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Time-Resolved Luminescence Characteristics of Cerium Doped YAG Nanocrystals

机译:铈掺杂YAG纳米晶体的时间分辨发光特性

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Time-resolved luminescence characteristics have been studied for cerium doped YAG nanopowders (NP) and nanostructured ceramics (NC). The results obtained have been compared to the luminescence characteristics for the well studied YAG:Ce~(3+) single crystal (SC). ft was detected that the luminescence decay kinetics of Ce~(3+) related emission in nanocrystals can be closely approximated by two exponents, whereas a single exponential decay was observed in the single crystal. It was also found that the luminescence decay time and light yield of Ce~(3+) emission are strongly dependent on the cerium concentration and an unusual concentration quenching of Ce~(3+) emission was observed in YAG nanocrystals. The origin of the differences of luminescence characteristics for cerium doped nanocrystals and SC are discussed. It is suggested that there are special Ce~(3+) sites which are closely related to the surface states and that they have a strong influence on the luminescence properties of cerium doped YAG nanocrystals.
机译:已经研究了铈掺杂的YAG纳米粉(NP)和纳米结构陶瓷(NC)的时间分辨发光特性。已经获得的结果与良好研究的YAG的发光特性进行了比较:Ce〜(3+)单晶(SC)。检测到FT,纳米晶体中Ce〜(3+)相关发射的发光衰减动力学可以通过两项指数密切地近似,而在单晶中观察到单个指数衰减。还发现Ce〜(3+)发射的发光衰减时间和光率强烈依赖于铈浓度,并且在YAG纳米晶体中观察到Ce〜(3+)发射的异常浓度猝灭。讨论了铈掺杂纳米晶体和SC的发光特性差异的起源。建议存在与表面状态密切相关的特殊CE〜(3+)位点,并且它们对铈掺杂的YAG纳米晶体的发光性能有很大影响。

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