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首页> 外文期刊>Journal of Materials Science >Acetone and ethanol sensing characteristics of magnesium zinc ferrite nano-particulate chemi-resistive sensor
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Acetone and ethanol sensing characteristics of magnesium zinc ferrite nano-particulate chemi-resistive sensor

机译:镁锌铁氧体纳米颗粒化学电阻传感器的丙酮和乙醇传感特性

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摘要

In the present work, acetone and ethanol sensing characteristics of wet chemically prepared magnesium zinc ferrite (MZFO) nano-particles have been investigated. X-ray diffraction and electron microscopy studies are carried out to know the phase formation behaviour and microstructure evolution of the synthesized particles. The gas sensing characteristics (response %, response time, recovery time, etc.) are estimated by varying the operating temperature of the sensor and concentrations of the test vapours. It is observed that the nanocrystalline MZFO based sensor is more sensitive to acetone than ethanol. In addition, the sensor can detect even 10 ppm of acetone and ethanol vapours. The excellent repeatability of the sensing performances is verified by switching the sensor back and forth between air and test vapours.
机译:在目前的工作中,已经研究了湿化学制备的镁锌铁氧体(MZFO)纳米颗粒的丙酮和乙醇感测特性。进行了X射线衍射和电子显微镜研究,以了解合成颗粒的相形成行为和微观结构演变。通过改变传感器的工作温度和测试蒸汽的浓度来估算气体感应特性(响应%,响应时间,恢复时间等)。可以观察到,基于纳米晶MZFO的传感器比乙醇对丙酮更敏感。此外,该传感器甚至可以检测到10 ppm的丙酮和乙醇蒸气。通过在空气和测试蒸汽之间来回切换传感器,可以验证传感性能的出色可重复性。

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