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Graphene Quantum Dots-Driven Multiform Morphologiesof β-NaYF4:Gd3+/Tb3+ Phosphors: The Underlying Mechanism and Their Optical Properties

机译:石墨烯量子点驱动的多种形态-NaYF4:Gd3 + / Tb3 +荧光粉的基本机理及其光学性质

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摘要

Dimension and shape tunable architectures of inorganic crystals are of extreme interest because of morphology-dependent modulation of the properties of the materials. Herein, for the first time, we present a novel impurity-driven strategy where we studied the influence of in situ incorporation of graphene quantum dots (GQDs) on the growth of β-NaYF4:Gd3+/Tb3+ phosphor crystals via a hydrothermal route. The GQDs function as a nucleation site and by changing the concentration of GQDs, the morphology of β-NaYF4:Gd3+/Tb3+ phosphors was changed from rod to flowerlike structure to disklike structure, without phase transformation. The influence of size and functionalization of GQDs on the size and shape of phosphor crystals were also systematically studied and discussed. Plausible mechanisms of formation of multiform morphologies are proposed based on the heterogeneous nucleation and growth. Most interestingly, the experimental results indicate that the photoluminescence properties of β-NaYF4:Gd3+/Tb3+ phosphor crystals are strongly dependenton the crystallite size and morphology. This study would be suggestivefor the precisely controlled growth of inorganic crystals; consequently,it will open new avenues and thus may possess potential applicationsin the field of materials and biological sciences.
机译:无机晶体的尺寸和形状可调结构受到人们的极大关注,这是由于材料特性的形态依赖调制。在此,我们首次提出了一种新的杂质驱动策略,该策略研究了石墨烯量子点(GQDs)原位掺入对β-NaYF4:Gd 3 + /的生长的影响。 Tb 3 + 荧光粉晶体通过水热途径。 GQDs充当成核位点,并且通过改变GQDs的浓度,使β-NaYF4:Gd 3 + / Tb 3 + 荧光粉的形态从棒状变为花状。结构为盘状结构,无需相变。还系统地研究和讨论了GQD的尺寸和功能化对磷光体晶体的尺寸和形状的影响。在异质形核和生长的基础上,提出了形成多种形态的合理机制。最有趣的是,实验结果表明,β-NaYF4:Gd 3 + / Tb 3 + 荧光粉的光致发光特性具有很强的依赖性。在微晶尺寸和形态上。这项研究将具有启发性用于精确控制无机晶体的生长;所以,它将开辟新的途径,因此可能拥有潜在的应用在材料和生物科学领域。

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