Effect of Mn4+ ions on the structure and luminescence properties of NaY(MoO4)2: Yb3+/Er3+ phosphor

被引:0
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作者
Jiang, Xiliang [1 ]
Wang, Xinyu [1 ]
Shi, Xueming [1 ]
Sha, Hongyuan [1 ]
Yang, Wenjing [1 ]
Yang, Weiling [1 ]
Leng, Zhuang [1 ]
Lin, Hai [1 ,2 ]
Su, Zhongmin [1 ,2 ]
Li, Chun [1 ,2 ]
Zeng, Fanming [1 ,2 ]
机构
[1] School of Materials Science and Engineering, Changchun University of Science and Technology, Changchun,130022, China
[2] Jilin Provincial Science and Technology Innovation Center of Optical Materials and Chemistry, Changchun,130022, China
关键词
Laser excitation - Sodium compounds - Luminescence - Phosphors - Binding energy - Molybdenum compounds - Transition metals - Ions - Two photon processes;
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摘要
In this work, we prepare a series of phosphor of NaY(MoO4)2: Yb3+/Er3+/Mn4+ using high temperature solid state method, the results of X-ray diffraction (XRD) shows that the doped Yb3+, Er3+ and Mn4+ ions will make lattice be smaller size. The reduction of the binding energy of O-1s XPS is due to the vacancy of O2− ions in the matrix lattice which is brought by the substitution of Mn4+ and Mo6+ ions. Under the laser excitation of 980 nm, the Er3+ ions exhibit strong green up-conversion emission and weak red up-conversion emission at 532, 554 and 658 nm, corresponding to the transitions of 2H11/2/4S3/2 → 4I15/2, 4F9/2 → 4I15/2 of Er3+ ions. The reasons for the high green emission intensity are discussed in detail by analyzing the Raman spectroscopy of NaY (MoO4)2: Yb3+/Er3+/Mn4+ phosphor. It can be inferred that the emissions at 554 nm and 658 nm are a two-photon process by the relationship between pump power and up-conversion luminescence intensity, and the possible up-conversion emission mechanism has been explored. Meanwhile, the luminescence life of green and red light decreases with the increasing doping concentration of Mn4+ ions. After doping Mn4+ ions, the symmetry of the matrix lattice decreases, and the emission intensity of up-conversion will be greatly improved. The study of this work expands the research scope of traditional conversion materials, and offers reference for the exploration of up-conversion luminescent materials based on transition metals. © 2021 Elsevier B.V.
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