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首页> 外文期刊>ECS Journal of Solid State Science and Technology >Narrow Band Deep Red Photoluminescence of Y2Mg3Ge3O12:Mn4+,Li+ Inverse Garnet for High Power Phosphor Converted LEDs
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Narrow Band Deep Red Photoluminescence of Y2Mg3Ge3O12:Mn4+,Li+ Inverse Garnet for High Power Phosphor Converted LEDs

机译:Y2mg3ge3012:Mn4 +,Li +高功率荧光体转换LED的窄带深红色光致发光

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This work concerns a novel red emitting Mn4+ doped phosphor showing an extraordinarily high thermal quenching temperature. The composition Y2Mg3Ge3O12:Mn4+,Li+ exhibits efficient red photoluminescence peaking at 658 nm, which can be assigned to the E-2(g) - (4)A(2g) intraconfigurational transition of Mn4+ ([Ar]3d(3) configuration) located at the octahedral site in the garnet structure. Photoluminescence properties, such as temperature dependence of the luminescence intensity and luminescence lifetime are presented. Additionally, the band structure of the undoped host material were treated with Density Functional Theory (DFT) and evaluated with UV-reflectance spectroscopy. Furthermore, the energy levels of the Mn4+ ion in the Y2Mg3Ge3O12 host were calculated with the exchange charge model of crystal field theory and compared to those obtained experimentally from luminescence studies. (c) The Author(s) 2017. Published by ECS. All rights reserved.
机译:这项工作涉及一种新型红色发射MN4 +掺杂磷光体,显示出极高的热淬火温度。 组合物Y2mg3ge3O12:Mn4 +,Li +在658nm处表现出高效的红色光致发光,可以分配给E-2(g) - & (4)(2g)位于石榴石结构的八面体部位的Mn4 +([Ar] 3D(3)配置的胞内发生转变。 提出了光致发光性质,例如发光强度和发光寿命的温度依赖性。 另外,未掺杂的主体材料的带结构用密度官能理论(DFT)处理,并用UV反射光谱评估。 此外,利用晶场理论的交换电荷模型计算Y2Mg3Ge3O12宿主中Mn4 +离子的能量水平,并与来自发光研究实验获得的那些相比。 (c)2017年提交人。由ECS发布。 版权所有。

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