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Reactive-Template Fabrication of Porous SnO2 Nanotubes and Their Remarkable Gas-Sensing Performance

机译:SnO2多孔纳米管的反应模板制备及其显着的气体传感性能

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A facile reactive-template strategy has been developed to fabricate porous SnO2 nanotubes using MnO2 nanorods as the sacrificial template. The formation of nanotubes is based on the redox reaction mechanism, which requires np post-treatment of the MnO2 templates. The morphological and structural characteristics of the samples have been systematically characterized by X-ray powder diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), thermal-gravimetric (TG), and N2 adsorption—desorption techniques. A gas-sensor device was constructed using as-prepared SnO2 nanotubes and was tested for its ability to detect ethanol and some other compounds. Because of the porous structure and relative large specific surface area, the SnO2 nanotube sensor manifests remarkably improved sensing performance, including fast response recovery, high sensitivity, and excellent repeatability, suggesting the promising application of the SnO2 nanotube materials.
机译:已经开发了一种简便的反应模板策略,以使用MnO2纳米棒作为牺牲模板来制造多孔SnO2纳米管。纳米管的形成基于氧化还原反应机理,这需要对MnO2模板进行np后处理。通过X射线粉末衍射(XRD),扫描电子显微镜(SEM),透射电子显微镜(TEM),热重(TG)和N2吸附-脱附技术对样品的形态和结构特征进行了系统表征。使用已制备的SnO2纳米管构造了一种气体传感器设备,并测试了其检测乙醇和某些其他化合物的能力。由于具有多孔结构和相对较大的比表面积,SnO2纳米管传感器的传感性能显着提高,包括快速响应恢复,高灵敏度和出色的重复性,这表明SnO2纳米管材料的应用前景广阔。

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