Physics Department, Indian Institute of Technology Delhi, New Delhi, 110016, India.
Analyst. 2013 May 7;138(9):2640-6. doi: 10.1039/c3an00097d.
The fabrication and characterization of a surface plasmon resonance based pH sensor using coatings of silver, ITO (In2O3:SnO2), aluminium and smart hydrogel layers over an unclad core of an optical fiber have been reported. The silver, aluminium and ITO layers were coated using a thermal evaporation technique, while the hydrogel layer was prepared using a dip-coating method. The sensor works on the principle of detecting changes in the refractive index of the hydrogel layer due to its swelling and shrinkage caused by changes in the pH of the fluid surrounding the hydrogel layer. The sensor utilizes a wavelength interrogation technique and operates in a particular window of low and high pH values. Increasing the pH value of the fluid causes swelling of the hydrogel layer, which decreases its refractive index and results in a shift of the resonance wavelength towards blue in the transmitted spectra. The thicknesses of the ITO and aluminium layers have been optimized to achieve the best performance of the sensor. The ITO layer increases the sensitivity while the aluminium layer increases the detection accuracy of the sensor. The proposed sensor possesses maximum sensitivity in comparison to the sensors reported in the literature. A negligible effect of ambient temperature in the range 25 °C to 45 °C on the performance of the sensor has been observed. The additional advantages of the sensor are short response time, low cost, probe miniaturization, probe re-usability and the capability of remote sensing.
已经报道了一种基于表面等离子体共振的 pH 传感器的制造和特性,该传感器使用银、ITO(氧化铟锡)、铝和智能水凝胶层覆盖在光纤的未涂层核心上。银、铝和 ITO 层是通过热蒸发技术涂覆的,而水凝胶层是通过浸涂法制备的。传感器的工作原理是检测由于周围流体的 pH 值变化导致水凝胶层的溶胀和收缩而引起的水凝胶层的折射率变化。传感器采用波长询问技术,在低和高 pH 值的特定窗口中工作。增加流体的 pH 值会导致水凝胶层溶胀,从而降低其折射率,并导致传输光谱中共振波长向蓝色移动。已经优化了 ITO 和铝层的厚度,以实现传感器的最佳性能。ITO 层增加了传感器的灵敏度,而铝层提高了传感器的检测精度。与文献中报道的传感器相比,所提出的传感器具有最大的灵敏度。已经观察到传感器在 25°C 至 45°C 范围内的环境温度对其性能的影响可以忽略不计。该传感器的其他优点是响应时间短、成本低、探头小型化、探头可重复使用以及远程感应的能力。