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Ultrasensitive and low detection limit of acetone gas sensor based on ZnO/SnO2 thick films

机译:基于ZnO / SnO2厚膜的丙酮气体传感器超细敏感和低检测极限

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In this study, we synthesized ZnO/SnO _(2) hybrid sensing nanostructures by a sol–gel method. The structures, composition and morphologies of the synthesized products were thoroughly studied by X-ray diffraction (XRD), field-emission electron scanning microscopy (FESEM) and transmission electron microscopy (TEM). After the gas sensing test, we found that the sensing performance of the ZnO/SnO _(2) composite is improved obviously compared with that of single components ZnO and SnO _(2) . The response to 0.5 ppm acetone reaches 3.36, almost twice that of pure ZnO and SnO _(2) . Meanwhile, the detection limit can be reduced to the ppb level. The enhanced acetone sensing performance was mainly attributed to the formation of n–n heterojunctions and the synergistic effect of ZnO and SnO _(2) .
机译:在该研究中,通过溶胶 - 凝胶法合成ZnO / SnO _(2)杂化传感纳米结构。通过X射线衍射(XRD),现场 - 发射电子扫描显微镜(FESEM)和透射电子显微镜(TEM)彻底地研究了合成产物的结构,组合物和形态。在气体传感试验之后,我们发现,与单个组分ZnO和SnO _(2)相比,ZnO / SnO _(2)复合材料的感测性能显然得到了改进。对0.5ppm丙酮的反应达到3.36,几乎是纯ZnO和SnO _(2)的两倍。同时,检测极限可以减少到PPB水平。增强的丙酮感测性能主要归因于N-N异质结的形成和ZnO和SnO _(2)的协同作用。

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