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Photoluminescence study of (Sm_(0.95)Ce_(0.05))_2O_3 nanoparticles for LED applications

机译:(SM_(0.95)CE_(0.05))_ 2O_3纳米粒子的光致发光研究

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Nanophosphors are a blazing area which has gained momentum in the present day research due to the fabulous unique properties of nanoparticles from their respective bulk. The rare earth doped sesquioxides have received considerable attention due to its unique properties like high chemical and thermal stabilities, intense UV absorption and also its use in solid state lightings, LASERS and so on. Here, we have synthesized (Sm_(0.95)Ce_(0.05))_2O_3 nanocrystalline powder using combustion method. Powder X-ray diffraction was used to study the structural characterization of the synthesized sample and the result confirmed that the synthesized nanoparticles had a nanocrystalline structure with a cubic phase and Ia3 space group. The crystal structure and the shape of the particles have a tremendous effect on the photoluminescent properties. The surface morphology and the size of the particles were examined using scanning electron microscopy (SEM) and transmission electron microscopy (TEM). The SEM micrographs showed that t he synthesized particles appear to be spherical. The TEM results confirmed that the particles formed were spherical and in nano regime. Phosphors with spherical morphology will surely enhance the photoluminescent properties of the materials. Hence the synthesized sample will have good luminescent characteristics. The optical properties of the sample were studied using ultraviolet -visible (UV-Vis) data analysis and photoluminescence (PL) studies. The absorption peaks obtained are at 364nm, 376, 405, 464 nm and 476nm which correspond to ~6H_(5/2) → ~4D_(3/2), ~6H_(5/2) → ~4D_(1/2), ~6H_(5/2) → ~6F_(7/2), ~6H_(5/2) → ~4I_(13/2) and ~6H_(5/2) → ~4I_(11/2) transitions respectively. On excitation, these particles showed a strong emission at 605 nm which corresponds to ~4G_(5/2) → ~6H_(7/2) transition and other emissions at 563 nm and 647nm correspond to ~4G_(5/2) → ~6H_(5/2) and ~4G_(5/2) → ~6H_(5/2) transitions revealing that it is an orange-red emissive phosphor. This novel nanophosphor can offer new possibilities for the development of white light-emitting diodes (WLEDs) which can be excited by the near-UV chips and also in solid state lightings.
机译:纳米无机发光材料是其已经获得了当今研究的势头,由于从各自散纳米粒子的神话般的独特性能熊熊的区域。稀土掺杂倍半已受到相当关注,因为它像高的化学和热稳定性,强烈的紫外线吸收,也是其在固态照明,激光等使用的独特性质。这里,我们已经合成了(SM_(0.95)CE_(0.05))_使用燃烧方法2O_3纳米粉末。粉末X射线衍射法研究合成样品的结构表征,结果证实,该合成的纳米颗粒具有纳米晶结构具有立方相和IA3空间群。晶体结构和颗粒的形状对光致发光性质有极大影响。表面形态和颗粒的尺寸进行了使用扫描电子显微镜(SEM)和透射电子显微镜(TEM)检查了显示SEM照片是t他合成的粒子似乎是球形。该TEM结果证实所形成的颗粒呈球状,并在纳米制度。球形形态荧光粉必将增强材料的光致发光特性。因此,合成的样品将具有良好的发光特性。使用紫外 - 可见光(UV-VIS)的数据分析和光致发光(PL)的研究样本的光学特性进行了研究。所获得的吸收峰在364nm,376,405,464 nm和476nm,其对应于〜6H_(5/2)→〜4D_(3/2),〜6H_(5/2)→〜4D_(1/2) ,〜6H_(5/2)→〜6F_(7/2),〜6H_(5/2)→〜4I_(13/2)和分别〜6H_(5/2)→〜4I_(11/2)跃迁。上激励,这些颗粒在605nm表现出很强的发射,其对应于〜4G_(5/2)→〜6H_(7/2)过渡和其他排放在563 nm和647nm对应于〜4G_(5/2)→〜 6H_(5/2)和〜4G_(5/2)→〜6H_(5/2)的过渡揭示它是一种橙红色发光荧光体。这种新颖的纳米荧光粉可以提供可以由近紫外芯片固态照明被激发,并且还白色发光二极管(WLED的)的开发新的可能性。

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