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Hydrothermal synthesis of Y(OH)3, Y(OH)3:Eu3+ nanotubes and the photoluminescence of Y(OH)3:Eu3+,Y2O3:Eu3+
Authors:WU Yanli SUN Weili  ZHOU Xuezhen  JIAO Xiaoyan  DING Jiawen  LI Yongxiu
Affiliation:aResearch Centre for Rare Earths & Micro/nano Functinal Materials, Nanchang University, Nanchang 330047, China;bJiangxi Science and Technology Normal University, Nanchang 330013, China
Abstract:The phase and morphology transformation during the hydrothermal treating process of Y2O3 was evaluated with X-ray difference (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), particle size and specific surface area determination. The results showed that the cubic Y2O3 did not transfer into hexagonal Y(OH)3 in pure water. Therefore, pure hexagonal Y(OH)3 with nanotube and microrod morphologies were obtained by hydrothermal treating Y2O3 at 150 °C for 12 h in 15 ml of 2 mol/L NaOH solution with and without PVA or PEG. It was suggested that the characteristic preferential growth of Y(OH)3 was attributed to the structure anisotropy of hexahedron Y(OH)3. The addition of PVA or PEG could promote the forming process of nanotubes by selective adsorption on different crystal planes, which altered the growth rate along different directions and resulted in the diffusion limit of constructing ions in the center top of rods. Finally, Y(OH)3:Eu and Y2O3:Eu nanotubes were also synthesized by using this method, and their photoluminescence properties were evaluated.
Keywords:hydrothermal synthesis  Y(OH)3  Y(OH)3:Eu  Y2O3:Eu  nanotube  rare earths
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