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Optical Properties of Nanocrystalline YAG:Ce

机译:纳米晶YAG:Ce的光学性质

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Due to its high quantum efficiency (QE) for luminescence, conventional coarse-grained YAG:Ce (Y_3Al_5O_(12):Ce) finds widespread use in light conversion and scintillator applications. Nanocrystalline YAG:Ce may possess modified optical properties which are advantageous for technological applications, but this will depend on highly efficient energy conversion. In this work, the effect of the particle size and Ce concentration on the quantum efficiency and the optical lifetime of the YAG:Ce emission will be characterized and discussed. Nanocrystalline YAG:Ce with an average particle size of 20 to 50 nm was synthesized by the chemical vapour reaction (CVR) method and subsequently analyzed using various techniques. When comparing the nanocrystalline samples to a coarse-grained reference sample, the particle size and doping concentration was found to have a significant influence on quantum efficiency. It was established that the nanocrystalline samples investigated exhibit a lower QE at ambient temperature than the coarse-grained reference. The results of the optical lifetime measurements are discussed in relation to this reduction in QE.
机译:由于其用于发光的高量子效率(QE),常规的粗粒度YAG:Ce(Y_3Al_5O_(12):Ce)在光转换和闪烁体应用中得到了广泛的应用。纳米晶YAG:Ce可能具有改良的光学性质,这对技术应用是有利的,但这将取决于高效的能量转换。在这项工作中,将表征和讨论粒径和Ce浓度对YAG:Ce发射的量子效率和光学寿命的影响。通过化学气相反应(CVR)方法合成了平均粒径为20至50 nm的纳米晶YAG:Ce,随后使用各种技术对其进行了分析。当将纳米晶体样品与粗粒度参比样品进行比较时,发现颗粒大小和掺杂浓度对量子效率有重大影响。确定的是,所研究的纳米晶体样品在环境温度下的QE低于粗粒参考样品。讨论了光学寿命测量的结果与QE降低的关系。

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