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基于双曲超材料的光纤SPR传感器通过智能水凝胶增强用于汗液pH值测量

Hyperbolic-Metamaterial-Based Optical Fiber SPR Sensor Enhanced by a Smart Hydrogel for Perspiration pH Measurements.

作者信息

Chen Ying, Hu Shiqi, Shen Chao, Zhang Lingling, Yi Chu, Chen Yaofei, Liu Gui-Shi, Chen Lei, Chen Zhe, Luo Yunhan

机构信息

Guangdong Provincial Key Laboratory of Optical Fiber Sensing and Communications, Guangzhou 510632, P. R. China.

Department of Optoelectronic Engineering, College of Physics and Optoelectronic Engineering, Jinan University, Guangzhou 510632, P. R. China.

出版信息

Nano Lett. 2025 Jan 8;25(1):129-137. doi: 10.1021/acs.nanolett.4c04620. Epub 2024 Dec 17.

Abstract

An optical fiber surface plasmon resonance (SPR) sensor, leveraging hyperbolic metamaterials (HMMs) and pH-sensitive hydrogels, has been devised for pH detection in perspiration. Dispersion-tunable HMMs enable the sensor to transcend the inherent structural constraints of an optical fiber and enhance its refractive index (RI) sensitivity. pH-sensitive hydrogels exhibit diverse swelling behaviors due to varying ionization degrees of carboxyl groups under different solution pH conditions, leading to a notable RI change. The sensor achieves a high RI sensitivity of 6963.64 nm RIU and remarkable pH sensitivity of -64.04 and -30.63 nm pH within the pH ranges of 2.7 to 4.7 and 4.7 to 7.5, respectively. Compared to the sensitivity of three other constituents in perspiration, namely, urea, sodium chloride, and glucose, the sensor demonstrates exceptional pH selectivity. Additionally, it maintains good stability during operation and after prolonged storage. It is believed that the sensor has potential in health monitoring, medical diagnosis, disease treatment, etc.

摘要

一种利用双曲线超材料(HMMs)和pH敏感水凝胶的光纤表面等离子体共振(SPR)传感器已被设计用于汗液中的pH检测。色散可调谐HMMs使该传感器能够超越光纤固有的结构限制,并提高其折射率(RI)灵敏度。pH敏感水凝胶在不同溶液pH条件下由于羧基电离程度不同而表现出不同的溶胀行为,导致显著的RI变化。该传感器在2.7至4.7和4.7至7.5的pH范围内分别实现了6963.64 nm/RIU的高RI灵敏度和-64.04和-30.63 nm/pH的显著pH灵敏度。与汗液中其他三种成分(即尿素、氯化钠和葡萄糖)的灵敏度相比,该传感器表现出优异的pH选择性。此外,它在运行期间和长期储存后都保持良好的稳定性。据信,该传感器在健康监测、医学诊断、疾病治疗等方面具有潜力。

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