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Luminescence Properties of Europium-Doped Yttrium Oxides Derived from Their Dodecylsulfate-Templated Mesostructure and Nanotube Forms

机译:铕掺杂的氧化钇氧化物的发光性能衍生的含二甲基硫酸盐模板模板和纳米管形式

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Europium-doped hexagonal-mesostructured and nanotubular yttrium oxides templated by dodecylsulfate species as well as surfactant free bulk oxides were synthesized by the homogeneous precipitation method. All the as grown nanostructured or bulk materials with amorphous or poorly crystalline frameworks showed weak luminescence bands at room temperature. On calcination at 1000°C these materials were converted into highly crystalline yttrium oxides, resulting in a total increase in intensity of all the bands by one order of magnitude. In the hexagonal-mesostructured system, the main band due to the ~5D_0-~7F_2 transition for the calcined phases showed a sharp but asymmetrical multiplet splitting indicating multiple Eu sites. Concentration quenching was found at a Eu content of 3 mol% or above for these phases. In contrast, the main emission for the calcined solids in the nanotubular system occurred as poorly resolved broad band and the intensity of the main band at higher Eu content was significantly enhanced compared with those for the other two systems.
机译:通过均匀的沉淀法合成了通过十二烷基硫酸盐物质以及表面活性剂自由氧化物来模糊的铕掺杂的六边形 - 思科和纳米皮钇氧化物。所有作为具有无定形或不良晶体框架的种植的纳米结构或散装材料在室温下显示出弱发光带。在1000℃下煅烧这些材料被转化为高度结晶的氧化钇,导致所有频段的强度总增加一个级。在六边形 - 思想结构系统中,由于煅烧相的〜5d_0-〜7f_2过渡导致的主带显示出尖锐但不对称的多重分裂,指示多个欧盟站点。在欧盟含量为3mol%或以上的欧含量下发现浓度猝灭。相反,与其他两个系统相比,纳米管系统中煅烧固体中的煅烧固体中的主要发射发生成较差的宽带,并且主带的强度显着提高,与其他两个系统相比,显着提高。

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