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首页> 外文期刊>CERAMICS INTERNATIONAL >Color tunable Ba3Lu(PO4)(3):Tb3+,Mn2+ phosphor via Tb3+- Mn2+ energy transfer for white LEDs
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Color tunable Ba3Lu(PO4)(3):Tb3+,Mn2+ phosphor via Tb3+- Mn2+ energy transfer for white LEDs

机译:颜色可调BA3LU(PO4)(3):TB3 +,MN2 +荧光粉通过TB3 + - > MN2 +白色LED的能量转移

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Series of UV excited Ba3Lu(PO4)(3):Tb3+,Mn2+ phosphors with tunable green to red emissions had been prepared using solid state reactions. Powder X-ray diffraction and Rietveld structure refinement were used to investigate the phase purity and crystal structure of the prepared samples. Under UV excitation, the Ba3Lu(PO4)(3):Tb3+,Mn2+ samples exhibited not only the typical Tb3+ emission peaks but also the broad emission band of Mn2+ ions due to the efficient Tb3+- Mn2+ energy transfer which had been verified by luminescence spectra and decay curves. Utilizing the Inokuti-Hirayama model, the Tb3+ - Mn2+ energy transfer mechanism was determined to be the electronic dipole-quadrupole interaction. Moreover, the emission spectra of Ba3Lu(PO4)(3):0.80Tb(3+),0.015Mn(2+) sample at different temperatures manifested that our prepared phosphors possessed good thermal stability. The luminescence properties investigation results revealed the potential value of Ba3Lu(PO4)(3)F:Tb3+,Mn2+ in application for UV excited phosphor converted white light emitting diodes.
机译:UV励磁系系列(PO4)(3):TB3 +,MN2 +荧光粉与可调谐绿色的荧光粉,使用固态反应制备红色排放。粉末X射线衍射和Rietveld结构细化用于研究制备的样品的相纯度和晶体结构。在紫外线激发下,Ba3LU(PO4)(3)(3):TB3 +,MN2 +样品不仅表现出典型的TB3 +排放峰,而且由于高效的Tb3 + - &gt,Mn2 +离子的宽发射带也表现出来。 MN2 +能量转移由发光光谱和衰减曲线验证。利用Inokuti-Hirayama模型,TB3 + - & MN2 +能量转移机制被确定为电子偶极 - 四极相互作用。此外,在不同温度下的Ba3LU(PO4)(3)(3)(3)的发射光谱(3):0.010tB(3 +),0.015mN(2+)样品表现出我们制备的磷光体具有良好的热稳定性。发光性质调查结果显示了uV激发磷光体转换白光发光二极管的uV激发磷光体的Ba3lu(PO4)(3)F:Tb3 +,Mn2 +的潜在值。

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