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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 >Synthesis, crystal structure and photoluminescence properties of novel Ba3Lu4O9:Ce3+ orange-red phosphors for white light emitting diodes
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Synthesis, crystal structure and photoluminescence properties of novel Ba3Lu4O9:Ce3+ orange-red phosphors for white light emitting diodes

机译:新型BA3LU4O9的合成,晶体结构和光致发光性能:CE3 +橙红色磷光体的白光发光二极管

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摘要

The exploration of red phosphors is very meaningful for enhancing the color rendering index (CRI) of white-light-emitting diodes (WLEDs). Herein, the novel BLO:Ce3+ orange-red phosphors are successfully synthesized by the high-temperature solid-state reaction via introducing Ce3+ ions into the Ba3Lu4O9 host. Structural analysis shows there was only the BLO:Ce3+ phosphors in the obtained product according to the standard diffraction card. The optimal preparation condition is the single-pass sintering in H2 at 1873 K for 3 h. In the spectral aspect, the optimal Ce3+-doped concentration is 0.5 atom %, and the strongest excitation and emission peaks of are located at 410 nm and 584 nm, respectively. Compared to reported Ba3Lu4O9 :Ce3+ phosphors, the emission peak of BLO:Ce3+ phosphors is effectively red-shifted to about 21 nm. The fluorescent lifetime of BLO:Ce3+ phosphors is about 11.45 ns. Based on the temperature-dependent spectral and structural investigations, the thermal fluorescent quenching of BLO:Ce3+ phosphors originates mainly from the surrounding change of Ce3+ ions, and it is more evident at the temperatures below 340 K. Moreover, the crystallographic sites of the Ce3+ ions in Ba3Lu4O9 are also verified according to the temperature-dependent photoluminescence characterization with the excitation of 355 nm and empirical theoretical analysis, suggesting the observed luminescence mainly comes from the Ce3+ ions located in the LuO6 and BaO6 polyhedra. Finally, utilizing the as-prepared BLO:Ce3+ phosphors, commercial green phosphors and a blue LED, the WLED device is fabricated with a warm white-light performance in the color rendering (Ra = 91.2 and R9 = 88) and color temperature (3758 K) aspects. This study indicates the potential application of BLO:Ce3+ orange-red phosphors in the white-light illumination, and also provides some guiding inspirations in the exploration new red oxide phosphors. (C) 2019 Elsevier B.V. All rights reserved.
机译:的红色荧光体的探索是提高白色光的发光二极管(WLED的)的显色指数(CRI)非常有意义的。在此,新的BLO:Ce3 +的橙红色磷光体被成功地通过经由引入Ce3 +的离子进入Ba3Lu4O9主机高温固相反应合成。结构分析显示,只有在BLO:在根据标准衍射卡所获得的产物Ce3 +的荧光体。最佳制备条件是单传递H2烧结在1873 K中3小时。在光谱方面,最佳Ce3 +的掺杂浓度为0.5原子%,且分别位于410纳米和584纳米,最强的激发和发射峰。相比报道Ba3Lu4O9:Ce3 +的荧光体,BLO的发光峰值:Ce3 +的荧光体被有效地红移至约21纳米。 BLO的荧光寿命:Ce3 +的荧光粉约11.45纳秒。基于所述依赖于温度的光谱和结构的调查,BLO的热荧光淬灭:Ce3 +的荧光体主要来源于Ce3 +的离子的周围变化,并且它是在低于340 K.温度而且更加明显,所述Ce3 +的的结晶位点离子Ba3Lu4O9根据与的355纳米和实证理论分析的激励依赖于温度的光致发光特性也验证,这表明所观察到的发光主要来自位于所述LuO6和BaO6多面体的Ce3 +的离子。最后,利用所制备的BLO:Ce3 +的荧光体,市售的绿色磷光体和蓝色LED中,WLED装置与在色性(Ra = 91.2和R9 = 88)和色温度的暖白色光性能制造(3758 K)方面。本研究表明BLO的潜在应用:Ce3 +的橙红色磷光体在白色光照明,并且还提供在探索新的红色磷光体氧化物一些指导性的启示。 (c)2019 Elsevier B.v.保留所有权利。

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