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A highly sensitive humidity sensor based on a nanofibrous membrane coated quartz crystal microbalance

机译:基于纳米纤维膜涂层石英晶体微量天平的高灵敏度湿度传感器

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A novel humidity sensor was fabricated by electrospinning deposition of nanofibrous polyelectrolyte membranes as sensitive coatings on a quartz crystal microbalance (QCM). The results of sensing experiments indicated that the response of the sensors increased by more than two orders of magnitude with increasing relative humidity (RH) from 6 to 95% at room temperature, exhibiting high sensitivity, and that, in the range of 20-95% RH, the Log(Delta f) showed good linearity. The sensitivity of fibrous composite polyacrylic acid (PAA)/poly(vinyl alcohol) (PVA) membranes was two times higher than that of the corresponding flat films at 95% RH. Compared with fibrous PAA/PVA membranes, the nanofibrous PAA membranes exhibited remarkably enhanced humidity sensitivity due to their high PAA content and large specific surface area caused by the formation of ultrathin nanowebs among electrospun fibers. Additionally, the resultant sensors exhibited a good reversible behavior and good long term stability.
机译:通过静电纺丝纳米纤维聚电解质膜作为敏感涂层在石英晶体微天平(QCM)上制造了新型湿度传感器。传感实验的结果表明,在室温下,传感器的响应随相对湿度(RH)从6%增加到95%而增加了两个数量级以上,表现出很高的灵敏度,并且在20-95的范围内在相对湿度%下,Log(Δf)显示出良好的线性。在95%RH下,纤维复合聚丙烯酸酯(PAA)/聚乙烯醇(PVA)膜的灵敏度比相应的平膜高两倍。与纤维PAA / PVA膜相比,纳米纤维PAA膜由于其高PAA含量和大的比表面积(由于在电纺纤维中形成超薄纳米纤维网)而表现出显着增强的湿度敏感性。另外,所得传感器表现出良好的可逆行为和良好的长期稳定性。

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