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- W2285979304 abstract "Metal oxide/graphene nanocomposites are emerging as one of the promising candidate materials for developing high-performance gas sensors. Here, we demonstrate sensitive room-temperature H2S gas sensors based on SnO2 quantum wires that are anchored on reduced graphene oxide (rGO) nanosheets. Using a one-step colloidal synthesis strategy, the morphology-related quantum confinement of SnO2 can be well-controlled by tuning the reaction time, because of the steric hindrance effect of rGO. The as-synthesized SnO2 quantum wire/rGO nanocomposites are spin-coated onto ceramics substrates without further sintering to construct chemiresistive gas sensors. The optimal sensor response toward 50 ppm of H2S is 33 in 2 s, and it is fully reversible upon H2S release at 22 °C. In addition to the excellent gas adsorption of ultrathin SnO2 quantum wires, the superior sensing performance of SnO2 quantum wire/rGO nanocomposites can be attributed to the enhanced electron transport resulting from the favorable charge transfer of..." @default.
- W2285979304 created "2016-06-24" @default.
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- W2285979304 date "2016-02-02" @default.
- W2285979304 modified "2023-10-16" @default.
- W2285979304 title "Sensitive Room-Temperature H<sub>2</sub>S Gas Sensors Employing SnO<sub>2</sub> Quantum Wire/Reduced Graphene Oxide Nanocomposites" @default.
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- W2285979304 doi "https://doi.org/10.1021/acs.chemmater.5b04850" @default.
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