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首页> 外文期刊>RSC Advances >Tunable luminescence and energy transfer of a Eu2+/Mn2+ co-doped Sr3NaY(PO4)(3)F phosphor for white LEDs
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Tunable luminescence and energy transfer of a Eu2+/Mn2+ co-doped Sr3NaY(PO4)(3)F phosphor for white LEDs

机译:Eu2 + / Mn2 +共掺杂Sr3NaY(PO4)(3)F荧光粉用于白色LED的可调发光和能量转移

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A series of single-phase and color-tunable Sr3NaY(PO4)(3)F:Eu2+, Mn2+ phosphors have been successfully prepared via the solid-state reaction. The crystal structure and phase of the prepared phosphors were investigated using X-ray diffraction (XRD), scanning electron microscopy (SEM) and transmission electron microscopy (TEM). The excitation and emission spectra, and fluorescence decays were measured and discussed systematically. The results revealed that Eu2+ can efficiently transfer excitation energy to Mn2+ via its 4f states and therefore sensitizes Mn2+ emission under near-ultraviolet (NUV) excitation. In addition, the energy transfer mechanism was demonstrated to be a resonant type via a dipole-dipole process. The corresponding Commission Internationale deL'Eclairage (CIE) chromaticity coordinates showed that the emission colors of the phosphors can be tuned from blue (0.133, 0.148) to white (0.327, 0.351) by adjusting the ratio of Eu2+ and Mn2+. Meanwhile, the good thermal stability of Sr3NaY(PO4)(3)F:0.03Eu(2+), 0.12Mn(2+) sample showed that the emission intensity at 150 degrees C was reduced from 100% to 72.3% measured at 25 degrees C. The results confirmed that the as-synthesized Sr3NaY(PO4)(3)F:Eu2+, Mn2+ phosphors have strong potential to be used as single-phase and NUV excitable white-emitting phosphors.
机译:通过固相反应已成功制备了一系列单相和颜色可调的Sr3NaY(PO4)(3)F:Eu2 +,Mn2 +荧光粉。使用X射线衍射(XRD),扫描电子显微镜(SEM)和透射电子显微镜(TEM)研究了制备的磷光体的晶体结构和相。对激发和发射光谱以及荧光衰减进行了测量和系统讨论。结果表明,Eu2 +可以通过其4f态有效地将激发能转移到Mn2 +,因此可以在近紫外(NUV)激发下敏化Mn2 +的发射。另外,通过偶极-偶极过程证明了能量传递机制是共振类型。相应的国际照明委员会(CIE)色度坐标显示,可以通过调节Eu2 +和Mn2 +的比例将磷光体的发射颜色从蓝色(0.133,0.148)调整为白色(0.327,0.351)。同时,Sr3NaY(PO4)(3)F:0.03Eu(2+),0.12Mn(2+)样品具有良好的热稳定性,表明在150°C下的发射强度从25%时的100%降低到72.3%。结果证实,所合成的Sr3NaY(PO4)(3)F:Eu2 +,Mn2 +荧光粉具有很强的潜力,可用作单相和NUV可激发白光的荧光粉。

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