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Enhancing Upconversion Luminescence Efficiency viaChiral β-NaYF4:Er3+/Yb3+ Microcrystals Based on Mesoscale Regulation

机译:通过提高上转换发光效率基于中尺度调控的手性β-NaYF4:Er3 + / Yb3 +微晶

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摘要

Chirality, universal characteristics of nature, introduces asymmetry in synthetic materials. Revealing the microscopic asymmetry of macroscopically symmetric materials is the key to control the growth of chiral materials and give full play to their application potential. Materials for photon upconversion (UC) are of great interest for many applications owing to their anti-Stoke luminescence process, especially for chiral UC materials. For the preparation of UC materials, a tiny change in reaction parameters will lead to variations in morphology, phase components, and fluorescence intensity, as well as its chirality. Because of the strict reaction conditions for the formation of chiral UC materials, there are no reports of the successful synthesis of chiral UC materials. Therefore, a facile method for the controllable synthesis of chiral UC materials is highly desired. Herein, chiral-assembled hexagonal prisms of β-NaYF4:Er3+/Yb3+ microcrystals were synthesized to realize the smart manipulation of their morphology as well as a great improvement of the fluorescence efficiency. We proposed a three-stage doped β-NaYF4 crystal growth mechanism on mesoscale regulation, where the fluorescenceenhancement principle of chirality was revealed. The enhancement offluorescence efficiency of chiral UC materials endows their promisingapplication in luminescent displays.
机译:手性是自然界的普遍特征,在合成材料中引入了不对称性。揭示宏观对称材料的微观不对称是控制手性材料生长并充分发挥其应用潜力的关键。光子上转换(UC)的材料因其抗斯托克(Stoke)发光过程而在许多应用中引起了极大的兴趣,特别是对于手性UC材料。对于UC材料的制备,反应参数的微小变化将导致形态,相成分,荧光强度及其手性的变化。由于形成手性UC材料的严格反应条件,没有成功合成手性UC材料的报道。因此,非常需要用于可控制的手性UC材料的合成的简便方法。本文合成了β-NaYF4:Er 3 + / Yb 3 + 微晶的手性组装六边形棱镜,以实现对其形貌的智能操纵和极大的改进。荧光效率。我们提出了中尺度调控的三阶段掺杂β-NaYF4晶体生长机制,其中荧光揭示了手性的增强原理。增强手性UC材料的荧光效率赋予了他们希望在发光显示器中的应用。

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