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首页> 外文期刊>New Journal of Chemistry >Role of Dy3+ - Sm3+ energy transfer in the tuning of warm to cold white light emission in Dy3+/Sm3+ co-doped Lu3Ga5O12 nano-garnets
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Role of Dy3+ - Sm3+ energy transfer in the tuning of warm to cold white light emission in Dy3+/Sm3+ co-doped Lu3Ga5O12 nano-garnets

机译:DY3 + - &gt的作用; SM3 +能量转移在DY3 + / SM3 +共掺杂LU3GA5O12纳米装饰中的温暖到冷白光发射

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摘要

Nano-crystalline lutetium gallium garnets co-doped with Dy3+ and Sm3+ ions have been synthesized via a sol-gel method and their structural, morphological and luminescence properties have been characterized. All the garnets have been crystallized in a single phase of cubic structure, with an average size of 40 nm, with coral shape morphology. Under different excitation wavelengths, the nano-garnets exhibit the strong yellow and blue emissions of Dy3+ ions, as well as the orange and red emissions of Sm3+ ions. In Dy3+/Sm3+ co-doped Lu3Ga5O12 nano-garnets, white light emission has been tuned from warm to cool by varying the concentration of Sm3+ ions, as well as the excitation wavelength. The color coordinates for 2 mol% Dy3+/10 mol% Sm3+ co-doped nano-garnets have been found to be (0.317, 0.321), quite close to ideal white light, with a correlated color temperature of 6322 K under 351 nm excitation. Moreover, decay times, multipolar interactions, and energy transfer parameters for excited states of Dy3+ and Sm3+ ions in co-doped nano-garnets have been evaluated to derive the relationship between the doping concentration and luminescence properties. These results reveal that the studied nano-garnets could be a potential candidate for white light emitting device applications.
机译:通过溶胶 - 凝胶法合成了共掺杂有DY3 +和SM3 +离子的纳米结晶含镓镓甘蓝型,并且已经表现了它们的结构,形态学和发光特性。所有的装饰品都在立方结构的单相中结晶,平均尺寸为40nm,具有珊瑚形态。在不同的激发波长下,纳米装甲表现出DY3 +离子的强黄色和蓝色排放,以及SM3 +离子的橙色和红色排放。在DY3 + / SM3 +共掺杂LU3GA5O12纳米装饰中,通过改变SM3 +离子的浓度以及激发波长,在温热中调节白色光发射。已经发现2摩尔%DY3 + / 10mol%SM3 +共掺杂纳米大肠杆菌的颜色坐标是(0.317,0.321),非常接近理想的白光,具有6322k的相关色温,在351nm激发下。此外,已经评估了衰减时间,多极相互作用和用于共掺杂纳米纳米的SM3 +离子的激发态的能量转移参数,以导出掺杂浓度和发光性质之间的关系。这些结果表明,研究的纳米装甲可以是白光发射器件应用的潜在候选者。

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