Publication | Closed Access
The synthesis and selective gas sensing characteristics of SnO<sub>2</sub><i>/</i>α-Fe<sub>2</sub>O<sub>3</sub>hierarchical nanostructures
101
Citations
43
References
2008
Year
EngineeringHierarchical NanostructuresGas SensorChemistryGood SelectivityChemical EngineeringNanosensorHybrid MaterialsChemical SensorMaterials ScienceOxide HeterostructuresNanotechnologyOxide ElectronicsNanomanufacturingGas DetectionElectrochemical Gas SensorFunctional NanomaterialsNanomaterialsHeterojunction BarrierNanofabricationFunctional MaterialsSelective GasNanostructures
SnO(2)/α-Fe(2)O(3) hierarchical nanostructures, in which the SnO(2) nanorods grow on the side surface of α-Fe(2)O(3) nanorods as multiple rows, were synthesized via a three-step process. The diameters and lengths of the SnO(2) nanorods are 6-15 nm and about 120 nm. The growth direction of SnO(2) nanorods is [001], significantly affected by that of α-Fe(2)O(3) nanorods. The hetero-nanostructures exhibit very good selectivity to ethanol. The sensing characteristics are related to the special heterojunction structures, confirmed by high-resolution transmission electron microscopy observation. Therefore, a heterojunction barrier controlled gas sensing mechanism is realized. Our results demonstrate that the hetero-nanostructures are promising materials for fabricating sensors and other complex devices.
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