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Near-UV light excited Eu3+, Tb3+, Bi3+ co-doped LaPO4 phosphors: Synthesis and enhancement of red emission for WLEDs

机译:近紫外光激发的Eu3 +,Tb3 +,Bi3 +共掺杂LaPO4荧光粉:WLED的合成和红色发射的增强

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A series of single-phase Eu3+, Tb3+, Bi3+ co-doped LaPO4 phosphors were synthesized by solid-state reaction at 800 degrees C. Crystal structures of the phosphors were investigated by X-ray diffraction (XRD). A monoclinic phase was confirmed. The excitation (PLE) and emission (PL) spectra showed that the phosphors could emit red light centered at 591 nm under the 392 nm excitation, which is in good agreement with the emission wavelength from near-ultraviolet (n-UV) LED chip (370-410 nm). The results of PLE and PL indicated that the co-doped Tb3+ and Bi3+ could enhance emission of Eu3+ and the fluorescent intensities of the phosphors excited at 392 nm could reach to a maximum value when the doping molar concentration of Tb3+ and Bi3+ is about 2.0% and 2.0%, respectively. The co-doping Tb3+ and Bi3+ ions can strengthen the absorption of near UV region. They can also be efficient to sensitize the emission of Eu3+, indicating that the energy transfer occurs from Tb3+ and Bi3+ to Eu3+ ions. From further investigation it can be found that co-doping Tb3+ and Bi3+ ions can also induce excitation energy reassignment between D-5(0)-F-7(1) and D-5(0)-F-7(2) in these phosphors, and result in more energy assignment to D-5(0)-F-7(2) emission in LaPO4:Eu3+, Tb3+, Bi3+. Our research results displayed that La0.94PO4:Eu-0.02(3+), Tb-0.02(3+), Bi-0.02(3+) could be a new one and could provide a potential red-emitting phosphor for UV-based white LED. (C) 2014 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:在800℃下通过固相反应合成了一系列单相Eu3 +,Tb3 +,Bi3 +共掺杂的LaPO4荧光粉。通过X射线衍射(XRD)研究了荧光粉的晶体结构。确认为单斜相。激发(PLE)和发射(PL)光谱表明,在392 nm激发下,磷光体可以发射以591 nm为中心的红光,这与近紫外(n-UV)LED芯片的发射波长非常吻合( 370-410 nm)。 PLE和PL的结果表明,当Tb3 +和Bi3 +的掺杂摩尔浓度约为2.0%时,共掺杂的Tb3 +和Bi3 +可以增强Eu3 +的发射,并且在392 nm激发的荧光粉的荧光强度可以达到最大值。和2.0%。共掺杂的Tb3 +和Bi3 +离子可以增强近紫外区的吸收。它们还可以有效地激发Eu3 +的发射,表明能量从Tb3 +和Bi3 +转移到Eu3 +离子。从进一步的研究中可以发现,共掺杂Tb3 +和Bi3 +离子还可以诱导D-5(0)-F-7(1)和D-5(0)-F-7(2)之间的激发能重分配。这些磷光体,并导致更多的能量分配给LaPO4:Eu3 +,Tb3 +,Bi3 +中的D-5(0)-F-7(2)发射。我们的研究结果表明,La0.94PO4:Eu-0.02(3 +),Tb-0.02(3 +),Bi-0.02(3+)可能是一种新的材料,并且可以为基于UV的荧光粉提供潜在的发红光的荧光粉。白色LED。 (C)2014 Elsevier Ltd和Techna Group S.r.l.版权所有。

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