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Spectral modulation through controlling anions in nanocaged phosphors

机译:通过控制纳米笼状荧光粉中的阴离子进行光谱调制

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A new approach has been proposed and validated to modulate the emission spectra of europium-doped 12CaO 7Al2O3 phosphors by tuning the nonradiative and radiative transition rates, realized by controlling the sort and amount of the encaged anions. A single wavelength at 255 nm can excite simultaneously Eu~(2+) and Eu~(3+) centres to yield blue and red emissions, respectively. The amount of the anions in the nanocages, like OH-and H~-, can be controlled by heat treatment processes. The existence of encaged OH~-accelerates the nonradiative process of the emission centres, while the presence of encaged H~-induces a higher symmetry that decreases the radiative transition rate, confirmed by the analysis of decay processes. It is demonstrated that the emission colour is tuned finely from red to blue with the CIE chromaticity coordinates from (0.630, 0.352) to (0.216, 0.086) when the annealing time increases. This strategy can be readily extended to similar systems with other rare earth active centres.
机译:已提出并验证了一种新方法,该方法可以通过调节非辐射和辐射跃迁速率来调制euro掺杂的12CaO 7Al2O3磷光体的发射光谱,这可以通过控制被包埋的阴离子的种类和数量来实现。 255 nm处的单个波长可以同时激发Eu〜(2+)和Eu〜(3+)中心,分别产生蓝色和红色发射。可以通过热处理工艺来控制纳米笼中阴离子的含量,例如OH-和H--。通过对衰变过程的分析证实,被包裹的OH-的存在加速了发射中心的非辐射过程,而被包裹的H--的存在引起了更高的对称性,从而降低了辐射跃迁速率。结果表明,随着退火时间的增加,发光颜色从红色微调到蓝色(CIE色度坐标从(0.630,0.352)到(0.216,0.086))。可以很容易地将此​​策略扩展到具有其他稀土活跃中心的类似系统。

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