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Cerium doped MgFe2O4 nanocomposites: highly sensitive and fast response-recoverable acetone gas sensor

机译:铈掺杂的MgFe2O4纳米复合材料:高灵敏性和快速响应可回收的丙酮气体传感器

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摘要

We report a facile synthesis of Cerium doped MgFe2O4 nanocomposite ferrite and its usability as gas-sensor via simple and robust synthesis approach of glycine-combustion-process. The route utilizes metal nitrates (Ce, Mg, Fe -nitrates) and glycine, in aqueous solution. The involved sol-gel concept was explained on the basis of zwitterion characteristic of glycine. The analysis of the developed ferrite was done in two different ways – i) effect of Ce-doping concentration, and ii) effect of sintering temperature. With the ferrite system MgFe2-xCexO4, the doping concentration of Ce was varied from 0.04 to 0.12 with the step x = 0.04, and sintering was done at two different temperatures i.e. 973K and 1173K. As-produced composite system was examined for their gas response towards reducing gases such as LPG, ethanol, acetone and ammonia. The material displayed excellent gas sensing properties towards acetone for wide operating temperature range of 575–675 K. The XRD analysis revealed nanocrystallinity with crystallite size in the range of 28–34 nm. Microstructural analysis confirmed the porous morphology due to auto-ignition during the combustion reaction. The present investigations confirm the produced MgFe2-xCexO4 is a promising candidate for fabricating high performance acetone sensor.
机译:我们报告了通过简单而可靠的甘氨酸燃烧过程合成方法,容易地合成铈掺杂MgFe2O4纳米复合铁氧体及其作为气体传感器的可用性。该路线利用水溶液中的金属硝酸盐(Ce,Mg,Fe硝酸盐)和甘氨酸。基于甘氨酸的两性离子特性解释了涉及的溶胶-凝胶概念。对已形成的铁氧体的分析有两种不同的方式:i)Ce掺杂浓度的影响,ii)烧结温度的影响。对于铁氧体系统MgFe2-xCexO4,Ce的掺杂浓度在0.04到0.12之间变化,步长x = 0.04,并且在两个不同的温度(即973K和1173K)下进行烧结。检查了所生产的复合系统对还原气体(例如LPG,乙醇,丙酮和氨气)的气体响应。该材料在575–675 K的宽工作温度范围内显示出对丙酮的出色的气敏特性。XRD分析显示纳米结晶度,微晶尺寸在28–34 nm范围内。微观结构分析证实了燃烧反应过程中由于自燃引起的多孔形态。目前的研究证实,所生产的MgFe2-xCexO4是制造高性能丙酮传感器的有希望的候选者。

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