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Raman scattering and band-gap variations of Al-doped ZnO nanoparticles synthesized by a chemical colloid process
69
Citations
16
References
2009
Year
EngineeringColloidal NanocrystalsChemistryLuminescence PropertyChemical Colloid ProcessBand GapChemical EngineeringNanostructure SynthesisMaterials SciencePhotoluminescenceNanotechnologyOxide ElectronicsAzo NanoparticlesNanocrystalline MaterialAl-doped Zno NanoparticlesBand-gap VariationsNanomaterialsApplied PhysicsRaman Shift
This study synthesizes Al-doped ZnO (AZO) nanoparticles using a chemical colloid process. Raman scattering analysis shows that Al doping increases the lattice defects and induces Raman vibration modes of 651 cm−1. The Raman shift of the active mode E2 (high) of AZO nanoparticles shows the presence and increase in the stress in nanoparticles when the Al dopant concentration increases. Room-temperature photoluminescence (RT-PL) spectra of synthesized AZO nanoparticles exhibit strong UV emissions near the band edges. The RT-PL peak shifts to a higher photon energy region as the Al concentration increases, indicating a broadening of the band gap.
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