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Room-Temperature High-Performance H2S Sensor Based on Porous CuO Nanosheets Prepared by Hydrothermal Method

机译:基于水热法制备的多孔CuO纳米片的室温高性能H2S传感器

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Porous CuO nanosheets were prepared on alumina tubes using a facile hydrothermal method, and their morphology, microstructure, and gas-sensing properties were investigated. The monoclinic CuO nanosheets had an average thickness of 62.5 nm and were embedded with numerous holes with diameters ranging from 5 to 17 nm. The porous CuO nanosheets were used to fabricate gas sensors to detect hydrogen sulfide (H2S) operating at room temperature. The sensor showed a good response sensitivity of 1.25 with respond/recovery times of 234 and 76 s, respectively, when tested with the H2S concentrations as low as 10 ppb. It also showed a remarkably high selectivity to the H2S, but only minor responses to other gases such as SO2 NO, NO2, H-2, CO, and C2H5OH. The working principle of the porous CuO nanosheet based sensor to detect the H2S was identified to be the phase transition from semiconducting CuO to a metallic conducting CuS.
机译:采用简便的水热法在氧化铝管上制备了多孔CuO纳米片,并对其形态,微观结构和气敏性能进行了研究。单斜晶CuO纳米片的平均厚度为62.5nm,并嵌入有许多直径为5至17nm的孔。多孔CuO纳米片用于制造气体传感器,以检测在室温下运行的硫化氢(H2S)。当使用低至10 ppb的H2S浓度进行测试时,该传感器显示出1.25的良好响应灵敏度,响应/恢复时间分别为234和76 s。它还显示出对H2S的极高选择性,但对其他气体(如SO2 NO,NO2,H-2,CO和C2H5OH)的反应却很小。确定基于多孔CuO纳米片的H2S传感器的工作原理是从半导体CuO到金属导电CuS的相变。

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