Electronic Materials Research Laboratory (EMRL), Key Laboratory of Education Ministry, International Center for Dielectric Research, Xi'an Jiaotong University, Xi'an 710049, China.
Dalton Trans. 2014 Apr 14;43(14):5453-61. doi: 10.1039/c3dt53087f.
Multi-layered hollow LiYF4:Eu(3+) micro-octahedrons, with about 400 nm of single-layer thickness and 300 nm of interlayer space, have been synthesized via a facile hydrothermal route in the presence of surfactant ethylenediamine tetraacetic acid (EDTA). The mechanisms of the morphology evolution of the LiYF4:Eu micro-octahedrons are investigated in detail. Time-dependent experiments indicate that the growth of the micro-octahedrons undergoes four different stages including the aggregation growth of the primary YF3 particle, the transformation of the substance from the orthorhombic-phase YF3 to the tetragonal-phase LiYF4 by the Kirkendall effect with the inward diffusion of quasi-steady state LiF species, adsorption and in situ crystallization, and local Ostwald ripening. The Ostwald ripening process is terminated by the organic adsorption of interlaminar leading to a hollow structure with multilevel interiors. The LiYF4:Eu micro-octahedrons are annealed under the designed temperatures, which leads to the collapse of octahedral structures indicating the role of EDTA on building the octahedron. The spectral measurements show that the calcination approach has a stronger effect on the luminescence tuning of the LiYF4:Eu micro-octahedrons due to the modification of the crystal phase, structure and size. The present study is of great importance in the preparation of rare-earth ion doped LiYF4 hollow materials as well as in applications as building blocks for functional devices.
具有约 400nm 单层厚度和 300nm 层间距的多层中空 LiYF4:Eu(3+) 微八面体,通过在表面活性剂乙二胺四乙酸(EDTA)存在下的简单水热途径合成。详细研究了 LiYF4:Eu 微八面体形态演变的机制。时变实验表明,微八面体的生长经历了四个不同的阶段,包括初级 YF3 颗粒的聚集生长、物质通过 Kirkendall 效应从正交相 YF3 向四方相 LiYF4 的转化,准稳态 LiF 物质的内向扩散、吸附和原位结晶以及局部 Ostwald 熟化。层间的有机吸附终止了 Ostwald 熟化过程,导致具有多层次内部的中空结构。LiYF4:Eu 微八面体在设计温度下退火,导致八面体结构坍塌,表明 EDTA 在构建八面体方面的作用。光谱测量表明,由于晶体相、结构和尺寸的改变,煅烧方法对 LiYF4:Eu 微八面体的发光调谐具有更强的影响。本研究对于制备稀土离子掺杂 LiYF4 中空材料以及作为功能器件构建块的应用具有重要意义。