首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Evolution of different defect clusters in Eu3+ doped KMgF3 and Eu3+, Li+ co-doped KMgF3 compounds and the immediate impact on the phosphor characteristics
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Evolution of different defect clusters in Eu3+ doped KMgF3 and Eu3+, Li+ co-doped KMgF3 compounds and the immediate impact on the phosphor characteristics

机译:EU3 +掺杂KMGF3和EU3 +,Li +共掺杂KMGF3化合物的不同缺陷簇的演变和对磷光体特性的立即影响

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Defects in the lattice have both positive and negative implications for the optical properties of light emitting materials and a great effort is required to understand the defect structure surrounding the activator ion in phosphor materials. The fluoride based perovskite class of compounds such as KMgF3 is always associated with cationic and anionic vacancies, which may give rise to many interesting optical properties. They may also play an important role in determining the phosphor characteristics, when an activator such as Eu3+ ions is doped in KMgF3. This is because defects may alter the local structure of Eu3+ ions, whose characteristic transitions are very sensitive to the local environment. In the first attempt of its kind, we have tried to present a complete picture of the defect structures both in undoped and Li+, Eu3+ ion doped KMgF3 compounds and their influence on the phosphor characteristics. By analysing the changes in the defect structure due to changes in the dopant ions using positron annihilation lifetime spectroscopy supported by EPR and theoretical calculations, it was observed that different defect clusters are being evolved upon changing the dopant ions from Eu3+ to Li+ as co-dopant ions. These changes have a direct impact on the emission characteristics, especially the colour can be tuned to a more deep red region. Using time resolved spectroscopy two different Eu3+ components adjacent to different defect clusters are isolated. The clusters due to K-vacancies were found to change their configuration upon co-doping Li+ ions; VC1 for Eu3+ doped and VC2 for Eu3+ and Li+ co-doped compounds. From the relative percentage of these cluster vacancies, it was possible to make a conclusion about the distribution of Eu3+ and Li+ ions among the different unit cells of KMgF3, which have different defect structures. The study will be helpful in tailoring the defect structure while designing an efficient phosphor material.
机译:晶格中的缺陷对于发光材料的光学性质具有正负的影响,并且需要努力了解荧光体材料中围绕活化剂离子的缺陷结构。氟化物基钙钛矿类化合物如KMGF3总是与阳离子和阴离子空位有关,这可能产生许多有趣的光学性质。当在KMGF3中掺杂诸如Eu3 +离子的活化剂时,它们也可能在确定磷光体特性方面发挥重要作用。这是因为缺陷可以改变EU3 +离子的局部结构,其特征过渡对本地环境非常敏感。在首次尝试其类型的尝试中,我们试图在未掺杂的和Li +,Eu3 +离子掺杂KMGF3化合物中呈现完整的缺陷结构的图像及其对磷光体特性的影响。通过通过EPR和理论计算支持的掺杂剂离子的变化来分析缺陷结构的变化,观察到在将掺杂剂离子从EU3 +至Li +改变为合掺杂剂时正在演化的不同缺陷簇离子。这些变化对排放特性有直接影响,特别是颜色可以调整到更深的红色区域。使用时间分辨光谱分辨的光谱,隔离与不同缺陷簇相邻的两个不同的EU3 +组分。发现由于K-缺损引起的群集在共同掺杂Li +离子时改变它们的构造;用于EU3 +掺杂的VC1和EU3 +和Li +共掺杂化合物的VC2。从这些聚类空位的相对百分比,可以在KMGF3的不同单位细胞中的EU3 +和Li +离子的分布进行结论,这具有不同的缺陷结构。该研究将在设计高效的磷光体材料时剪裁缺陷结构。

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