首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Boosting phonon-induced luminescence in red fluoride phosphors via Lcomposition-driven structural transformations
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Boosting phonon-induced luminescence in red fluoride phosphors via Lcomposition-driven structural transformations

机译:通过Lcomation驱动的结构变换提高了红氟化物磷光体中的敏感发光

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In this study, a series of (KxNa1-x)(2)SiF6: Mn4+ red phosphors with systematic composition variations of alkali metals was synthesized via a low-temperature full-solution approach. Driven by composition variations, a sequence of continuous structural phase transformations, i.e., from trigonal to mixed, and then to orthorhombic, and eventually to a cubic phase, is evidently observed in this series of red phosphors. More excitingly, phonon-induced luminescence is promoted as the most efficient and dominant light emission mechanism in a cubic phosphor of K2SiF6: Mn4+ at room temperature. As a result, the overall emission intensity of cubic K2SiF6: Mn4+ is increased by more than fivefold with respect to that of trigonal Na2SiF6: Mn4+. High-resolution X-ray diffraction, electron paramagnetic resonance and micro-Raman scattering experiments consistently reveal a decisive relationship between fluorescence properties and crystalline structures.
机译:在该研究中,通过低温全溶液方法合成了一系列(KXNA1-X)(2)SIF6:MN4 +红色磷光体,具有系统组成的碱金属的变化。 通过组成变体驱动,在这一系列的红色磷光体中显然观察到一系列连续结构相转化,即从三角形,然后从混合,并最终在立方相中。 更激动地,敏感的发光在室温下K2SIF6:Mn4 +的立方荧光体中最有效和显性的发光机制促进。 结果,相对于Trigonal Na2sif6:Mn4 +的总,立方K2SIF6:Mn4 +的总发射强度增加了超过五倍。 高分辨率X射线衍射,电子顺磁共振和微拉曼散射实验一致地揭示荧光性能和结晶结构之间的决定性关系。

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