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The Synthesis of the Pomegranate-Shaped α-Fe2O3 Using an In Situ Corrosion Method of Scorodite and Its Gas-Sensitive Property

机译:臭葱石原位腐蚀法合成石榴形α-Fe2O3及其气敏性能

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摘要

The release of hazardous gas increases with the development of industry. The research of gas-sensitive materials has attracted attention. Nanoscale iron oxide (α-Fe2O3) is one of the research hotspots of gas-sensitive materials because it is a cheap, non-toxic semiconductor material. In this study, pomegranate-shaped α-Fe2O3 was synthesized using an in situ corrosion method of scorodite. Spherical-shaped α-Fe2O3 nanoparticles were included in the octahedral shells. The forming process of the structure was analyzed by a variety of measurements. The shell was formed first through the deposition of Fe(OH)3, which was produced by hydrolyzing scorodite. Then, the corrosion was continued and Fe(OH)3 precipitation was produced below the shell. The particles aggregated and formed spheres. The pomegranate-shaped α-Fe2O3 was formed when the scorodite was hydrolyzed completely. The gas-sensing properties of α-Fe2O3 were investigated. The results showed that pomegranate-shaped α-Fe2O3 was responsive to a variety of gases, especially xylene. The value of Ra/Rg was 67.29 at 340 °C when the concentration of xylene was 1000 ppm. This indicated the pomegranate-shaped α-Fe2O3 has potential application as a xylene gas sensor.
机译:有害气体的释放随着工业的发展而增加。气体敏感材料的研究引起了人们的关注。纳米氧化铁(α-Fe2O3)是一种气敏材料的研究热点之一,因为它是一种廉价,无毒的半导体材料。在本研究中,使用臭葱石的原位腐蚀方法合成了石榴形的α-Fe2O3。球形的α-Fe2O3纳米颗粒包含在八面体壳中。通过各种测量分析了结构的形成过程。首先通过沉积Fe(OH)3形成壳,Fe(OH)3是由臭葱石水解产生的。然后,腐蚀继续,并且在壳下方产生Fe(OH)3沉淀。颗粒聚集并形成球体。当臭葱石完全水解时,形成石榴形的α-Fe2O3。研究了α-Fe2O3的气敏特性。结果表明,石榴形的α-Fe2O3对多种气体,特别是二甲苯有反应。当二甲苯的浓度为1000ppm时,在340℃下的Ra / Rg值为67.29。这表明石榴形的α-Fe 2 O 3 具有潜在的应用前景。

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