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High quantum efficiency red emitting alpha-phase La2W2O9:Eu3+ phosphor

机译:高量子效率红色发射α-相LA2W2O9:EU3 +磷光体

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摘要

High-quality inorganic red-emitting phosphors are widely used in white light-emitting diodes to realize excellent white light emission. Tungstate is one of the most popular materials for phosphors due to their great chemical stability and unique luminescent properties. However, the quantum efficiency of tungstate-based phosphor is still not high enough for commercial application. In this study, we synthesized a series of alpha-La2W2O9: Eu3+ phosphors by a modified high-temperature solid-state reaction method. The prepared phosphors crystallized well in triclinic structure. Eu3+ ion mainly substituted La3+ ion in La (1) site of low local symmetry as C-1, thus the phosphors showed a strong red emission at 618 nm by D-5(0) - F-7(2) transition. When Eu3+ doping concentration is 3%, alpha-La2W2O9: 3%Eu3+ presents maximum luminescent intensity, longest lifetime (0.651 ms) and highest quantum yield (77%). Furthermore, the mechanism of concentration quenching is discussed and indicates that electric dipole-dipole interaction is the dominant mechanism. Our study demonstrates a high-quality red-emitting phosphor based on alpha-La2W2O9: 3%Eu3+, which is potential for commercial white light-emitting diodes applications. (C) 2018 Elsevier B.V. All rights reserved.
机译:高质量的无机红发磷光体广泛用于白色发光二极管,以实现优异的白光发射。由于其卓越的化学稳定性和独特的发光性能,钨酸盐是最受欢迎的磷光体之一。然而,基于钨基磷光体的量子效率仍然不足以用于商业应用。在这项研究中,通过改性的高温固态反应方法合成了一系列α-La2W2O9:Eu3 +磷光体。制备的磷光体在三级结构中结晶良好。 Eu3 +离子主要取代La3 +离子在La(1)位点的低局部对称的Site,因此磷光体在618nm的荧光体呈D-5(0) - & F-7(2)过渡。当EU3 +掺杂浓度为3%时,α-LA2W2O9:3%EU3 +呈现最大发光强度,最长的寿命(0.651ms)和最高量子产率(77%)。此外,讨论了浓缩猝灭机理,表明电偶极偶极相互作用是主要机理。我们的研究表明,基于Alpha-La2W2O9:3%EU3 +的高质量红发磷光体,这是商业白光二极管应用的潜力。 (c)2018年elestvier b.v.保留所有权利。

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