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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Synthesis, structure and photoluminescence properties of Ca2LuHf2(AlO4)(3): Ce3+, a novel garnet-based cyan light-emitting phosphor
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Synthesis, structure and photoluminescence properties of Ca2LuHf2(AlO4)(3): Ce3+, a novel garnet-based cyan light-emitting phosphor

机译:Ca2LuHf2(AlO4)(3):Ce3 +,一种新型的基于石榴石的蓝绿色发光磷光体的合成,结构和光致发光性能

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摘要

A novel garnet phosphor, Ca2LuHf2(AlO4)(3): Ce3+ (CLHA:Ce3+), was successfully designed and synthesized using a solid-state method. Its crystal structure, band structure and photoluminescence properties were investigated in detail. Under n-UV excitation, CLHA:Ce3+ exhibited cyan to blue-green emission depending on the Ce3+ concentration. The QE of the optimal sample was 50.3%. The concentration quenching mechanism of the Ce3+ emission was dominated by dipole-dipole interactions. A novel method to obtain white light was developed by combining the CLHA:Ce3+ phosphor with a CaAlSiN3: Eu2+ red phosphor. Both the emission intensity and thermal stability of CLHA:Ce3+ were found to be superior to those of the commercial (Sr, Ba)(2)SiO4:Eu2+ phosphor. All of the results indicate the CLHA:Ce3+ phosphor to be a promising candidate for application in white LEDs.
机译:成功地设计并使用固态方法合成了新型石榴石荧光粉Ca2LuHf2(AlO4)(3):Ce3 +(CLHA:Ce3 +)。详细研究了其晶体结构,能带结构和光致发光性能。在n-UV激发下,取决于Ce3 +的浓度,CLHA:Ce3 +呈现青色至蓝绿色的发射光。最佳样品的QE为50.3%。 Ce3 +发射的浓度猝灭机理主要受偶极-偶极相互作用的影响。通过将CLHA:Ce3 +荧光粉与CaAlSiN3:Eu2 +红色荧光粉组合在一起,开发了一种获得白光的新方法。发现CLHA:Ce3 +的发光强度和热稳定性均优于商用(Sr,Ba)(2)SiO4:Eu2 +荧光粉。所有结果表明,CLHA:Ce3 +荧光粉是用于白光LED的有希望的候选者。

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