyne interferometer based on the phase interrogation. To ensure the sensing head's stability, the package of BBO-SH uses the prism and the coverslip bounded with UV glue, which can resist environmental damage due to moisture. After each use, the sensing head could be easily cleaned. The sensitivity of the BBO-SH remained stable after repeated measurements over a period of 139 days. Finally, the achievable measurement resolutions of the concentration and refractive index are 52 ppm and 1 × 10 RIU, respectively, for the sodium chloride solution. The achievable measurement resolutions of the concentration and refractive index were 55 ppm and 8.8 × 10 RIU, respectively, for the hydrochloric acid solution.
在这项研究中,通过使用非侵入式技术,制造了一种硼酸钡感应头(BBO-SH),并对其用于测量流体浓度变化的性能进行了评估。BBO-SH 可以通过基于相位检测的外差干涉仪中的薄夹层水与流体容器耦合。为了确保感应头的稳定性,BBO-SH 的封装采用棱镜和带有 UV 胶的盖玻片,这可以抵抗由于湿度引起的环境损坏。每次使用后,感应头可以很容易地进行清洁。BBO-SH 的灵敏度在经过 139 天的重复测量后仍然保持稳定。最后,对于氯化钠溶液,浓度和折射率的可实现测量分辨率分别为 52ppm 和 1×10 RIU。对于盐酸溶液,浓度和折射率的可实现测量分辨率分别为 55ppm 和 8.8×10 RIU。