Zhang Qi, Chen Xiaopeng, Li Xinghui, Wang Huifang, Zhou Xue, Yan Xin, Cheng Tonglei
Appl Opt. 2025 Mar 20;64(9):2261-2268. doi: 10.1364/AO.553828.
In this work, an optical fiber sensor based on surface plasmon resonance (SPR) is proposed for simultaneous measurement of relative humidity (RH) and temperature, which is constructed by connecting two segments of thin-core fibers (TCFs) using a multimode fiber (MMF). The gold film was coated on TCFs to excite the SPR effect. One was further coated with carboxymethyl cellulose (CMC) to sense RH (Channel I), and the other was coated with gold nanoparticles (AuNPs) and polydimethylsiloxane (PDMS) to sense temperature (Channel II). The detection was performed via the resonance wavelength shift induced by the refractive index (RI) change of CMC and PDMS in relation to RH variation and temperature variation, respectively. The incorporation of gold nanoparticles enhances the sensitivity of the SPR sensor and shifts the resonance wavelengths, allowing for more outstanding demarcation of the SPR dip between the two portions inside the equivalent spectrum. Experimental results show that the sensor has an RH sensitivity of -1.053/ and a temperature sensitivity of -2.306/. Moreover, the cross-sensitivity issue present in RH and temperature measurements was resolved by introducing a dual-wavelength matrix method. The proposed sensor offers high sensitivity, a simple structure, and ease of manufacturing, making it broadly applicable in fields such as food safety, biotechnology, and manufacturing.
在这项工作中,提出了一种基于表面等离子体共振(SPR)的光纤传感器,用于同时测量相对湿度(RH)和温度,它是通过使用多模光纤(MMF)连接两段细芯光纤(TCF)构建而成的。在TCF上涂覆金膜以激发SPR效应。其中一根进一步涂覆羧甲基纤维素(CMC)以感知RH(通道I),另一根涂覆金纳米颗粒(AuNPs)和聚二甲基硅氧烷(PDMS)以感知温度(通道II)。分别通过CMC和PDMS的折射率(RI)变化相对于RH变化和温度变化引起的共振波长偏移来进行检测。金纳米颗粒的加入提高了SPR传感器的灵敏度并使共振波长发生偏移,从而在等效光谱内的两部分之间对SPR凹陷进行更出色的区分。实验结果表明,该传感器的RH灵敏度为-1.053/,温度灵敏度为-2.306/。此外,通过引入双波长矩阵方法解决了RH和温度测量中存在的交叉灵敏度问题。所提出的传感器具有高灵敏度、结构简单和易于制造的特点,使其在食品安全、生物技术和制造等领域具有广泛的应用。