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Surface Acoustic Wave Sensor with Pd/ZnO Bilayer Structure for Room Temperature Hydrogen Detection

机译:具有Pd / ZnO双层结构的表面声波传感器用于室温氢气检测

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摘要

A Surface Acoustic Wave (SAW) hydrogen sensor with a Pd/ZnO bilayer structure for room temperature sensing operation has been obtained by Pulsed Laser Deposition (PLD). The sensor structure combines a Pd layer with optimized porosity for maximizing mass effects, with the large acoustoelectric effect at the Pd/ZnO interface. The large acoustoelectric effect is due to the fact that ZnO has a surface conductivity which is highly sensitive to chemisorbed gases. The sensitivity of the sensor was determined for hydrogen concentrations between 0.2% and 2%. The limit of detection (LOD) of the bilayer sensor was about 4.5 times better than the single ZnO films and almost twice better than single Pd films.
机译:已经通过脉冲激光沉积(PLD)获得了具有Pd / ZnO双层结构的用于室温传感操作的表面声波(SAW)氢传感器。传感器结构结合了具有优化孔隙率的Pd层,可最大程度地发挥质量效应,并在Pd / ZnO界面处具有较大的声电效应。较大的声电效应是由于ZnO具有对化学吸附气体高度敏感的表面电导率这一事实。确定传感器的灵敏度是针对介于0.2%和2%之间的氢浓度。双层传感器的检测极限(LOD)约为单ZnO薄膜的4.5倍,几乎是单Pd薄膜的两倍。

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