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Radiation-induced preparation of pure and Ce-doped lutetium aluminium garnet and its luminescent properties

机译:铈掺杂Ce铝石榴石的辐射诱导制备及其发光性能

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摘要

Radiation-induced preparation of pure or doped lutetium aluminium garnet Lu3Al5O_(12) (LuAG) is reported as a simple and robust process, which is easy to control. Irradiation of an aqueous solution containing formate anions and soluble salts of both metal ions by ionizing radiation or UV light leads to precipitation of an amorphous solid phase. Subsequent calcination in the interval 850-1200 °C results in the crystallization of the LuAG with a well developed structure. Depending on the calcination temperature, the particle size ranges from 20 to 60 nm; the prepared LuAG nanopowder was also found to be easily compactable. The manufactured Ce-doped LuAG features intensive luminescence corresponding to Ce~(3+) 5d-4f transitions at 510 nm and its photoluminescence excitation spectrum comprises two Ce~(3+) 4f-5d1, 5d2 bands at 450 and 347 nm, respectively. The decay times of Ce~(3+) emission in nanopowders were substantially influenced by the nanomorphological character of the prepared material. Due to its high density, chemical stability, non-toxic character and excellent scintillation efficiency, the application of Ce-doped LuAG nanopowder in photodynamic therapy and in optical ceramics preparation is suggested.
机译:据报道,辐射诱导制备纯或掺杂的aluminum铝石榴石Lu3Al5O_(12)(LuAG)是一种简单而稳定的过程,易于控制。通过电离辐射或紫外光辐照包含甲酸根阴离子和两种金属离子的可溶性盐的水溶液会导致非晶态固相沉淀。随后在850-1200°C的温度范围内煅烧会导致具有成熟结构的LuAG结晶。取决于煅烧温度,粒度范围为20至60nm;优选地,粒度为20nm。还发现制备的LuAG纳米粉易于压实。制成的掺Ce的LuAG具有强发光特性,对应于510 nm处的Ce〜(3+)5d-4f跃迁,其光致发光激发光谱分别包括两个Ce〜(3+)4f-5d1、5d2波段,分别在450和347 nm处。 。纳米粉体中Ce〜(3+)发射的衰减时间受到制备材料的纳米形貌特征的影响。由于其高密度,化学稳定性,无毒特性和出色的闪烁效率,建议将Ce掺杂的LuAG纳米粉体用于光动力疗法和光学陶瓷制备中。

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