Publication | Closed Access
First-principles study of the electronic and optical properties of ZnO nanowires
26
Citations
28
References
2009
Year
Materials ScienceIi-vi SemiconductorOptical MaterialsEngineeringPhysicsNanomaterialsOptical PropertiesNanotechnologyNanoelectronicsApplied PhysicsFirst-principles StudyOxide ElectronicsBand GapSemiconductor NanostructuresNanostructure SynthesisZno Nanowire SizeNanophotonicsZno Nanowires
The geometric, energetic, electronic structures and optical properties of ZnO nanowires (NWs) with hexagonal cross sections are investigated by using the first-principles calculation of plane wave ultra-soft pseudo-potential technology based on the density functional theory (DFT). The calculated results reveal that the initial Zn-O double layers merge into single layers after structural relaxations, the band gap and binding energies decrease with the increase of the ZnO nanowire size. Those properties show great dimension and size dependence. It is also found that the dielectric functions of ZnO NWs have different peaks with respect to light polarization, and the peaks of ZnO NWs exhibit a significant blueshift in comparison with those of bulk ZnO. Our results gives some reference to the thorough understanding of optical properties of ZnO, and also enables more precise monitoring and controlling during the growth of ZnO materials to be possible.
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