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Room temperature impedance spectroscopy-based sensing of formaldehyde with porous TiO_2 under UV illumination

机译:基于室温阻抗光谱的紫外光下多孔TiO_2对甲醛的感测

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摘要

The room temperature sensing of formaldehyde with macroporous TiO_2 based semiconductor-type sensor in the presence of humidity and UV irradiation was investigated using impedance spectroscopy. The normalized change in impedance in the presence of the formaldehyde was used to calculate the sensor response. A linear increase in sensor response to concentrations of formaldehyde in the range from 10 ppm to 50ppm was observed. Significant enhancement of the sensor response was observed in the presence of both UV illumination and low relative humidity (~6%). It is proposed that the role of UV illumination was to generate hydroxyl groups from the adsorbed water on the titania, and these active hydroxyl groups reacted with formaldehyde to enhance the sensor response. The a.c. impedance-type signals with formaldehyde were more stable than the conventional multimeter-based d.c. resistance changes. A possible explanation for the more stable response under a.c. conditions is that the potential barrier due to the build-up of the dissociated protons from water adsorbed on the oxide surface is effectively suppressed under the a.c. condition.
机译:利用阻抗谱研究了在湿度和紫外线辐射存在下,利用大孔TiO_2基半导体型传感器对甲醛的室温感测。在甲醛存在下,阻抗的归一化变化用于计算传感器响应。观察到传感器对甲醛浓度在10 ppm至50ppm范围内的线性增加。在紫外线照射和低相对湿度(〜6%)的情况下,观察到传感器响应显着增强。有人提出紫外线照射的作用是从二氧化钛上的吸附水生成羟基,这些活性羟基与甲醛反应以增强传感器响应。交流甲醛的阻抗型信号比传统的基于万用表的直流电更加稳定。阻力变化。交流下更稳定响应的可能解释条件是在a.c下有效地抑制了由于吸附在氧化物表面上的水中离解质子的积累而引起的势垒。健康)状况。

著录项

  • 来源
    《Sensors and Actuators》 |2013年第8期|1-9|共9页
  • 作者单位

    School of Electronic Science and Technology, Institute for Sensing Technologies, Key Laboratory of Liaoning for Integrated Circuits Technology, Dalian University of Technology,Dalian 116024, China;

    School of Electronic Science and Technology, Institute for Sensing Technologies, Key Laboratory of Liaoning for Integrated Circuits Technology, Dalian University of Technology,Dalian 116024, China;

    Department of Chemistry, The Ohio State University, 120 W 18th Avenue, Columbus, OH 43210, United States;

    School of Electronic Science and Technology, Institute for Sensing Technologies, Key Laboratory of Liaoning for Integrated Circuits Technology, Dalian University of Technology,Dalian 116024, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Macroporous TiO_2; UV illumination; Formaldehyde; Gas sensors;

    机译:大孔TiO_2;紫外线照明甲醛;气体传感器;

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