首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Effects of Neighboring Polyhedron Competition on the 5d Level of Ce3+ in Lanthanide Garnets
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Effects of Neighboring Polyhedron Competition on the 5d Level of Ce3+ in Lanthanide Garnets

机译:邻近多面体竞争对镧系镧系镧系元素5D + 5D水平的影响

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摘要

Herein, we provide a direct explanation for the reverse garnet effect based on polyhedron competition. On multisite substitution, the deformation of the dodecahedron which will accommodate Ce3+ meets suppression from a neighboring octahedron and tetrahedron. This makes the dodecahedral deformation non-isotropic. Further, it is found that the lowest 5d state of Ce3+ in garnet is closely related to the tetragonal distortion of the dodecahedron, which is characterized by a simplified cuboid model. Crystal-field calculations reveal how the edge-ratio of the cuboid affects energy levels. This model gives a satisfactory explanation for the reverse garnet effect and is helpful for seeking novel garnet-based luminescent materials.
机译:在此,我们为基于多面体竞争的反向石榴效果提供了直接解释。 在多路替代方面,将CE3 +容纳CE3 +的十二锭的变形符合邻近八面体和四面体的抑制。 这使得十二烷前列变形非各向同性。 此外,发现石榴石中的CE3 +的最低5D状态与十二锭的四边形变形密切相关,其特征在于简化的长方体模型。 晶体场计算揭示了长方体的边缘比如何影响能量水平。 该模型对反向石榴效果提供了令人满意的解释,并且有助于寻求新型石榴石的发光材料。

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