Formation of Hollow Upconversion Rare-Earth Fluoride Nanospheres: Nanoscale Kirkendall Effect During Ion Exchange

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In this work, we report a facile solution-phase synthesis of hollow cubic phase alpha-NaYF(4) nanoparticles by a controlled ion exchange process from Cubic phase Y(2)O(3) nanospheres. We demonstrate that hollow nanoparticles with controlled size are formed owing to the nanoscale Kirkendall effect. The formation mechanism was studied with the XRD, STEM, and EDS line scanning characterization. The crystal structure similarity between the parent and the final product is essential for framework and morphology preservation. Although the sphere particles are polycrystalline and composed of the nanocrystals, the cubic structure of alpha-NaYF(4) nanocrystals displays a noticeable structure similarity with Y(2)O(3), which we believe facilitates Ion exchange between the primary nanocrystals and preservation of the secondary sphere morphology. The multicolor Upconversion (UC) fluorescence (PL) was successfully realized in the Yb(3+)/Er(3+)(Tm(3+)) codoped alpha-NaYF(4) hollow nanospheres by excitation in the near-infrared (NIR) region. The various UC emission ratios of the samples were investigated as a function of hydrothermal reaction time to research the UC properties of the products and to further demonstrate the thermodynamic driving solution ion-exchange process.
Publisher
AMER CHEMICAL SOC
Issue Date
2009-11
Language
English
Article Type
Article
Keywords

CATION-EXCHANGE; NAYF4 NANOCRYSTALS; SOLID-STATE; EMISSION; LUMINESCENCE; ER3+; NANOPARTICLES; FLUORESCENCE; EXCITATION; NANOTUBES

Citation

CHEMISTRY OF MATERIALS, v.21, no.21, pp.5237 - 5243

ISSN
0897-4756
DOI
10.1021/cm902231s
URI
http://hdl.handle.net/10203/93806
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