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Synthesis and Gas Sensing Properties of SnO_2 Nanostructures by Thermal Evaporation

机译:通过热蒸发的SnO_2纳米结构的合成与气体传感性能

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Tin oxide nanostructures (NS) were grown on silicon substrates by thermal evaporation method with three different parameters. These parameters were temperatures (650°C, 750°C and 850°C), nickel catalyst concentrations (0, 5 and 10 milimoles) and tin powder source to substrate distances (2 cm, 4 cm and 6 cm). The parameters were found to affect the size and morphology of the synthesized nanostructures. Formation of nanospheres (NSs), nano-needles (NNs) and nanowires (NWs) of tin oxide were observed by Scanning Electron Microscope (SEM) at different synthesis conditions. Synthesis temperature was found to have most pronounced effect on the size and morphology of the nanostructures. Catalyst concentration has affected the porosity and growth of the nanostructures. The distance between source and substrate affected the nanostructures predominately on distribution and particle size. Energy dispersion X-ray (EDX) analysis confirms the presence of tin and oxygen in all nanostructures at all synthesis conditions. X-ray diffraction (XRD) proves the formation of tin oxide phase in all samples. Significant formation of tin oxide nanowires was observed at 850°C. Gas sensing properties of SnO_2 nanowires (NW) toward ethanol (C_2H_5OH) gas at 450°C with different volume concentration was measured. It was found SnO_2 NW had good sensing properties for C_2H_5OH at 100 ppm compared to measurements made at 25-50 ppm.
机译:通过具有三种不同参数的热蒸发方法在硅基衬里生长氧化锡纳米结构(NS)。这些参数是温度(650℃,750℃和850℃),镍催化剂浓度(0,5和10米硫胆砂)和锡粉末源与基板距离(2cm,4cm和6cm)。发现参数影响合成纳米结构的尺寸和形态。通过在不同合成条件下扫描电子显微镜(SEM),观察纳米球(NSS),纳米针(NNS)和纳米线(NNS),氧化锡的纳米线(NNS)。发现合成温度对纳米结构的大小和形态具有最明显的影响。催化剂浓度影响了纳米结构的孔隙率和生长。源极和衬底之间的距离主要在分布和粒度上影响纳米结构。能量分散X射线(EDX)分析证实了所有合成条件下所有纳米结构中的锡和氧​​的存在。 X射线衍射(XRD)证明了所有样品中的氧化锡相的形成。在850℃下观察到氧化锡纳米线的显着形成。测定了SnO_2纳米线(NW)对乙醇(C_2H_5OH)气体在450℃下具有不同体积浓度的气体传感性能。发现SnO_2 NW与在25-50ppm的测量相比,100ppm的C_2H_5OH具有良好的感测性能。

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