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基于水凝胶涂层单模光纤和光频域反射计的分布式 pH 传感。

Distributed pH sensing based on hydrogel coated single mode fibers and optical frequency domain reflectometry.

出版信息

Opt Express. 2022 Nov 21;30(24):42801-42809. doi: 10.1364/OE.471010.

Abstract

We propose a distributed pH sensor based on an optical frequency domain reflectometry using a PEGDA-based pH-sensitive hydrogel coated on a single mode fiber. The volume of hydrogel increased as pH value of the surrounding fluid decreased, which converts the pH value to the axial strain in the fiber. Taking capacity of distributed strain measurement with high spatial resolution in optical frequency domain reflectometry, the pH value of the external medium is distributed measured by the wavelength shifts of the local Rayleigh backscattering spectra. The basic hydrogel with different molecular weight was optimized to balance the sensitivity, the response time and also the stability. In the experiment, the range of the pH value from 2 to 6 was measured with a sampling resolution of 1.7 mm, a sensitivity of -199 pm/pH and a response time of 14 min when the hydrogel coating diameter is 2 mm. Such a distributed pH sensing system has a potential to detect and locate some chemical or biological substances in a large-scale environment.

摘要

我们提出了一种基于光频域反射计的分布式 pH 传感器,该传感器使用涂覆在单模光纤上的基于聚乙二醇二丙烯酸酯(PEGDA)的 pH 敏感水凝胶。当周围流体的 pH 值降低时,水凝胶的体积会增加,从而将 pH 值转换为光纤中的轴向应变。由于光频域反射计具有分布式应变测量能力和高空间分辨率,因此可以通过局部瑞利背向散射光谱的波长移动来分布测量外部介质的 pH 值。优化了不同分子量的基本水凝胶,以平衡灵敏度、响应时间和稳定性。在实验中,当水凝胶涂层直径为 2mm 时,测量 pH 值范围为 2 到 6,采样分辨率为 1.7mm,灵敏度为-199pm/pH,响应时间为 14min。这种分布式 pH 传感系统具有检测和定位大规模环境中某些化学或生物物质的潜力。

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