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Modeling analysis and experimental study on the optical fiber hydrogen sensor based on Pd-Y alloy thin film

机译:基于Pd-Y合金薄膜的光纤氢传感器的建模分析与实验研究

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摘要

The failure of hydrogen sensor with palladium film is primarily the phase transition of PdH. To restrain this, a novel palladium and yttrium (Pd-Y) alloy film was prepared by the co-sputtering method and was used to design an optical fiber hydrogen sensor. A sensor model was established based on the optical film matrix method. The relationship between the reflectivity of the film and the hydrogen concentration was discussed. The experimental results show that this sensor is superior to the traditional sensor with Pd in shortening the response and recovery time, restraining drift, and promoting repeatability. The Pd-Y alloy film is an extremely promising material for detecting hydrogen.
机译:带有钯膜的氢传感器的故障主要是PdH的相变。为了抑制这种情况,通过共溅射法制备了新颖的钯钇钇(Pd-Y)合金膜,并用于设计光纤氢传感器。基于光学薄膜矩阵法建立了传感器模型。讨论了膜的反射率与氢浓度之间的关系。实验结果表明,该传感器在缩短响应和恢复时间,抑制漂移和提高可重复性方面优于传统的Pd传感器。 Pd-Y合金膜是检测氢的极有前途的材料。

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