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Conductometric Gas Sensors based on Nanostructured WO3 Thin Films

机译:基于纳米结构WO3薄膜的电导气体传感器

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摘要

Nanostructured WO3 thin films have been prepared by thermal evaporation to detect hydrogen at low temperatures. udThe influence of heat treatment on the physical, chemical and electronic properties of these films has been investigated. The films were annealed at 400oC for 2 hours in air. AFM and TEM analysis revealed that the as-deposited WO3 film is high amorphous and made up of cluster of particles. Annealing at 400oC for 2 hours in air resulted in very fine grain size of the order of 5 nm and porous structure. GIXRD and Raman analysis revealed that annealing improved the crystallinity of WO3 film. Gas sensors based on annealed WO3 films have shown a high response towards various concentrations (10-10000 ppm) H2 at an operating temperature of 150oC. The improved sensing performance at low operating temperature is due to the optimum physical, chemical and electronic properties achieved in the WO3 film through annealing.
机译:已经通过热蒸发制备了纳米结构的WO3薄膜以检测低温下的氢。 ud已经研究了热处理对这些薄膜的物理,化学和电子性能的影响。将薄膜在空气中于400°C退火2小时。 AFM和TEM分析表明,沉积的WO3薄膜是高度非晶态的,由颗粒簇组成。在空气中于400°C退火2小时,可得到5nm数量级的极细晶粒和多孔结构。 GIXRD和拉曼分析表明,退火改善了WO 3膜的结晶度。基于退火WO3薄膜的气体传感器在150oC的工作温度下对各种浓度的H2(10-10000 ppm)表现出高响应。在低工作温度下改善的感测性能归因于WO3薄膜通过退火获得的最佳物理,化学和电子性能。

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