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Synthesizing tungsten oxide nanowires by a thermal evaporation method
59
Citations
18
References
2007
Year
Materials ScienceCrystal StructureEngineeringNanoengineeringNanoporous MaterialNanomaterialsNanotechnologyMaterials FabricationNanomanufacturingApplied PhysicsOxide ElectronicsTungsten Trioxide PowderTungsten Oxide NanowiresNanostructure SynthesisMetallic NanomaterialsNanoscale ScienceW18o49 Nanowires
Tungsten oxide W18O49 nanowires with diameters of 10–20nm were synthesized with high yield by thermal evaporation in a tube furnace. By heating tungsten trioxide powder at 900°C in vacuum (5×10−3torr), W18O49 nanowires with diameters of 10–20nm and lengths up to micrometers were produced with high yield on the Au-coated Si substrates located in the low temperature zone (550–600°C) of the furnace. The morphology, composition, and crystal structure of the nanowires were characterized by various methods. The conditions and the mechanism of W18O49 nanowire growth are discussed.
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