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Surface Plasmon Resonance Based Fiber Optic Ammonia Sensor Utilizing Bromocresol Purple

机译:利用溴甲酚紫的基于表面等离子体共振的光纤氨传感器

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In this paper, a surface plasmon resonance (SPR) based fiber optic ammonia gas sensor has been designed and fabricated using bromocresol purple (BCP) as sensing element. The sensor works under wavelength modulation scheme. The detection of ammonia gas has been carried out at room temperature. Three different kinds of film coating configurations, namely silver + BCP, gold + BCP, and silver + silicon + BCP on the unclad portion of the fiber have been used for studying the role of each layer. Further, to optimize the performance of the sensor, the films of varying thicknesses were coated using thermal evaporation technique. Experiments have been performed for the ammonia concentrations ranging from 0 to 150 ppm around the probe. To record the SPR spectrum, light from a polychromatic source is launched in the fiber and the spectrum is recorded at the other end of the fiber. The spectrum has a peak at lower wavelength while a dip at the higher wavelength. The dip corresponds to SPR while the peak appears to be due to fluorescence properties of the dye. It has been observed that as the ammonia gas comes in contact of the BCP layer, it changes the refractive index of the BCP dye which, in turn, changes the resonance wavelength. Further, the change in refractive index increases as the concentration of ammonia gas increases up to certain concentration of ammonia after that it saturates. Silicon layer has been shown as a protection layer for silver and gold from oxidation and acts as a tuner of wavelength. The proposed ammonia sensor has small response as well as recovery time.
机译:本文以溴甲酚紫(BCP)为传感元件,设计并制造了基于表面等离子体共振(SPR)的光纤氨气传感器。该传感器在波长调制方案下工作。氨气的检测已在室温下进行。研究了纤维未覆盖部分上的三种不同类型的薄膜涂层配置,即银+ BCP,金+ BCP和银+硅+ BCP,以研究每一层的作用。此外,为了优化传感器的性能,使用热蒸发技术涂覆了不同厚度的薄膜。已经对探头周围的氨浓度范围从0到150 ppm进行了实验。为了记录SPR光谱,将来自多色光源的光发射到光纤中,并将该光谱记录在光纤的另一端。光谱在较低波长处具有峰值,而在较高波长处具有下降。该下降对应于SPR,而该峰似乎归因于染料的荧光性质。已经观察到,随着氨气与BCP层接触,它改变了BCP染料的折射率,进而改变了共振波长。此外,折射率的变化随着氨气浓度的增加而增加,直到其饱和后达到一定的氨浓度。硅层已显示为银和金免受氧化的保护层,并充当波长的调谐器。所提出的氨传感器具有较小的响应以及恢复时间。

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