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首页> 外文期刊>Angewandte Chemie >Control of Luminescence by Tuning of Crystal Symmetry and Local Structure in Mn4+-Activated Narrow Band Fluoride Phosphors
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Control of Luminescence by Tuning of Crystal Symmetry and Local Structure in Mn4+-Activated Narrow Band Fluoride Phosphors

机译:通过调整Mn4 +活窄带氟化物荧光体晶体对称和局部结构的调节来控制发光

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摘要

Mn4+-doped fluoride phosphors have been widely used in wide-gamut backlighting devices because of their extremely narrow emission band. Solid solutions of Na-2(SixGe1-x)F-6:Mn4+ and Na-2(GeyTi1-y)F-6:Mn4+ were successfully synthesized to elucidate the behavior of the zero-phonon line (ZPL) in different structures. The ratio between ZPL and the highest emission intensity upsilon(6) phonon sideband exhibits a strong relationship with luminescent decay rate. First-principles calculations are conducted to model the variation in the structural and electronic properties of the prepared solid solutions as a function of the composition. To compensate for the limitations of the Rietveld refinement, electron paramagnetic resonance and high-resolution steady-state emission spectra are used to confirm the diverse local environment for Mn4+ in the structure. Finally, the spectral luminous efficacy of radiation (LER) is used to reveal the important role of ZPL in practical applications.
机译:由于其极其窄的发射带,Mn4 +掺杂的氟化物荧光粉已广泛应用于宽域背光装置。 成功地合成了Na-2(SixGe1-x)F-6:Mn4 +和Na-2(GeyTi1-Y)F-6:Mn4 +以阐明不同结构中的零位线(ZPL)的行为。 ZPL与最高排放强度upsilon(6)声子边带之间的比率表现出与发光衰减速率的强烈关系。 进行第一原理计算以模拟制备的固溶体的结构和电子性质的变化作为组合物的函数。 为了补偿RIETVELD改进的局限,电子顺磁共振和高分辨率稳态发射光谱用于确认结构中MN4 +的各种局部环境。 最后,辐射(LER)的光谱发光效能用于揭示ZPL在实际应用中的重要作用。

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