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铕(III)掺杂的γ-氧化铝纳米纤维结构的光致发光成像

Photoluminescence imaging of europium (III)-doped γ-Al O nanofiber structures.

作者信息

Park So Jeong, Rhee Choong Kyun, Sohn Youngku

机构信息

Department of Chemistry, Chungnam National University, Daejeon, Republic of Korea.

出版信息

Luminescence. 2019 Dec;34(8):838-845. doi: 10.1002/bio.3680. Epub 2019 Jul 16.

Abstract

Aluminium oxide (Al O ) has widely been used for catalysts, insulators, and composite materials for diverse applications. Herein, we demonstrated if γ-Al O was useful as a luminescence support material for europium (Eu) (III) activator ion. The hydrothermal method and post-thermal treatment at 800°C were employed to synthesize Eu(III)-doped γ-Al O nanofibre structures. Luminescence characteristics of Eu(III) ions in Al O matrix were fully understood by taking 2D and 3D-photoluminescence imaging profiles. Various sharp emissions between 580 to 720 nm were assigned to the D → F (J = 0, 1, 2, 3, 4) transitions of Eu(III) activators. On the basis of X-ray diffraction crystallography, Auger elemental mapping and the asymmetry ratio, Eu(III) ions were found to be well doped into the γ-Al O matrix at a low (1 mol%) doping level. A broad emission at 460 nm was substantially increased upon higher (2 mol%) Eu(III) doping due to defect creation. The first 3D photoluminescence imaging profiles highlight detailed understanding of emission characteristics of Eu(III) ions in Al oxide-based phosphor materials and their potential applications.

摘要

氧化铝(Al₂O₃)已被广泛用于催化剂、绝缘体以及各种应用的复合材料。在此,我们展示了γ - Al₂O₃是否可用作铕(Eu)(III)激活离子的发光支撑材料。采用水热法和800°C的后热处理来合成掺Eu(III)的γ - Al₂O₃纳米纤维结构。通过获取二维和三维光致发光成像谱,全面了解了Al₂O₃基质中Eu(III)离子的发光特性。580至720纳米之间的各种尖锐发射被归因于Eu(III)激活剂的⁵D₀ → ⁷Fʲ(J = 0, 1, 2, 3, 4)跃迁。基于X射线衍射晶体学、俄歇元素映射和不对称比,发现Eu(III)离子在低(1摩尔%)掺杂水平下很好地掺杂到γ - Al₂O₃基质中。由于缺陷的产生,在较高(2摩尔%)Eu(III)掺杂时,460纳米处的宽发射显著增加。首个三维光致发光成像谱突出了对基于氧化铝的磷光体材料中Eu(III)离子发射特性及其潜在应用的详细理解。

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