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Photoluminescence properties of Eu3+-doped ZnS nanocrystals prepared in a water/methanol solution
109
Citations
23
References
2002
Year
Materials ScienceAs-prepared Zns NanoparticlesPhotoluminescenceEu3+-doped Zns NanocrystalsNanoengineeringEngineeringNanomaterialsNanotechnologyWater/methanol SolutionInorganic MaterialColloidal NanocrystalsInorganic Precursors Zncl2Nanostructure SynthesisChemistryPhotoluminescence PropertiesLuminescence PropertyNanocrystalline MaterialFunctional Materials
Monodispersed ZnS and Eu3+-doped ZnS nanocrystals have been prepared through the co-precipitation reaction of inorganic precursors ZnCl2, EuCl3, and Na2S in a water/methanol binary solution. The mean particle sizes are about 3–5 nm. The structures of the as-prepared ZnS nanoparticles are cubic (zinc blende) as demonstrated by an x-ray powder diffraction. Photoluminescence studies showed a stable room temperature emission in the visible spectrum region for all the samples, with a broadening in the emission band and, in particular, a partially overlapped twin peak in the Eu3+-doped ZnS nanocrystals. The experimental results also indicated that Eu3+-doped ZnS nanocrystals, prepared by controlling synthetic conditions, were stable.
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