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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >A Double Substitution of Mg~(2+)-Si~(4+)/Ge~(4+) for Al_((1))~(3+)-Al_((2))~(3+) in Ce~(3+)- Doped Garnet Phosphor for White LEDs
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A Double Substitution of Mg~(2+)-Si~(4+)/Ge~(4+) for Al_((1))~(3+)-Al_((2))~(3+) in Ce~(3+)- Doped Garnet Phosphor for White LEDs

机译:Ce中Al _((1))〜(3 +)-Al _((2))〜(3+)的Mg〜(2 +)-Si〜(4 +)/ Ge〜(4+)的双取代〜(3 +)-用于白光LED的掺杂石榴石磷光体

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The influence of Mg~(2+)-Si~(4+)/Ge~(4+) incorporation into Ce~(3+)- doped Y_3Al_5O_(12) garnet phosphors on the crystal structure and luminescence properties is described in this work. X-ray diffraction with Rietveld refinements, photoluminescence spectra, absolute quantum yield, thermal quenching behavior, and lifetimes were utilized to characterize samples. The introduction of Mg~(2+)-Si~(4+)/Ge~(4+) leads to an obvious red shift of emission wavelength under the excitation of blue light, especially for the series of Mg~(2+)-Si~(4+) substitutions, which is suited for white light-emitting diodes (LEDs) with low color temperatures and good color rendering using only a single phosphor. More interestingly, an additional emission band locating at high-energy was observed with ultraviolet excitation, which is different than previous literature. Under the excitation of ultraviolet, the emission color for the Mg~(2+)-Si~(4+) substitutions can be tuned from yellow-green to blue, which is expected to obtain single-phased phosphors with white emission excited with UV-LED chip. The usual Ce~(3+) emission band at low energy has stronger quenching at high temperatures. The mechanisms for the observed phenomena are discussed.
机译:本文描述了Mg〜(2 +)-Si〜(4 +)/ Ge〜(4+)掺入Ce〜(3 +)-掺杂的Y_3Al_5O_(12)石榴石荧光粉对晶体结构和发光性能的影响。工作。利用Rietveld精制的X射线衍射,光致发光光谱,绝对量子产率,热猝灭行为和寿命来表征样品。 Mg〜(2 +)-Si〜(4 +)/ Ge〜(4+)的引入导致在蓝光激发下发射波长出现明显的红移,特别是对于Mg〜(2+)系列-Si〜(4+)替代,适用于色温低且仅使用单个磷光体即可获得良好显色性的白色发光二极管(LED)。更有趣的是,在紫外激发下观察到了一个位于高能的附加发射带,这与以前的文献不同。在紫外线的激发下,Mg〜(2 +)-Si〜(4+)取代基的发射色可以从黄绿色调为蓝色,从而有望获得具有白色发射光的单相磷光体。 -LED芯片。常规的低能Ce〜(3+)发射带在高温下具有较强的猝灭作用。讨论了观察到的现象的机制。

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