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首页> 外文期刊>Materials science in semiconductor processing >Selective hydrogen sulfide (H2S) sensors based on molybdenum trioxide (MoO3) nanoparticle decorated reduced graphene oxide
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Selective hydrogen sulfide (H2S) sensors based on molybdenum trioxide (MoO3) nanoparticle decorated reduced graphene oxide

机译:基于三氧化钼(MoO3)纳米颗粒的选择性硫化氢(H2S)传感器修饰的还原氧化石墨烯

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This paper investigates a selective method of sensing hydrogen sulfide using molybdenum trioxide (MoO3) nanoparticle decorated graphene oxide (GO). Reduced graphene oxide was synthesized from natural graphite (NG) by the modified Hummer's method and decorated with the MoO3 nanoparticles. Sensors were fabricated by the spin coating of MoO3-decorated rGO between Pt electrodes on alumina substrate (Al2O3). In comparison with pristine rGO sensor, the MoO3-rGO chemiresistors have a clear response to hydrogen sulfide down to 50 ppm at 70 degrees C. Thermal characterization of the sensor is studied. Results show that the fabricated devices have the maximum gas response at about 160 degrees C. Selectivity tests indicated that these sensors have poor respond to interfering analytes such as ethanol, carbon monoxide and nitric oxide. Furthermore, the effect of MoO3 content and graphene oxide suspension concentration on the sensor response is investigated. Hereby it is shown that the sensor content of 3 wt% MoO3 and of 5 mg/ml of GO suspension concentration has the highest sensitivity. Decorated reduced graphene oxide chemiresistors offer advantages such as remarkable potential for mass production due to their ease of manufacturing, good performance, and significant selectivity. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文研究了一种使用三氧化钼(MoO3)纳米粒子修饰的氧化石墨烯(GO)感测硫化氢的选择性方法。通过改良的Hummer方法由天然石墨(NG)合成还原的氧化石墨烯,并用MoO3纳米粒子装饰。传感器是通过在氧化铝基板(Al2O3)上的Pt电极之间旋涂MoO3装饰的rGO制成的。与原始rGO传感器相比,MoO3-rGO化学电阻在70摄氏度下对硫化氢低至50 ppm具有明显的响应。研究了传感器的热特性。结果表明,所制造的设备在约160摄氏度下具有最大的气体响应。选择性测试表明,这些传感器对干扰分析物(如乙醇,一氧化碳和一氧化氮)的响应较差。此外,研究了MoO3含量和氧化石墨烯悬浮液浓度对传感器响应的影响。由此表明,3重量%的MoO 3和5mg / ml的GO悬浮液浓度的传感器含量具有最高的灵敏度。装饰性还原石墨烯氧化物化学阻滞剂具有以下优点:由于易于制造,良好的性能和显着的选择性,因此具有大规模生产的显着潜力。 (C)2015 Elsevier Ltd.保留所有权利。

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