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Surface Acoustic Wave Humidity Sensors Based on Graphene Oxide Thin Films Deposited with the Surface Acoustic Wave Atomizer

机译:基于表面声波雾化器沉积的氧化石墨烯薄膜的表面声波湿度传感器

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Submicron-thick films of graphene oxide and polyvinyl alcohol (PVA) were deposited onto the surface of 160 MHz quartz surface acoustic wave (SAW) delay lines, and manufactured devices were used as humidity sensors. Films were obtained by consecutive atomization of 0.35 μl droplets of 0.33 mg/ml graphene oxide water suspension or 5.00 mg/ml PVA water solution using 25 MHz SAW atomizers. During measurements authors did not observe additional attenuation of the surface acoustic wave propagating along the surface of the sensors, which confirms that deposited films have low thickness and good uniformity. It was shown that SAW quartz humidity sensors with graphene oxide films, PVA thin films and uncoated surface have sensitivity of 1.54 kHz/%RH, 0.47 kHz/%RH and 0.13 kHz/%RH respectively. Sensors with graphene oxide thin films showed the best sensitivity and dynamic response. It was concluded that they can be used as sensitive coatings in humidity sensors for industrial environment.
机译:将氧化石墨烯和聚乙烯醇(PVA)的亚微米厚膜沉积在160 MHz石英表面声波(SAW)延迟线的表面上,并将制造的设备用作湿度传感器。通过使用25 MHz SAW雾化器连续雾化0.33 mg / ml氧化石墨烯水悬浮液或5.00 mg / ml PVA水溶液的0.35μl液滴获得薄膜。在测量过程中,作者没有观察到沿传感器表面传播的声表面波的额外衰减,这证实了沉积的膜厚度低且均匀性好。结果表明,具有氧化石墨烯薄膜,PVA薄膜和未涂层表面的SAW石英湿度传感器的灵敏度分别为1.54 kHz /%RH,0.47 kHz /%RH和0.13 kHz /%RH。带有氧化石墨烯薄膜的传感器显示出最佳的灵敏度和动态响应。结论是,它们可用作工业环境湿度传感器中的敏感涂层。

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