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Humidity sensors based on A1N microcantilevers excited at high-order resonant modes and sensing layers of uniform graphene oxide

机译:基于A1N微悬臂梁的湿度传感器,在高阶谐振模式下激发并感测均匀的氧化石墨烯层

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摘要

Resonant humidity sensors base on interdigital transducers (IDTs) excited microcantilevers are proposed for high sensitivity. The microcantilevers are coated with uniform graphene oxide (GO) thin films as sensing layers. For the first time, IDTs are used to excite piezoelectric microcantilevers to operate at very high-order resonant modes with intense signal. A small temperature coefficient of frequency (-23.6 ppm/degrees C) of the microcantilvers is obtained by using AlN/Si (surface highly doped) layered structure. Uniform and thickness-controllable GO films covering the surface of microcantilevers are formed by vacuum filtration. Compared with the normal electrodes excited sensor with the same structure size, the sensitivity of the IDTs excited sensor is increased from 9.67 to 84.41 Hz/% RH. The thicker GO film, the higher sensitivity of the humidity sensor. Very little humidity hysteresis ( 3% RH) of the sensors is observed in a wide test range from 10% RH to 90% RH. Moreover, the sensors have excellent short term repeatability, fast response and short recovery time (about 10 s).
机译:提出了基于叉指换能器(IDT)激发的微悬臂梁的谐振湿度传感器,以实现高灵敏度。微悬臂上覆盖有均匀的氧化石墨烯(GO)薄膜作为传感层。 IDT首次用于激励压电微悬臂梁,使其在具有高强度信号的高阶谐振模式下工作。通过使用AlN / Si(表面高掺杂)层状结构,可以得到微悬臂梁的频率频率系数小(-23.6 ppm /℃)。通过真空过滤形成覆盖微悬臂梁表面的均匀且可控制厚度的GO薄膜。与具有相同结构尺寸的普通电极激励传感器相比,IDT激励传感器的灵敏度从9.67 Hz /%RH增加到84.41 Hz /%RH。 GO膜越厚,湿度传感器的灵敏度越高。在从10%RH到90%RH的较宽测试范围内,传感器的湿度滞后(<3%RH)非常小。此外,这些传感器具有出色的短期重复性,快速响应和较短的恢复时间(约10 s)。

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