材料科学
发光
荧光粉
热液循环
纳米技术
水热合成
钇
溶解
Crystal(编程语言)
化学工程
光电子学
计算机科学
氧化物
工程类
冶金
程序设计语言
作者
Dunpu Zhang,Mingye Ding,Bang Dong,Zhen Yue,Qing Chang
标识
DOI:10.1016/j.ceramint.2019.07.001
摘要
Currently, a precise architecture manipulation of mesocrystals with controllable morphology and tunable size remains a huge challenge and is highly desired for their practical applications. Here, we develop a facile one-pot strategy for the direct synthesis of uniform and monodispersed β-NaYF4 mesocrystals with cantaloupe-like shape and adjustable dimension. To investigate the formative mechanism of β-NaYF4 superstructures in depth, the evolution processes for the crystal structure and morphology of β-NaYF4 mesocrystals under different experimental conditions have been systematically researched and discussed. A series of experimental results demonstrate that intrinsic crystallographic structure and external factors govern the crystal growth process of hexagonal-phased NaYF4. The processes of dissolution-renucleation, anisotropic growth, subsequent oriented attachment and self-assembly are believed to be responsible for the formation of cantaloupe-shaped β-NaYF4 mesocrystals. Moreover, the luminescence properties of β-NaYF4:RE3+ (RE = Ce, Tb, Eu, Yb, Tm and Ho) mesocrystals are also studied and efficient multicolor upconverting and downshifting emissions can be easily realized. As a proof of concept experiment, the as-synthesized β-NaYF4:RE3+ phosphors are employed to demonstrate their promising applications in anti-counterfeiting and fingerprint identification.
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