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Facile Synthesis of Nano-Diced SnO2-ZnO Composite by Chemical Route for Gas Sensor Application

机译:化学路线纳米切块SnO2-ZnO复合材料的容易合成气体传感器应用

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摘要

The simple chemical bath deposition (CBD) method is used to synthesize SnO2-ZnO nanocomposite at room temperature. Formation of SnO2-ZnO nancomposite is confirmed by the x-ray diffraction (XRD) pattern of annealed films. Scanning electron microscopy (SEM) micrographs of nanocomposite SnO2-ZnO depict that morphological change from nanocubes to manifold hexagonal nanorods with an increase in ZnO content in a composite sample. Also, pure SnO2 sample exhibits interconnected nanospheres. Electron dispersive spectroscopy (EDS) is employed to confirm elemental compositions in composite films. SnO2-ZnO samples were applied as a sensor for different test gases, namely liquified petroleum gas (LPG), ethanol, ammonia (NH3), and hydrogen sulfide (H2S). The maximum response of 59.67% is observed for ethanol at an operating temperature of 275 degrees C and 24 ppm gas concentration. Also, a composite sensor shows a quick response in comparison with a bare sensor. This superior performance of composite over pure sensor may be attributed to a n-n heterojunction at intergrain boundaries. The SnO2-ZnO sensor is found to be selective towards ethanol even at lower gas concentrations.
机译:简单的化学浴沉积(CBD)方法用于在室温下合成SnO2-ZnO纳米复合材料。通过退火薄膜的X射线衍射(XRD)图案来确认SnO2-ZnO Nancompite的形成。扫描电子显微镜(SEM)纳米复合材料SnO2-ZnO的显微照片描绘了从纳米尺寸到歧管六方纳米杆的形态变化,随着复合样品中的ZnO含量增加。此外,纯SnO2样品表现出相互连接的纳米球。使用电子分散光谱(EDS)以确认复合膜中的元素组合物。将SnO2-ZnO样品作为不同的试验气体的传感器,即液化石油气(LPG),乙醇,氨(NH 3)和硫化氢(H2S)。在275℃和24ppm气体浓度的工作温度下,在乙醇中观察到59.67%的最大响应。而且,复合传感器与裸声传感器相比,快速响应。在纯传感器上的复合材料的这种优异性能可能归因于晶体边界的N-N异质结。即使在较低的气体浓度下,发现SNO2-ZnO传感器也为乙醇选择性。

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