Publication | Closed Access
Antimony Nanowires Self-Assembled from Sb Nanoparticles
45
Citations
30
References
2004
Year
Sb NanowiresEngineeringMetallic NanomaterialsNanostructure SynthesisNanophotonicsPlasmonic MaterialMaterials SciencePhysicsNanotechnologyPhotonic MaterialsAntimony NanowiresNanophysicsPlasmonicsElectronic MaterialsNanomaterialsApplied PhysicsNanowire DiameterNanofabricationThin Antimony Nanowires
For the first time, we introduced a simple method of synthesizing segregated thin antimony nanowires based on the principle that nanoparticles can spontaneously self-assemble into crystalline nanowires (∼20 nm) in the absence of any rigid templates at room temperature. By collecting electron energy loss spectra from individual Sb nanowires with different diameters, we investigated the effect of nanowire diameter on plasmon excitations in Sb nanowires. As the diameter of Sb nanowire decreases, we find that the peak energy of surface plasmon shifts toward the lower energy.
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