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Sezawa wave acoustic humidity sensor based on graphene oxide sensitive film with enhanced sensitivity

机译:基于具有增强灵敏度的氧化石墨烯敏感膜的Sezawa波声湿度传感器

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摘要

The measurement of humidity is very important for air control in ambient, industry, cars, houses, closed apartments, museums, atomic power stations, etc. In the present work the theoretical analysis of the surface acoustic wave propagation in “graphen oxide (GO) film/ZnO film/Si substrate” layered structure has been performed. The change of GO film conductivity due to humidity has been taken into account during the calculations. Based on the obtained results an improved microwave acoustic humidity sensor has been developed. The sensor has enhanced sensitivity of about 91 kHz/% and linear response vs relative humidity in the range 20–98%RH. It is based on the mode belonging to Sezawa wave family that is shown to be more sensitive towards electric conductivity variations in GO film produced by adsorbed water molecules than the Rayleigh counterpart.
机译:湿度的测量对于环境,工业,汽车,房屋,封闭式公寓,博物馆,原子能发电站等中的空气控制非常重要。在当前工作中,对“氧化石墨(GO)”中的表面声波传播进行理论分析。膜/ ZnO膜/ Si衬底”的层状结构已经完成。在计算过程中已考虑到由于湿度引起的GO膜电导率的变化。基于获得的结果,已经开发了改进的微波声湿度传感器。该传感器的灵敏度提高了约91 kHz /%,相对湿度在20–98%RH范围内具有线性响应。它基于属于Sezawa波族的模式,该模式显示出对所吸附的水分子产生的GO膜中的电导率变化比Rayleigh对应物更敏感。

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