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Electro-Optical Gas Sensor Consisting of Nanostructured Paper Coating and an Ultrathin Sensing Element

机译:电光气体传感器由纳米结构纸涂层和超薄传感元件组成

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摘要

This work describes the use of a paper substrate for electro-optical detection of toxic hydrogen sulfide (H2S) gas. For electrical detection, a chemiresistive type of gas sensor was developed. Ultrathin gold film electrodes (UTGFE) were produced by physical vapor deposition of gold on nanostructured latex-coated paper substrate. The gas-sensing film was deposited on the electrodes by inkjet printing. The sensing films were characterized by atomic force microscopy, X-ray photoelectron spectroscopy and conductometry. The sensing films showed more than seven orders of magnitude change in resistance when exposed to as low as 1 part per million (ppm) H2S gas at room temperature. Besides resistive response, the change in color of the sensing films was studied on a paper substrate, both as a function of print density of the sensing material and H2S concentration. For quantification of the analyte the red, green and blue color deconvolution was performed on the pictures of the paper strip indicator using an open source software. A clear response was obtained from the blue channel. The inexpensive disposable color strips produced on the paper substrate can be used for qualitative and quantitative detection (as low as 1.5 ppm) of H2S gas.
机译:该工作描述了纸质基材用于电光检测有毒硫化氢(H2S)气体。对于电气检测,开发了一种化学的气体传感器。通过在纳米结构胶乳涂覆的纸基材上的金色沉积来制备超薄金膜电极(UTGFE)。通过喷墨印刷将气体传感膜沉积在电极上。感测膜的特征是通过原子力显微镜,X射线光电子能谱和传导测定。当室温下暴露于每百万(PPM)H 2 S气体时,感测膜在电阻下显示出超过七个幅度变化。除电阻响应外,在纸基材上研究了传感膜的颜色变化,随着传感材料的印刷密度和H2S浓度的函数。对于分析物的定量,使用开源软件对纸条指示器的图片进行红色,绿色和蓝色解卷。从蓝色通道获得明确的响应。在纸基材上产生的廉价的一次性彩色条带可用于H2S气体的定性和定量检测(低至1.5ppm)。

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