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首页> 外文期刊>Journal of Solid State Chemistry >Tunable color and energy transfer in single-phase white-emitting Ca20Al26Mg3Si3O68:Ce3+,Dy3+ phosphors for UV white light-emitting diodes
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Tunable color and energy transfer in single-phase white-emitting Ca20Al26Mg3Si3O68:Ce3+,Dy3+ phosphors for UV white light-emitting diodes

机译:在单相发白光的Ca20Al26Mg3Si3O68:Ce3 +,Dy3 +荧光粉中可调谐的颜色和能量转移,用于UV白光发光二极管

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摘要

Ce3+ and/or Dy3+ activated Ca20Al26Mg3Si3O68 phosphors were synthesized by high temperature solid state reaction and their luminescent properties were studied. There are two emissions peaking at 407 and 577 nm in the emission spectra of Ca20Al26Mg3Si3O68:Ce3+, Dy3+, which are due to the transitions of Ce3+ and Dy3+ ions, respectively. More importantly, the effective energy transfer from Ce3+ to Dy3+ ions has been confirmed and investigated by emission/excitation spectra and luminescent decay behaviors. Furthermore, the energy level scheme and mechanism of energy transfer were investigated and it was demonstrated to be resonant type via dipole-dipole reaction. Under the excitation of 345 nm, the emitting color can change from blue to white by adjusting the relative doping concentration of Ce3+ and Dy3+ ions, indicating that the phosphors Ca20Al26Mg3Si3O68:Ce3+, Dy3+ are promising single-phase white-emitting phosphors for application in pc-white LEDs. (C) 2015 Elsevier Inc. All rights reserved.
机译:通过高温固相反应合成了Ce3 +和/或Dy3 +活化的Ca20Al26Mg3Si3O68荧光粉,并研究了其发光性能。 Ca20Al26Mg3Si3O68:Ce3 +,Dy3 +的发射光谱在407和577 nm处出现两个峰值,这分别是由于Ce3 +和Dy3 +离子的跃迁引起的。更重要的是,已经通过发射/激发光谱和发光衰减行为确认并研究了从Ce3 +离子到Dy3 +离子的有效能量转移。此外,研究了能级方案和能量转移机理,并通过偶极-偶极反应证明是共振型的。在345 nm的激发下,通过调节Ce3 +和Dy3 +离子的相对掺杂浓度,发光颜色可以从蓝色变为白色,表明磷光体Ca20Al26Mg3Si3O68:Ce3 +,Dy3 +是有望用于PC的单相发白光磷光体。 -白色LED。 (C)2015 Elsevier Inc.保留所有权利。

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