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Sensitive and selective cataluminescence-based sensor system for acetone and diethyl ether determination

机译:基于灵敏度和选择性催化发光的丙酮和乙醚测定传感器系统

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摘要

A three-dimensional hierarchical CdO nanostructure with a novel bio-inspired morphology is reported. The field emission scanning electronic microscopy, transmission electron microscopy and X-ray diffractometer were employed to characterize the as-prepared samples. In gas-sensing measurements, acetone and diethyl ether were employed as target gases to investigate cataluminescence (CTL) sensing properties of the CdO nanostructure. The results show that the as-fabricated CdO nanostructure exhibited outstanding CTL properties such as stable intensity, high signaloise values, short response and recovery time. The limit of detection of acetone and diethyl ether was ca. 6.5ppm and 6.7ppm, respectively, which was below the standard permitted concentrations. Additionally, a principal components analysis method was used to investigate the recognizable ability of the CTL sensor, and it was found that acetone and diethyl ether can be distinguished clearly. The performance of the bio-inspired CdO nanostructure-based sensor system suggested the promising application of the CdO nanostructure as a novel highly efficient CTL sensing material. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:报道了具有新颖的生物启发形态的三维分层CdO纳米结构。使用场发射扫描电子显微镜,透射电子显微镜和X射线衍射仪对制备的样品进行表征。在气体传感测量中,使用丙酮和乙醚作为目标气体,以研究CdO纳米结构的催化发光(CTL)传感特性。结果表明,所制备的CdO纳米结构表现出出色的CTL特性,例如强度稳定,信号/噪声值高,响应时间短和恢复时间短。丙酮和乙醚的检出限为。分别为6.5ppm和6.7ppm,低于标准允许的浓度。另外,使用主成分分析方法研究了CTL传感器的可识别能力,发现可以清楚地区分丙酮和二乙醚。受生物启发的基于CdO纳米结构的传感器系统的性能表明,CdO纳米结构作为一种新型的高效CTL传感材料具有广阔的应用前景。版权所有(c)2014 John Wiley&Sons,Ltd.

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