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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Revealing the substitution mechanism in Eu3+:CaMoO4 and Eu3+,Na+:CaMoO4 phosphors
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Revealing the substitution mechanism in Eu3+:CaMoO4 and Eu3+,Na+:CaMoO4 phosphors

机译:揭示EU3 +:Camoo4和Eu3 +,Na +:Camoo4磷光体中的替代机制

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摘要

Eu3+-Doped calcium molybdate is an excellent phosphor for lighting and display devices due to the very intense pure red emission after UV excitation. It has been reported in the literature that the CaMoO4 unit cell volume expands after Eu3+ doping, in spite of the smaller Eu3+ ionic radius compared with Ca2+. Likewise, several studies found that the emission intensity of the phosphor could be improved by codoping with alkaline ions like Li+, Na+ or K+. None of these studies correlated the apparent volume expansion and luminescence enhancement with the crystal structural details. This paper analyses the aliovalent substitution mechanism and crystal structure of Eu3+:CaMoO4 and Eu3+,Na+:CaMoO4 phosphors using complementary techniques like Raman spectroscopy, EXAFS and SPD. We found that the substitution mechanism was different for both systems, with Ca site vacancies forming in the Eu3+:CaMoO4 phosphors and leading to Ca1-3xEu2xxMoO4 compositions, while the Eu3+,Na+:CaMoO4 phosphors formed Ca1-2xEuxNaxMoO4. SPD showed that the cell volume expansion observed with increasing Eu3+ content is related to the increase of the Mo-O bond distance due to the higher electronegativity of Eu3+ compared with Ca2+. Finally, it was shown that the luminescence properties, i.e. lifetime values and quantum yields (the latter reported here for the first time), do not depend on the presence of monovalent ions in the crystal structure but, exclusively, on the Eu3+ content of the phosphor. The integral and detailed analysis of the materials presented in this paper, ranging from crystal structure to luminescent properties including elemental composition, allows a full picture of the structure-property relationships that had never been addressed before for CaMoO4-based phopshors.
机译:Eu3 + - 掺杂的钼酸钙是一种优异的磷光体,用于照明和显示装置,由于UV激励后非常强烈的纯红色发射。在文献中报道了CAMO4单元电池体积在EU3 +掺杂后膨胀,尽管与CA2 +相比较小的EU3 +离子半径。同样,几项研究发现,通过用Li +,Na +或K +等碱性离子来改善磷光体的发光强度。这些研究均未与晶体结构细节相关的表观体积膨胀和发光增强。本文分析了Eu3 +:Camoo4和Eu3 +,Na +:Camoo4磷光体的铝合花替代机理和晶体结构,使用拉曼光谱法,外壳和SPD等互补技术。我们发现,两个系统的替代机制是不同的,CA网站空位在EU3 +:CAMOO4磷光体中形成并导致CA1-3XEU2XXMO4组合物,而EU3 +,Na +:CAMO4磷光体形成Ca1-2xexmoo4。 SPD显示随着Eu3 +含量的增加观察到的细胞体积膨胀与由于Eu3 +的电负电负性导致的MO-O键距离的增加与CA2 +相比较高。最后,显示出发光性质,即寿命值和量子产率(第一次报告的后者),不依赖于晶体结构中的一价离子的存在,而是仅在Eu3 +含量上的存在磷。本文呈现的材料的整体和详细分析,从晶体结构到包括元素组成的发光性能,允许完整的图像 - 基于Camoo4的Phopshors之前从未解决过的结构性质关系。

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