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Fabrication of C-doped WO3 nanoamterial-based gas sensors for highly sensitive NO2 detection at room temperature

机译:C掺杂WO 3 用于高敏感的NO 2 检测室温下的纳米钳式气体传感器

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This paper firstly reports a method to fabricate C-doped tungsten oxide (WO3) nanomaterials using carbon nanotubes (CNTs) template and demonstrates its application to highly sensitive NO2 gas sensing at room temperature. The W-coating on the CNTs template is performed by a simple solution process, and the C-doped WO3 nanomaterials are synthesized through an annealing process while the CNTs are removed simultaneously. The synthesized C-doped WO3 has a shape like the CNTs, which indicates that the material has a large surface area favorable for sensitive gas detection. The fabricated sensor detected 6 ppm of NO2 at room temperature and returned perfectly to its original state. These sensing performance is comparable to the existing WO3-based NO2 sensors.
机译:本文首先报道了一种使用碳纳米管(CNT)模板制造C掺杂钨(WO 3 )纳米材料的方法,并证明其在高度敏感的NO 2 气体传感中的应用在室温下。 CNT模板上的W-涂层通过简单的溶液方法进行,并且通过退火过程合成C掺杂的WO 3 纳米材料,同时同时除去CNT。合成的C掺杂WO 3 具有类似CNT的形状,表明该材料具有良好的敏感气体检测的大表面积。制造的传感器在室温下检测到NO 2 6ppm,并完美地返回其原始状态。这些传感性能与现有的WO 3 基于 2 传感器相当。

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