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Structural and luminescence properties of europium oxide and dysprosium oxide codoped strontium borophosphate ceramics

机译:氧化euro和氧化s共掺杂硼酸锶锶陶瓷的结构和发光性能

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摘要

A series of Eu3+ and Dy3+ co-doped strontium borophosphate ceramics were synthesized using solid-state reaction method at 1000 oC for 4 hours. The influence of strontium oxide composition on structural features of the borophosphate ceramics were investigated by using FT-IR spectroscopy. The addition of higher strontium oxide composition into the host ceramics matrix leads to an increase in ceramic network polymerization due to the replacement of bridging oxygen bonds by non-bridging oxygen bonds. The crystalline phases of ceramics were characterized by X-ray diffraction (XRD). XRD pattern revealed that strontium borophosphate ceramic existed in polycrystalline structure. Optimum composition was chosen from strontium borophosphate series based on the XRD and photoluminescence analysis. Eu and Dy were used as activator to enhance photoluminescence emission. The optimum composition determined from this study is 10SrO-40B2O3-50P2O5 codoped with 2 mol% of Eu3+ and 1 mol% of Dy3+. The result of this study shows that photoluminescence emission and UV excitation due to energy transfer occurred within Dy3+-Eu3+ pair ions under 350 nm and 394 nm excitation separately. The energy transfer between Dy3+ and Eu3+ takes place through resonant energy transfer mechanism. The prominent emission peaks of Eu3+ and Dy3+ co-activated strontium borophopshate ceramics were 484 nm, 574 nm, 613 nm, 660 nm and 697 nm which were assigned to transition of 4F9/2 ? 6H15/2, 4F9/2 ? 6H13/2, 5D0 ? 7F2, 4F9/2 ? 6F11/2, and 5D0 ? 7F4. Prominent hypersensitive dipole transition was affected by structural surrounding environment of activators and polycrystalline structural network. This study shows that a new polycrystalline strontium borophosphate ceramics doped with Eu and Dy is suitable for luminescent materials.
机译:采用固相反应法在1000 oC下4小时合成了一系列Eu3 +和Dy3 +共掺杂硼酸锶锶陶瓷。通过FT-IR光谱研究了氧化锶组成对硼磷酸盐陶瓷结构特征的影响。在主体陶瓷基体中添加较高的氧化锶组成会导致陶瓷网络聚合反应的增加,这是因为用非桥连的氧键代替了桥连的氧键。陶瓷的结晶相通过X射线衍射(XRD)表征。 XRD图谱表明,硼磷酸盐锶陶瓷以多晶结构存在。基于X射线衍射和光致发光分析,从硼酸锶锶系列中选择最佳组成。 Eu和Dy用作活化剂以增强光致发光发射。根据这项研究确定的最佳组成是10SrO-40B2O3-50P2O5,共掺有2 mol%的Eu3 +和1 mol%的Dy3 +。研究结果表明,Dy3 + -Eu3 +对离子分别在350 nm和394 nm激发下发生了由于能量转移引起的光致发光发射和UV激发。 Dy3 +和Eu3 +之间的能量转移是通过共振能量转移机制进行的。 Eu3 +和Dy3 +共活化的硼磷酸锶锶陶瓷的突出发射峰分别为484 nm,574 nm,613 nm,660 nm和697 nm,它们对应于4F9 /2α跃迁。 6H15 / 2、4F9 / 2? 6H13 / 2、5D0? 7F2、4F9 / 2? 6F11 / 2和5D0? 7F4。活化剂和多晶结构网络的结构周围环境影响着显着的超敏偶极跃迁。这项研究表明,掺有Eu和Dy的新型多晶硼磷酸锶锶陶瓷适用于发光材料。

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    Leong Pau Ming;

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  • 年度 2015
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