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Mechanism Study of ZnO Nanorod-Bundle Sensors for H2S Gas Sensing

作者:Jae Hyun Kim, Kijung Yong · 发表于:The Journal of Physical Chemistry C · 年份:2011 · DOI:10.1021/jp110129f · 被引用次数:301 · 研究领域:Gas Sensing Nanomaterials and Sensors、ZnO doping and properties、Transition Metal Oxide Nanomaterials

This work reports the H 2 S gas-sensing properties of ZnO nanorod bundles and an investigation of their gas sensing mechanism. A one-dimensional ZnO nanostructure was synthesized using the hydrothermal method; scanning electron microscopy (SEM); and X-ray diffraction (XRD) spectra confirmed that the structures were crystalline ZnO of hexagonal structure. A furnace-type gas sensing system was used to characterize the nanorod bundles’ sensing properties in air containing dilute H 2 S gas (50 ppm) at sensing temperatures T s ≤ 500 °C. The response of ZnO nanorod-bundle sensors to H 2 S gas increased with T s; this trend may be due to chemical reaction of nanorods with gas molecules. X-ray photoelectron spectroscopy results indicated that the sensing mechanism of the ZnO nanorod-bundle sensor was explained by both the well-known surface reaction between H 2 S and adsorbed oxygen on ZnO, and the formation of zinc−sulfur bonding in ZnO nanorods, which becomes a dominant sensing mechanism at high T s above 300 °C.