We demonstrated an emulsion based wet chemical method for preparing Eu 3+ doped cubic NaYF 4 and hexagonal Na(Y 1.5 Na 0.5 )F 6 nanocrystals. Here, we report the control of the crystal phase as a function of the Y 3+ /F - ratio and pH of the solution. It was found that cubic NaYF 4 and hexagonal Na(Y 1.5 Na 0.5 )F 6 nanocrystals were prepared at 1:4 and 1:8 Y 3+ /F - ratios, respectively. The hexagonal Na(Y 1.5 Na 0.5 )F 6 and cubic NaYF 4 phases appeared in the pH range of 6−7 and 2−3, respectively, indicating that the pH of the solution also plays an important role in tuning the crystal structure. The mechanism related to crystal phase control is proposed and discussed. It was also found that the emission intensity of the peak at 614 nm ( 5 D 0 − 7 F 2 ) for Eu 3+ ions and decay time are sensitive to the crystal structure, which is again controlled by the Y 3+ /F - ratio and pH of the solution. Again, it is seen that the interlayered water molecules strongly influence the photoluminescence of Eu 3+ ions up to 300 °C, which was confirmed by XRD and TGA analysis.
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Ghosh et al. (2008) studied this question.
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