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Hierarchical α-Fe2O3/NiO Composites with a Hollow Structure for a Gas Sensor

机译:空心结构的α-Fe2O3/ NiO多层结构气体传感器

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Hierarchical α-Fe2O3/NiO composites with a hollow nanostructure were synthesized by a facile hydrothermal method, The structures and morphologies of the composites were investigated by different kinds of techniques, including X-ray diffraction, field-emission electron scanning microscopy, transmission electron microscopy, and energy dispersive spectroscopy. Hierarchical α-Fe2O3/NiO composites were fabricated by growing the α-Fe2O3 nanorods on the surfaces of porous NiO nanosheets with a thickness of ~12 nm. The gas sensing properties of hierarchical α-Fe2O3/NiO composites toward toluene were investigated using a static system. The response of α-Fe2O3/NiO composites to 100 ppm toluene was ~18.68, which was 13.18 times higher than that of pure NiO at 300 °C. The enhanced response can be attributed to heterojunction. Meanwhile, the rapid response and recovery characteristics were observed because of the porous hollow structural characteristics and catalytic actions of α-Fe2O, and NiO.
机译:采用简便的水热法合成了具有空心纳米结构的分层α-Fe2O3/ NiO复合材料,并通过X射线衍射,场发射电子扫描显微镜,透射电子显微镜等多种技术研究了复合材料的结构和形貌。 ,和能量色散光谱。通过在多孔NiO纳米片的表面上以约12 nm的厚度生长α-Fe2O3纳米棒,制备出分层的α-Fe2O3/ NiO复合材料。使用静态系统研究了分层α-Fe2O3/ NiO复合材料对甲苯的气敏特性。 α-Fe2O3/ NiO复合材料对100 ppm甲苯的响应为〜18.68,是300°C时纯NiO响应的13.18倍。增强的响应可以归因于异质结。同时,由于α-Fe2O和NiO的多孔空心结构特征和催化作用,观察到了快速响应和恢复特性。

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