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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Surface plasmon resonance-based fiber optic hydrogen sulphide gas sensor utilizing Cu-ZnO thin films
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Surface plasmon resonance-based fiber optic hydrogen sulphide gas sensor utilizing Cu-ZnO thin films

机译:利用Cu-ZnO薄膜的表面等离子体共振基光纤硫化物气体传感器

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摘要

We report an experimental study on a surface plasmon resonance (SPR)-based fiber optic hydrogen sulphide gas sensor with a thin metal oxide (zinc oxide (ZnO)) layer as the additional layer. This zinc oxide layer is grown over the copper layer to support surface plasmons at the metal-dielectric interface at room temperature. The wavelength interrogation mode of operation has been used to characterize the sensor. The thin film of zinc oxide over the copper film was deposited on the unclad portion of the fiber by the thermal evaporation technique. Experiments were performed for the detection of concentrations of hydrogen sulphide gas varying from 0 to 100 ppm around the probe. The unpolarized light from a polychromatic source is launched from one end of the fiber and the corresponding SPR spectrum is recorded at the other end. The recorded SPR spectrum shows a shift in the resonance wavelength on a change in the hydrogen sulphide gas concentration, which is considered as a detectable signal for the characterization of the sensor. Further, the optimization of the performance of the sensor was achieved by varying the thickness of the zinc oxide film. The sensor possesses a very fast response time and high sensitivity. Since the sensor utilizes optical fibers it has additional advantages of remote sensing, online monitoring, light weight and low cost.
机译:我们在用薄金属氧化物(氧化锌(ZnO))层作为附加层的薄金属氧化物(氧化锌(ZnO))层的表面等离子体共振(SPR)光学硫化氢气体传感器进行了实验研究。该氧化锌层在铜层上生长,以在室温下支撑金属介电界面处的表面等离子体。波长询问操作模式已被用于表征传感器。通过热蒸发技术将铜膜上的氧化锌薄膜沉积在纤维的未凝固部分上。进行实验,用于检测从0至100ppm周围的硫化氢气体的浓度进行检测。来自多色源的非偏振光从光纤的一端发射,另一端记录相应的SPR光谱。记录的SPR光谱显示出在硫化氢气体浓度的变化上的谐振波长的偏移,其被认为是用于表征传感器的可检测信号。此外,通过改变氧化锌膜的厚度来实现传感器性能的优化。传感器具有非常快速的响应时间和高灵敏度。由于传感器利用光纤,因此它具有遥感,在线监测,重量轻,成本低的额外优点。

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