Delli Santi Maria Giulia, Castrignano Salvatore, Capezzuto Marialuisa, Consales Marco, Vaiano Patrizio, Cusano Andrea, Gagliardi Gianluca, Malara Pietro
Consiglio Nazionale delle Ricerche, Istituto Nazionale di Ottica (CNR-INO), Via Campi Flegrei 34, 80078 Pozzuoli, Italy.
Optoelectronics Group, Engineering Department, University of Sannio, C.so Garibaldi 107, 82100 Benevento, Italy.
Sensors (Basel). 2024 Jan 23;24(3):729. doi: 10.3390/s24030729.
We demonstrate a sensing scheme for liquid analytes that integrates multiple optical fiber sensors in a near-infrared spectrometer. With a simple optofluidic method, a broadband radiation is encoded in a time-domain interferogram and distributed to different sensing units that interrogate the sample simultaneously; the spectral readout of each unit is extracted from its output signal by a Fourier transform routine. The proposed method allows performing a multiparametric analysis of liquid samples in a compact setup where the radiation source, measurement units, and spectral readout are all integrated in a robust telecom optical fiber. An experimental validation is provided by combining a plasmonic nanostructured fiber probe and a transmission cuvette in the setup and demonstrating the simultaneous measurement of the absorption spectrum and the refractive index of water-methanol solutions.
我们展示了一种用于液体分析物的传感方案,该方案将多个光纤传感器集成在近红外光谱仪中。通过一种简单的光流体方法,宽带辐射被编码在时域干涉图中,并分配到不同的传感单元,这些传感单元同时对样品进行检测;每个单元的光谱读数通过傅里叶变换程序从其输出信号中提取。所提出的方法允许在一个紧凑的装置中对液体样品进行多参数分析,其中辐射源、测量单元和光谱读数都集成在一根坚固的电信光纤中。通过在装置中结合一个等离子体纳米结构光纤探头和一个透射比色皿,并展示对水 - 甲醇溶液的吸收光谱和折射率的同时测量,提供了实验验证。