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首页> 外文期刊>CERAMICS INTERNATIONAL >Synthesis, energy transfer and multicolor luminescent property of Eu3+-doped LiCa2Mg2V3O12 phosphors for warm white light-emitting diodes
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Synthesis, energy transfer and multicolor luminescent property of Eu3+-doped LiCa2Mg2V3O12 phosphors for warm white light-emitting diodes

机译:Eu3 +掺杂的LiCa2MG2V3O12磷光体的合成,能量转移和多色发光特性,用于温暖白光二极管

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摘要

In this study, Eu3+-doped LiCa2Mg2V3O12 (LCMVO) phosphors with multicolor luminescent property were prepared by the solid phase reaction. Their structure, morphology and luminescent property were studied systematically by X-ray diffraction, scanning electron microscope and photoluminescence spectra. The LCMVO phosphors showed pure cubic crystal structure with space group (Ia (3) over bard) and irregular spherical morphology. The excitation spectra showed a strong absorption to ultraviolet light. Under the excitation wavelength at 360 nm, they exhibited a cyan emission with a luminescence center at 520 nm. When Eu3+ ions were doped into LCMVO system, the Eu3+ characteristic emissions were also observed and the emission colors were tuned from cyan to orange via adjusting Eu3+ ion concentration. Further, electric dipole-quadrupole interaction and luminescence decay curves were adopted to explain the energy transfer from (VO4)(3-) to Eu3+. The emission spectra of as-obtained phosphors at different temperature were measured to evaluate their thermal stability. The quantum efficiency values were measured to be 42.5% for LCMVO host and 38.6% for LCMVO: 0.01Eu(3+) sample. The final prepared LED lamp showed easeful warm white light with suitable Ra of 89 and CCT of 3847 K, respectively. These results suggest LCMVO phosphors may be applied in near ultraviolet chip-excited white light-emitting diodes.
机译:在本研究中,通过固相反应制备具有多色发光性质的EU3 +掺杂的LICA2MG2V3O12(LCMVO)磷光体。通过X射线衍射,扫描电子显微镜和光致发光光谱系统地系统地研究了它们的结构,形态和发光特性。 LCMVO磷光体呈纯度立方晶体结构,具有空间组(IA(3),在吟游诗人)和不规则的球形形态。激发光谱显示出对紫外光的强烈吸收。在360nm的激发波长下,它们在520nm处具有发光中心的青色发射。当EU3 +离子掺杂到LCMVO系统中时,也观察到EU3 +特征发射,并且通过调节EU3 +离子浓度从青色调谐到橙色。此外,采用电偶极子 - 四极相互作用和发光衰变曲线来解释(VO4)(3-)至EU3 +的能量转移。测量在不同温度下获得的磷光体的发射光谱以评估其热稳定性。测量量子效率值为LCMVO宿主的42.5%,LCMVO:0.01EU(3+)样品的38.6%。最终制备的LED灯显示出易于暖白光,分别为89和3847 k的CCT。这些结果表明LCMVO磷光体可以应用于紫外线芯片激发的白色发光二极管附近。

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