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首页> 外文期刊>Applied Surface Science >Tungsten trioxide nanoparticles decorated tungsten disulfide nanoheterojunction for highly sensitive ethanol gas sensing application
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Tungsten trioxide nanoparticles decorated tungsten disulfide nanoheterojunction for highly sensitive ethanol gas sensing application

机译:三氧化钨纳米粒子修饰的二硫化钨纳米异质结在高灵敏度乙醇气体传感应用中的应用

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摘要

A tungsten disulfide/tungsten trioxide (WS2/WO3) based ethanol sensor was fabricated by layer-by-layer self-assembly technique, which was deposited on a substrate with interdigital electrodes. The composition, morphology and structure of the WS2/WO3 nanocomposite were analyzed using a variety of characterization methods, including XRD, SEM, TEM, XPS and EDS. The gas sensing properties of the WS2/WO3 sensor were studied in different concentrations of ethanol gas at 25 degrees C. The WS2/WO3 film sensor exhibited low detection limit, excellent selectivity, stable repeatability, outstanding stability, and rapid response-recovery features. The sensing mechanism of the sensor is attributed to the unique charge transfer properties of the WS2/WO3 heterojunction and the synergistic effects of the combination of WS2 and WO3. The WS2/WO3 sensor was significantly verified to be a qualified candidate for the detection of ppb-level ethanol gas.
机译:通过逐层自组装技术制备了基于二硫化钨/三氧化钨(WS2 / WO3)的乙醇传感器,该传感器沉积在具有叉指电极的基板上。使用多种表征方法,包括XRD,SEM,TEM,XPS和EDS对WS2 / WO3纳米复合材料的组成,形态和结构进行了分析。在25°C的不同浓度乙醇气体中研究了WS2 / WO3传感器的气敏特性。WS2/ WO3薄膜传感器具有低检测限,出色的选择性,稳定的重复性,出色的稳定性和快速的响应恢复功能。传感器的感应机制归因于WS2 / WO3异质结的独特电荷转移特性以及WS2和WO3的组合产生的协同效应。 WS2 / WO3传感器已被证实是检测ppb级乙醇气体的合格候选者。

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