Abstract
AbstractIn this work, CuO-loaded tetragonal SnO2 nanoparticles (CuO/SnO2 NPs) were synthesized using precipitation/impregnation methods with varying Cu contents of 0–25 wt% and characterized for H2S detection. The material phase, morphology, chemical composition, and specific surface area of NPs were evaluated using X-ray diffraction, transmission electron microscopy, scanning electron microscopy, energy-dispersive X-ray spectroscopy, X-ray photoelectron spectroscopy, and Brunauer–Emmett–Teller analysis. From gas-sensing data, the H2S responses of SnO2 NPs were greatly enhanced by CuO loading particularly at the optimal Cu content of 20 wt%. The 20 wt% CuO/SnO2 sensor showed an excellent response of 1.36 × 105 toward 10 ppm H2S and high H2S selectivity against H2, SO2, CH4, and C2H2 at a low optimum working temperature of 200 °C. In addition, the sensor provided fast response and a low detection limit of less than 0.15 ppm. The CuO–SnO2 sensor could therefore be a potential candidate for H2S detection in environmental applications.
Funder
National Research Council of Thailand
Faculty of Science, Maejo University
Publisher
Springer Science and Business Media LLC
Subject
Condensed Matter Physics,General Materials Science
Reference31 articles.
1. Kim H, Jin C, Park S, Kim S, Lee C (2012) H2S gas sensing properties of bare and Pd-functionalized CuO nanorods. Sens Actuators B 161:594–599
2. Guo W, Liu T, Zhang H, Sun R, Chen Y, Zeng W, Wang Z (2012) Gas-sensing performance enhancement in ZnO nanostructures by hierarchical morphology. sens actuators b 166–167:492–499
3. Sun R, Wang Z, Saito M, Shibata N, Ikuhara Y (2015) Atomistic mechanisms of nonstoichiometry-induced twin boundary structural transformation in titanium dioxide. Nat Commun 6:1–7
4. Wang J, Zeng W, Wang Z (2016) Assembly of 2D nanosheets into 3D flower-like NiO: synthesis and the influence of petal thickness on gas-sensing properties. Ceram Int 42:4567–4573
5. Guo W, Fu M, Zhai C, Wang Z (2014) Hydrothermal synthesis and gas-sensing properties of ultrathin hexagonal ZnO nanosheets. Ceram Int 40:2295–2298
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