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Selective room-temperature sensing of NO2 by WO3 film/graphene layers

机译:WO 3 薄膜/石墨烯层对NO 2 的选择性室温感测

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This is one of the first attempts of making WO thick film selective at low operating temperature by placing graphene sheets directly on the film surface. The WO film was prepared by DC magnetron reactive sputtering of a pure tungsten target and annealing in air. The thickness of the film averaged 507 nm from FIB cross-sectioning and STEM measurement. The film was characterized with XRD, XPS and Raman spectroscopy. Graphene was synthesized on copper foil using plasma enhanced chemical vapor deposition of methane gas, which was found to produce three monolayers of graphene sheets according to Raman spectroscopic analysis. The graphene was transferred onto the WO film and annealed. It was found that the pure WO sensed low concentrations of nitrogen dioxide at 30°C and 100°C operating temperature. The selectivity towards nitrogen dioxide over ammonia and carbon monoxide was achieved with graphene on the tungsten trioxide film at the compromise of sensitivity at both operating temperatures. The analysis of the graphene/WO composite orientation may lead to improved sensor capabilities as well as better understanding of the sensing mechanism.
机译:这是通过将石墨烯片直接放在薄膜表面上的低操作温度下在低操作温度下进行WO厚膜的首次尝试之一。通过DC磁控激动溅射制备WO膜的纯钨靶并在空气中退火。膜的厚度从FIB横截面和茎测量平均为507nm。该薄膜的特征在于XRD,XPS和拉曼光谱。使用甲烷气体的等离子体增强的化学气相沉积在铜箔上合成石墨烯,根据拉曼光谱分析,发现甲烷气体的化学气相沉积,其产生三种石墨烯片。将石墨烯转移到WO膜上并退火。发现纯WO在30℃和100℃的操作温度下感测到低浓度的二氧化氮。在氧烯上在氧化钨膜上以敏感性的敏感性的敏感性,在氧化钨膜上实现了对二氧化氮和一氧化碳的选择性。石墨烯/ WO复合取向的分析可能导致改善的传感器能​​力以及更好地理解传感机制。

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