Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7920574 | Journal of Physics and Chemistry of Solids | 2018 | 7 Pages |
Abstract
Quick and efficient detection of low concentrations of hydrogen remains a challenge because of the stability of hydrogen. A sensor based on reduced oxide graphene functionalized with Pt nanoparticles is successfully fabricated using a freeze-drying method followed by heat treatment. The structure and morphology of the Pt@rGO nanocomposites are well analyzed by X-ray diffraction, field emission scanning electron microscopy, transmission electron microscopy, Raman spectroscopy, and X-ray photoelectron spectroscopy. The as-prepared Pt@rGO nanocomposites show excellent hydrogen gas sensing properties at a low working temperature of 50â¯Â°C. The sensitivity toward 0.5% hydrogen is 8%. The response and recovery times of the sensor exposed to 0.5% hydrogen are 63 and 104â¯s, respectively. The gas-sensing mechanism of Pt@rGO sensor is also discussed.
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Authors
Xiaojing Lu, Xinjie Song, Cuiping Gu, Haibo Ren, Yufeng Sun, Jiarui Huang,