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Surface Acoustic Wave Sensors for Hydrogen and Deuterium Detection

机译:用于氢和氘检测的表面声波传感器

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A delay-line-type surface acoustic wave (SAW) sensor based on a zinc oxide (ZnO) sensitive layer was developed. Two types of sensitive layers were obtained: ZnO nanowires and ZnO thin films, both deposited using laser methods (VLS-PLD and PLD, respectively) onto quartz substrates. The responses of sensors with two different nanowire lengths (300 and 600 nm) were compared with those of sensors with thin films of different thicknesses (ca. 100 and 200 nm) to different concentrations of hydrogen and deuterium. The experimental results revealed a high response at low concentrations and a rapid saturated response for nanowires, but a low response at low concentrations and a linear response to much higher gas concentrations for the thin-film-based SAW sensors.
机译:开发了基于氧化锌(ZnO)敏感层的延迟线型表面声波(SAW)传感器。获得了两种类型的敏感层:ZnO纳米线和ZnO薄膜,均使用激光方法(分别为VLS-PLD和PLD)沉积在石英基板上。比较了具有两种不同纳米线长度(300和600 nm)的传感器与具有不同厚度(约100和200 nm)薄膜的传感器对不同浓度的氢和氘的响应。实验结果表明,对于基于薄膜的声表面波传感器,纳米线在低浓度下具有较高的响应速度,而纳米线则具有快速的饱和响应,但在低浓度下具有较低的响应速度,而对高得多的气体浓度则具有线性响应。

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