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首页> 外文期刊>CERAMICS INTERNATIONAL >Effects of HfO2 dopant on characteristics of Li2MgTiO4-based red phosphors: Thermal stability, photoluminescence intensity and quantum efficiency improvement
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Effects of HfO2 dopant on characteristics of Li2MgTiO4-based red phosphors: Thermal stability, photoluminescence intensity and quantum efficiency improvement

机译:HFO2掺杂剂对基于Li2mGtio4的红色磷光体特性的影响:热稳定性,光致发光强度和量子效率改进

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摘要

To produce natural and vivid color, the color rendering index of white light-emitting diodes (WLEDs) with single phosphors is usually lower than 70, which is problematic for LED applications. A commonly used method to resolve this issue is to enhance the red component of WLEDs. In the present study, Hf4+ and Mn4+ co-doped Li2MgTiO4 red phosphors are synthesized using a solid-state reaction method. When this red phosphor is excited at 397 and 468 nm, it exhibits weak reabsorption in the blue region and emits a broad and deep red emission band in the range of 640-750 nm, which is attributed to the E-2(g) - (4)A(2) (g) transition. With 5 mol% HfO2 dopant, the photoluminescence intensity is enhanced by 1.45-fold and thermal stability is increased by 7.7%. Moreover, this red phosphor was applied to a red phosphor-in-glass (RPiG) optical device with a low-melting TeO2-B2O3-ZnO-Na2O-WO3 glass system. In the RPiG melting process, Li2MgTiO4:Mn4+, Hf4+ red phosphor triggered neither a chemical reaction nor severe degradation, indicating good thermal stability. Li2MgTiO4:Mn4+, Hf4+ has potential as a red emission material for warm WLED applications.
机译:为了产生自然和鲜艳的颜色,具有单磷光体的白色发光二极管(WLED)的显色指数通常低于70,这对于LED应用是有问题的。解决此问题的常用方法是增强WLED的红色组件。在本研究中,使用固态反应方法合成HF4 +和MN4 +共掺杂的Li2mgTiO4红色磷光体。当在397和468nm处激发该红色磷光体时,它在蓝色区域中表现出弱的重吸收,并在640-750nm的范围内发出宽和深的红色发射带,其归因于E-2(g) - & (4)A(2)(g)转型。用5mol%HFO2掺杂剂,光致发光强度增强1.45倍,热稳定性增加7.7%。此外,将该红色磷光体施加到具有低熔点TEO2-B2O3-ZnO-Na2O-WO3玻璃系统的红色磷光体 - 玻璃(RPIG)光学装置。在RPIG熔化过程中,Li2mgTiO4:Mn4 +,HF4 +红磷光体既不引发化学反应也不引发,也不是严重的降解,表明良好的热稳定性。 Li2mgTiO4:Mn4 +,HF4 +具有作为热WLED应用的红色发射材料的潜力。

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