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首页> 外文期刊>International journal of environmental analytical chemistry >A new hydrogen cyanide chemiresistor gas sensor based on graphene quantum dots
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A new hydrogen cyanide chemiresistor gas sensor based on graphene quantum dots

机译:基于石墨烯量子点的新型氰化氢化学电阻气体传感器

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Graphene quantum dot (GQDs), synthesised via controlled carbonisation of citric acid, were reduced by hydrazine hydrate and then used as hydrogen cyanide (HCN) gas sensors. Checking of the reduction step by Fourier transform infrared spectroscopy (FT-IR) and X-ray photoelectron spectroscopy (XPS) techniques revealed that most of the oxygen-containing functional groups were removed from the GQDs. It was observed the reduction process is necessary for sensitising of GQDs for HCN gas. The electrical resistance of the reduced GQDs was increased as a result of their exposure to HCN gas. Accepting a p-type semiconducting characteristic for GQD material, he above-mentioned behaviour suggested electron donation from HCN to GQD. The sensor response to HCIsil gas was reversible, suggesting a reversible adsorption/desorption phenomenon of HCN to the GQDs. The response as well as the recovery time of the sensor was different depending on the HCN concentration tested. The developed sensor showed linear HCN response from 1 to 100 ppm. The detection limit of the sensor was estimated to be 0.6 ppm (SIN). Relative standard deviation f HCN determination by the developed sensor was calculated to be 5.7% (n = 4, [HCN]= 50 ppm). The sensor response was did not vary significantly within 6 months
机译:通过柠檬酸的受控碳化合成的石墨烯量子点(GQD)被水合肼还原,然后用作氰化氢(HCN)气体传感器。通过傅立叶变换红外光谱(FT-IR)和X射线光电子能谱(XPS)技术检查还原步骤,发现大多数含氧官能团已从GQD中去除。观察到还原过程对于使GQD对HCN气体敏感是必需的。由于还原的GQD暴露于HCN气体,因此其电阻增加。他接受了GQD材料的p型半导体特性,他的上述行为建议将电子从HCN捐赠给GQD。传感器对HCIsil气体的响应是可逆的,表明HCN对GQD的可逆吸附/解吸现象。传感器的响应以及恢复时间因所测试的HCN浓度而异。已开发的传感器显示出1至100 ppm的线性HCN响应。传感器的检测极限估计为0.6 ppm(SIN)。经开发的传感器确定的HCN的相对标准偏差计算为5.7%(n = 4,[HCN] = 50 ppm)。传感器反应在6个月内没有明显变化

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