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A novel Mn4+ doped oxyfluoride red phosphor for rapid-response backlights display

机译:用于快速响应背光显示的新型MN4 +掺杂的氧化氧化物红磷光体

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摘要

An oxyfluoride red phosphor Cs2MoO2F4:Mn4+ was synthesized via a facile co-precipitation route with a certain molecular ratio of CsF and MoO3. X-ray diffraction analysis and its Rietveld refinement reveal that Cs2MoO2F4:Mn4+ crystallized in an orthorhombic structure with the Amam(63) space group. Upon blue light excitation, Cs2MoO2F4:Mn4+ exhibits a series of sharp red emission lines around similar to 634 nm and the zero-phonon line (ZPL) is visible at 619 nm. The optimal doping amount of Mn4+ in Cs2MoO2F4 is 1.12%, and the decay curves show a good fit with the single exponential decay model. The fluorescence lifetime of the synthesized phosphors is relatively short and calculated as 3.18 to 2.46 ms, the Mn4+ ions in Cs2MoO2F4 experience a strong crystal field strength with a Dq/B of similar to 4.87, and the distinct nephelauxetic ratio beta(1) is determined to be similar to 1.0226. The thermal quenching mechanism of Mn4+ was also studied. Furthermore, by using the as-synthesized Cs2MoO2F4:Mn4+ phosphor as a red component and beta-SiALON as a green light component, a WLED was fabricated with a high luminous efficacy of 114.70 lm.W-1 and wide color gamut of 109.1% of the National Television Standard Committee (NTSC) value. Hence, the Cs2MoO2F4:Mn4+ phosphor with a short fluorescence lifetime could potentially be an efficient red compensator for application in rapid-response backlight displays.
机译:通过具有CSF和MOO3的一定分子比的容易共沉淀途径合成氧氟硼红磷光体CS2MOO2F4:MN4 +。 X射线衍射分析及其RIETVELD细化显示CS2MOO2F4:MN4 +在与AMAM(63)空间组中的正交结构中结晶。在蓝光激励时,CS2MOO2F4:MN4 +展示了一系列左右相对于634nm,零位线(ZPL)在619nm处可见。 CS2MOO2F4中MN4 +的最佳掺杂量为1.12%,衰减曲线显示出与单指数衰减模型的良好拟合。合成磷光体的荧光寿命相对较短并且计算为3.18至2.46ms,CS2Moo2F4中的MN4 +离子经历强的晶场强度,其DQ / B类似于4.87,并且确定了不同的肾细胞比率β(1)与1.0226相似。还研究了MN4 +的热猝灭机理。此外,通过使用AS合成的CS2MOO2F4:Mn4 +磷光体作为红色组分和β-SiAlon作为绿色光分量,用114.70 Lm.W-1的高发光效率和109.1%的宽色域制备了一个WLED国家电视标准委员会(NTSC)价值。因此,具有短荧光寿命的CS2MOO2F4:MN4 +磷光体可能是一种有效的红色补偿器,用于在快速响应背光显示器中应用。

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    Jiangxi Univ Sci &

    Technol Fac Mat Met &

    Chem Ganzhou 341000 Peoples R China;

    Jiangxi Univ Sci &

    Technol Fac Mat Met &

    Chem Ganzhou 341000 Peoples R China;

    Jiangxi Univ Sci &

    Technol Fac Mat Met &

    Chem Ganzhou 341000 Peoples R China;

    Jiangxi Univ Sci &

    Technol Fac Mat Met &

    Chem Ganzhou 341000 Peoples R China;

    Jiangxi Univ Sci &

    Technol Fac Mat Met &

    Chem Ganzhou 341000 Peoples R China;

    Jiangxi Univ Sci &

    Technol Fac Mat Met &

    Chem Ganzhou 341000 Peoples R China;

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  • 正文语种 eng
  • 中图分类 化学;无机化学;
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