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Synthesis and acetone sensing properties of ZnFe2O4/rGO gas sensors

机译:ZnFe2O4 / rGO气体传感器的合成及丙酮传感性能

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摘要

Hollow spheres of pure ZnFe O and of composites of ZnFe O and reduced graphene oxide (rGO) with different rGO content were prepared via a simple solvothermal method followed by a high-temperature annealing process in an inert atmosphere. The X-ray diffraction analysis confirmed that the introduction of rGO had no effect on the spinel structure of ZnFe O . In addition, the results of field-emission scanning electron microscopy and (high-resolution) transmission electron microscopy indicated that the synthesized samples had the structure of hollow spheres distributed uniformly onto rGO nanosheets. The diameters of the spheres were determined as about 600–1000 nm. The gas sensing test revealed that the introduction of rGO improved the performance of the sensing of acetone to low concentration, and the ZnFe O /rGO composite gas sensor containing 0.5 wt % of rGO exhibited a high sensitivity in sensing test using 0.8–100 ppm acetone at 200 °C. The response of the 0.5 wt % ZnFe O /rGO sensor to 0.8 ppm acetone was 1.50, and its response to 10 ppm acetone was 8.18, which is around 2.6 times more pronounced than the response of pure ZnFe O (10 ppm, 3.20). Moreover, the sensor showed a wide linear range and good selectivity.
机译:通过简单的溶剂热法,然后在惰性气氛中进行高温退火工艺,制备了纯ZnFe O以及ZnFe O和还原型氧化石墨烯(rGO)含量不同的复合材料的空心球。 X射线衍射分析证实rGO的引入对ZnFeO的尖晶石结构没有影响。此外,场发射扫描电子显微镜和(高分辨率)透射电子显微镜的结果表明,所合成的样品具有均匀分布在rGO纳米片上的空心球结构。球体的直径确定为约600–1000 nm。气体感测测试表明,引入rGO可以提高低浓度丙酮的感测性能,含有0.5 wt%rGO的ZnFe O / rGO复合气体传感器在使用0.8–100 ppm丙酮的感测测试中表现出高灵敏度在200°C下。 0.5 wt%ZnFe O / rGO传感器对0.8 ppm丙酮的响应为1.50,其对10 ppm丙酮的响应为8.18,比纯ZnFe O(10 ppm,3.20)的响应高约2.6倍。而且,该传感器显示出宽的线性范围和良好的选择性。

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