Ghosh Pushpal, Patra Amitava
Department of Materials Science, Indian Association for the Cultivation of Science, Kolkata 700 032, India.
Langmuir. 2006 Jul 4;22(14):6321-7. doi: 10.1021/la0604883.
The sol-emulsion-gel method is used for the preparation of Eu3+ ion-doped and coated ZrO2 nanocrystals. Here, we report the role of surface coating, dopant concentration, and temperature of heating in the modification of their crystal structure and photoluminescence properties. It is found that the volume fraction of the tetragonal phase increases from 28.08 to 91.56% because of surface coating. This is a significant modification of the crystal phase in ZrO2 nanocrystals due to surface coating by Eu2O3. It is found that the photoluminescence properties are sensitive to the crystal structure, which is again controlled by surface coating, concentration, and heating temperature. It is found that the decay time (tau) of Eu-doped ZrO2 nanocrystals increases with increasing the concentration of dopant and with increasing the temperature of heating because of changes in their crystal phase. The emission intensity of the peak at 611-617 nm (5D0 --> 7F2) of the Eu3+ ion-activated ZrO2 nanocrystals (doped and coated) is also found to be sensitive to the nanoenvironment. The average decay times are 770 and 488 mus for 1100 degrees C-heated 1.0 mol % Eu2O3-doped and coated ZrO2 nanocrystals, respectively. Our analysis suggests that the site symmetry of the ions plays the most important role in the modifications of the radiative and nonradiative relaxation mechanisms as a result of the overall photoluminescence properties.
溶胶-乳液-凝胶法用于制备Eu3+离子掺杂和包覆的ZrO2纳米晶体。在此,我们报道了表面包覆、掺杂剂浓度和加热温度在改变其晶体结构和光致发光性能方面的作用。研究发现,由于表面包覆,四方相的体积分数从28.08%增加到91.56%。这是由于Eu2O3表面包覆导致ZrO2纳米晶体中晶相的显著改变。研究发现,光致发光性能对晶体结构敏感,而晶体结构又由表面包覆、浓度和加热温度控制。研究发现,由于晶相变化,Eu掺杂的ZrO2纳米晶体的衰减时间(tau)随着掺杂剂浓度的增加和加热温度的升高而增加。还发现,Eu3+离子激活的ZrO2纳米晶体(掺杂和包覆)在611-617nm(5D0→7F2)处的峰发射强度对纳米环境敏感。对于在1100℃加热的1.0mol% Eu2O3掺杂和包覆的ZrO2纳米晶体,平均衰减时间分别为770和488 μs。我们的分析表明,离子的位对称性在辐射和非辐射弛豫机制的改变中起着最重要的作用,这导致了整体光致发光性能。