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High-selectivity Eco-friendly Hydrophilic Gas Sensor Using the Functional Groups of Graphene Oxide Coated on an Aluminum Oxide Nanostructure

机译:使用涂覆在氧化铝纳米结构上的石墨烯氧化物官能团的高选择性生态友好型亲水气体传感器

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We propose an optical gas sensor using anodic aluminum oxide (AAO) and a graphene oxide (GO) layer to detect hydrophilic gas. In the proposed sensor, GO reacts with the induced gas to cause a change in the refractive index of the AAO surface, which can be optically detected by measuring the reflected wave on the surface of the device. By using the high reactivity of GO to hydrophilic gases owing to reactors such as hydroxyl and carboxyl groups, the GO-coated AAO-based sensor showed high sensitivity of 15 a.u./ppm for the hydrophilic gas, dimethylamine gas, and low sensitivity for the hydrophobic, toluene. The AAO was fabricated by second anodization, a hard anodization, and the GO layer was easily fabricated by using the spin-coating method. Through analysis of scanning electron microscopy, atomic force microscopy images and energy dispersive X-ray microanalysis, the GO thin film formed on the AAO was confirmed, demonstrating that a sensor with high selectivity for hydrophilic gas was fabricated.
机译:我们提出了一种使用阳极氧化铝(AaO)和石墨烯(GO)层的光学气体传感器以检测亲水气体。在所提出的传感器中,去与诱导气体反应,以引起AAO表面的折射率的变化,这可以通过测量器件表面上的反射波来光学检测。通过使用羟基和羧基的反应器使用的高反应性,基于型AOO的传感器为亲水性气体,二甲胺气体和低疏水性的低灵敏度显示出高灵敏度的15Au / ppm , 甲苯。通过第二阳极氧化,硬阳极氧化,通过使用旋涂方法容易地制造AAO。通过扫描电子显微镜的分析,原子力显微镜图像和能量分散X射线微基分析,确认形成在AAO上的薄膜,证明具有高选择性的亲水气体的传感器。

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