4.6 Article

MoS2-NiO nanocomposite for H2S sensing at room temperature

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RSC ADVANCES
卷 13, 期 41, 页码 28564-28575

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ROYAL SOC CHEMISTRY
DOI: 10.1039/d3ra05241a

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In this study, a series of MoS2 and NiO nanocomposites were synthesized and used for detecting low concentrations of H2S gas. The MNO-10 gas sensor exhibited the highest response value, good selectivity, and long-term stability.
The layered 2-D materials, such as molybdenum disulfide (MoS2), are among the most promising candidates for detecting H2S gas at very low concentrations. Herein, we have designed a series of novel nanocomposites consisting of MoS2 and NiO. These materials were synthesized via a simple hydrothermal method. The microstructure and morphology of nanocomposites were studied using different characterization techniques, such as X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), high-resolution transmission electron microscopy (HRTEM), Brunauer-Emmett-Teller (BET) analysis, and X-ray photoelectron spectroscopy (XPS). These nanocomposites were used as gas sensors, and the highest response (6.3) towards 10 ppm H2S was detected by the MNO-10 gas sensor among all the tested sensors. The response value (R-g/R-a) was almost three times that of pure NiO (R-g/R-a = 2). Besides, the MNO-10 sensor exposed good selectivity, short response/recovery time (50/20 s), long-term stability (28 days), reproducibility (6 cycles), and a low detection limit (2 ppm) towards H2S gas at RT. The excellent performance of MNO-10 may be attributed to some features of MoS2, such as a layered structure, higher BET surface area, higher active sites, and a synergistic effect between MoS2 and NiO. This simple fabrication sensor throws a novel idea for detecting H2S gas.

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