首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Photoluminescence properties of single-component white-emitting Ca9Bi(PO4)(7):Ce3+,Tb3+,Mn2+ phosphors for UV LEDs
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Photoluminescence properties of single-component white-emitting Ca9Bi(PO4)(7):Ce3+,Tb3+,Mn2+ phosphors for UV LEDs

机译:用于紫外LED的单组分发白光的Ca9Bi(PO4)(7):Ce3 +,Tb3 +,Mn2 +荧光粉的光致发光特性

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摘要

Co-doping of Ce3+/Eu2+, Tb3+, Mn2+ ions into a single-component host is commonly used to achieve white-light phosphors through energy transfer, which present good color stability and high color rendering index (CRI) values. In this work, a series of single-component trichromatic white-light-emitting Ca9Bi(PO4)(7)(CBPO):Ce3+, Tb3+, Mn2+ phosphors were synthesized and investigated. The crystal structure, luminescence properties and energy transfer behavior are discussed in detail. The energy transfer process from Ce3+ to Tb3+/Mn2+ has been demonstrated to be a resonant type via the dipole-dipole-quadrupole-quadrupole interaction mechanism, respectively, which makes the emission color shift from purple-blue to green/red with the corresponding Commission Internationale de L'Eclairage (CIE) chromaticity coordinates from (0.166, 0.011) to (0.260, 0.569) and (0.582, 0.287), respectively. Additionally, the white light emission by controlling the concentration ratio of Tb3+ and Mn2+ ions has been acquired in the CBPO:0.08Ce(3+), 0.22Tb(3+), 0.11Mn(2+) sample with the CIE chromaticity coordinates of (0.375, 0.310) and an absolute quantum yield of 50% upon 292 nm excitation. The maximum quantum yield is 84% for CBPO:0.08Ce(3+), 0.90Tb(3+). The good thermal stability of the CBPO:0.08Ce(3+), 0.22Tb(3+), 0.11Mn(2+) sample shows about 83.6% at 150 degrees C of its initial PL intensity at room temperature, which attracts more attention. The results suggest that the present phosphors can be potentially applied as candidates of single-component white-light phosphors for UV-pumped w-LEDs.
机译:将Ce3 + / Eu2 +,Tb3 +,Mn2 +离子共掺杂到单组分基质中通常用于通过能量转移获得白光磷光体,呈现出良好的色彩稳定性和高显色指数(CRI)值。在这项工作中,合成和研究了一系列的单组分三色发白色Ca9Bi(PO4)(7)(CBPO):Ce3 +,Tb3 +,Mn2 +荧光粉。详细讨论了晶体结构,发光性质和能量转移行为。分别通过偶极-偶极-四极-四极相互作用机理证明了Ce3 +到Tb3 + / Mn2 +的能量转移过程是共振型的,从而通过相应的佣金使发射颜色从紫色蓝色变为绿色/红色。国际照明(CIE)色度分别从(0.166,0.011)到(0.260,0.569)和(0.582,0.287)。此外,在CBPO:0.08Ce(3 +),0.22Tb(3 +),0.11Mn(2+)样品中,通过控制Tb3 +和Mn2 +离子的浓度比获得白光发射,其CIE色度坐标为(0.375,0.310)和292 nm激发时的绝对量子产率为50%。 CBPO:0.08Ce(3 +),0.90Tb(3+)的最大量子产率为84%。 CBPO的良好热稳定性:0.08Ce(3 +),0.22Tb(3 +),0.11Mn(2+)样品在室温下其初始PL强度在150摄氏度时显示约83.6%,这引起了更多关注。结果表明,本发明的磷光体可以潜在地用作紫外泵浦的w-LED的单组分白光磷光体的候选物。

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