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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Structural and spectroscopic characterizations of a new near-UV-converting cyan-emitting RbBaScSi3O9:Eu2+ phosphor with robust thermal performance
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Structural and spectroscopic characterizations of a new near-UV-converting cyan-emitting RbBaScSi3O9:Eu2+ phosphor with robust thermal performance

机译:具有鲁棒热性能的新型近紫外转换青色近紫外线转换rbbascsi3O9的结构和光谱性质

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摘要

To facilitate the next generation of White Light Emitting Diodes (WLEDs) with higher color rendering and warm lighting, the development of inorganic phosphor for efficient conversion of photons from blue/near-UV light to other visible wavelengths is essential. In this regard, we demonstrate a systematic, cost effective, solution-processable, easily scalable and fully controllable synthesis of a series of RbBaScSi3O9:xEu(2+) (x = 0.2, 0.5, 2, 5, 7), a new cyan emitting scandium silicate based phosphor with 79% internal quantum efficiency under n-UV excitation with robust thermal performance. The concept as well as the methodology of using a "Mineral Inspired Approach" emerges as a new blueprint for the rational design of novel phosphor for phosphor converted WLEDs. The structural refinement, electronic structural calculation using "Density Functional Theory", characteristic photoluminescence study, lifetime measurement as well as the thermal quenching properties of the phosphor has been investigated in detail. Owing to the highly efficient cyan emission at lambda(max) similar to 492 nm a full-width at half-maximum of 63 cm(-1) that shows only very low thermal quenching (89.28% relative to the PL intensity at 150 degrees C with respect to that of measured at room temperature), reflects the great potential for the industrial application of this particular phosphor. (C) 2017 Elsevier B.V. All rights reserved.
机译:为了便于具有更高的色彩渲染和温暖照明的下一代白光发射二极管(WLED),无机磷光体的开发,用于从蓝/近UV光到其他可见波长的光子的有效转换为必不可少的。在这方面,我们展示了一种系统,成本效益,可加工,可容易可扩展,可控制的合成一系列RBBASCSI3O9:XEU(2+)(x = 0.2,0.5,2,5,7),是一种新的青色用稳健的热性能,在N-UV激发下发出基于硅酸盐的硅酸盐基于硅酸盐的荧光体,其内部量子效率为79%。该概念以及使用“矿物启动方法”的方法出现为新型磷光体的新型磷光体的合理设计的新蓝图。采用“密度函数理论”,特征光致发光研究,寿命测量以及磷光体的热淬火性能的结构细化,电子结构计算已经研究过。由于Lambda(MAX)的高效青色发射,类似于492nm的全宽度为63厘米(-1),其仅显示出非常低的热淬火(相对于150℃的PL强度为89.28%)关于在室温下测量的),反映了这种特定磷光体的工业应用的巨大潜力。 (c)2017年Elsevier B.V.保留所有权利。

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