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首页> 外文期刊>Journal of nanoscience and nanotechnology >Glycothermal Synthesis of VO2(B) Nanoparticles for Gas Sensing Application
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Glycothermal Synthesis of VO2(B) Nanoparticles for Gas Sensing Application

机译:VO2(B)纳米粒子的糖热量合成气体传感施用

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摘要

This study represents a facile but efficient glycothermal method for synthesis of vanadium dioxide, VO2(B) nanoparticles with various geometries from spheres to rods, flakes or their agglomeration structures, by controlling reaction conditions (e.g., vanadium resources, reducing agents and surfactants). The as-prepared VO2(B) nanoparticles were characterized in microstructure and composition, and also examined in terms of gas sensing performance. It was found that the VO2(B) nanoparticles exhibit a good sensitivity towards alcohols (ethanol, isopropanol, and butanol) and acetone at the optimised operating temperature of 300 degrees C. The gas sensing performance was further compared with other vanadium oxides investigated previously, such as V2O5, Na1.08V3O8. The plausible gas sensing mechanism of the as-prepared nanoparticles was discussed in detail. This study would expand the family of vanadium oxides that can be made as potential sensors for applications in detecting environmental safety and human health.
机译:该研究代表了用于合成二氧化钒,VO2(B)纳米颗粒的糖热热量方法,通过控制反应条件(例如,钒资源,还原剂和表面活性剂)来合成来自球体的各种几何形状的各种几何形状。制备的VO2(B)纳米颗粒在微观结构和组合物中表征,并在气体传感性能方面进行检查。发现VO2(B)纳米颗粒对醇(乙醇,异丙醇和丁醇)和丙酮在300摄氏度的优化工作温度下表现出良好的敏感性。与先前研究的其他钒氧化物相比,气体感测性能进一步相比,如V2O5,NA1.08V3O8。详细讨论了AS制备的纳米颗粒的合理气体传感机理。本研究将扩大可作为潜在传感器制成的钒氧化物系列,用于检测环境安全和人类健康的应用。

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