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首页> 外文期刊>Journal of nanoscience and nanotechnology >CO Sensing Properties of Chemiresistive In2O3/SnO2 Composite Nanoparticle Sensors
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CO Sensing Properties of Chemiresistive In2O3/SnO2 Composite Nanoparticle Sensors

机译:Chemirationistive In2O3 / SnO2复合纳米粒子传感器的CO传感性能

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In2O3/SnO2 composite nanoparticles (NPs) were synthesized by a hydrothermal method. Fringes and spotty patterns were observed in high-resolution TEM images and corresponding selected area electron diffraction pattern, respectively, suggesting the nanoparticles were single crystals. X-ray diffraction results revealed that the In2O3/SnO2 composite NP sensor consisted of three phases: In2O3, SnO2 and In2Sn2O7-x (indium tin oxide: ITO). Energy-dispersive X-ray spectrum of the 9:1 In2O3/SnO2 composite NPs showed the atomic ratio of In2O3 to SnO2 was close to 9:1. The response of the chemiresistive sensor to CO was 9.2, which is within the highest 15% among the response values reported for the past 10 years. The ITO NP-based gas sensor is selective toward CO against other reducing gases such as toluene, acetone and benzene. The enhanced response of the 9:1 In2O3/SnO2 composite NP sensor to CO compared to the pure In2O3 NP sensor can be explained mainly by the stronger resistance modulation at the In2O3/SnO2 junctions.
机译:通过水热法合成In2O3 / SnO2复合纳米颗粒(NPS)。在高分辨率TEM图像和相应的选择区域电子衍射图中观察到条纹和斑点图案,表明纳米颗粒是单晶。 X射线衍射结果表明,IN2O3 / SNO2复合NP传感器由三相组成:IN2O3,SNO2和IN2O7-X(氧化铟锡:ITO)。 9:1 In2O3 / SnO2复合NPS的能量分散X射线光谱显示出In2O3至SnO2的原子比接近9:1。 Chemirationistive传感器到CO的响应是9.2,在过去10年的响应值中的响应值中最高的15%。基于ITO NP的气体传感器朝向其他还原气体,例如甲苯,丙酮和苯。与纯IN2O3 NP传感器相比,9:1 In2O3 / SnO2复合NP传感器的增强响应可以主要通过IN2O3 / SNO2结的耐抗性调制来解释。

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