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Ethanol gas sensor based on a self-supporting hierarchical SnO2 nanorods array

机译:基于自支撑分级SnO2纳米棒阵列的乙醇气体传感器

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3D array nanostructures assembled from 0D nanoparticles, 1D nanorods, nanowires, nanotubes, and 2D nanosheets on specific substrates are an important class of architecture in nanomaterials application. SnO2 nanostructure arrays on different types of heterogeneous substrates have been reported. Here, we provide a self-supporting 3D hierarchical SnO2 nanorods array on homogeneous substrate by a one-step solvothermal route with the help of an anionic surfactant. By investigating the morphology of products using different reaction conditions, the formation mechanism of the structure is proposed. The self-supporting SnO2 nanorods array is applied as a gas sensor to a series of harmful gases. It exhibited a high response (S-r = 22.69) to ethanol gas at a low concentration of 50 ppm at 260 degrees C. Its unique structure with a large surface area and interval space accounts for its good performance in gas sensing.
机译:由0D纳米颗粒,1D纳米棒,纳米线,纳米管和2D纳米片组装在特定基材上的3D阵列纳米结构是纳米材料应用中一类重要的体系结构。已经报道了在不同类型的异质衬底上的SnO 2纳米结构阵列。在这里,我们借助阴离子表面活性剂通过一步溶剂热途径在均质基材上提供了自支撑的3D分层SnO2纳米棒阵列。通过研究不同反应条件下产物的形貌,提出了结构的形成机理。自支撑的SnO2纳米棒阵列被用作气体传感器,用于一系列有害气体。它在260摄氏度下以50 ppm的低浓度显示对乙醇气体的高响应(S-r = 22.69)。其独特的结构具有较大的表面积和间隔空间,说明了其在气体传感方面的良好性能。

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