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Sensitivity and selectivity of metal oxides based sensor towards detection of formaldehyde

机译:基于金属氧化物的传感器对甲醛检测的灵敏度和选择性

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This paper presents the fabrication and characterization of metal oxides based sensor for detection of formaldehyde gas. Three different metal oxides are considered (i.e. TiO2, ZnO and SnO2) as transducer for the optimum sensitivity and selectivity detection. The metal oxides are deposited on the top on aluminum/glass substrate using sol-gel technique. Comparison performance has been made and found that SnO2 gives better sensitivity detection of formaldehyde molecule as compared with TiO2 and ZnO. At this stage, the test validation is done by dipping the electrode in 100 ppm formaldehyde liquid solution. Further, we show that SnO2 provides better selectivity toward the detection of formaldehyde and compared to acetone, ethanol, formaldehyde, isopropanol and methanol. Lastly, we demonstrate that, our sensor capable to detect down to 0.010 ppm of formaldehyde liquid. This excellent capability is achieved due to good uniformity and high surface-to-volume (approximately 70 nm) of SnO2 surface morphology characterized by using AFM.
机译:本文介绍了用于检测甲醛气体的基于金属氧化物的传感器的制造和表征。考虑使用三种不同的金属氧化物(即TiO2,ZnO和SnO2)作为传感器,以实现最佳的灵敏度和选择性检测。使用溶胶-凝胶技术将金属氧化物沉积在铝/玻璃基板的顶部。进行了比较性能,发现与TiO2和ZnO相比,SnO2可以更好地检测甲醛分子。在此阶段,通过将电极浸入100 ppm甲醛液体溶液中来完成测试验证。此外,我们显示,SnO2与甲醛,乙醇,甲醛,异丙醇和甲醇相比,对甲醛的检测具有更好的选择性。最后,我们证明了我们的传感器能​​够检测低至0.010 ppm的甲醛液体。通过使用AFM表征的SnO2表面形态具有良好的均一性和较高的体积比(约70 nm),可以实现这种出色的功能。

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