Hui Ao
Jinggangshan University
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Publication
Featured researches published by Hui Ao.
Luminescence | 2015
Renping Cao; Kangbin Chen; Pan Liu; Chunyan Cao; Yongchun Xu; Hui Ao; Pengjie Tang
A series of Sr(1-x-y)CayMoO4:xSm(3+) (0 ≤ x ≤ 7 mol% and 0 ≤ y < 1) phosphors was synthesized by a conventional solid-state reaction method in air, and their structural and spectroscopic properties were investigated. The optimal doping concentration of Sm(3+) in SrMoO4:Sm(3+) phosphor is 5 mol%. Under excitation with 275 nm, in Sr(1-x-y)CayMoO4:xSm(3+) (0 ≤ x ≤ 7 mol% and 0 ≤ y < 1) phosphors, the emission band of the host was found to overlap with the excitation bands peaking at ~ 500 nm of Sm(3+) ion, and the energy transfer from MoO4 (2-) group to Sm(3+) ion can also be observed. The International Commission on Illumination (CIE) chromaticity coordinates of Sr(0.95-y)CayMoO4:0.05Sm(3+) phosphors with excitation 275 nm varied systematically from an orange (0.4961, 0.3761) (y = 0) to a white color (0.33, 0.3442) (y = 0.95) with increasing calcium oxide (CaO) concentration. However, Sr(0.95-y)CayMoO4:0.05Sm(3+) phosphors with excitation at 404 nm only showed red emission and the energy transfer between MoO4(2-) group to Sm(3+) ion was not observed. The complex mechanisms of luminescence and energy transfer are discussed by energy level diagrams of MoO4(2-) group and Sm(3+) ion.
Journal of Solid State Chemistry | 2014
Chunyan Cao; Xiaoguang Yu; Xin-Yuan Sun; Pengjie Tang; Hui Ao
La{sub 2}BaZnO{sub 5}:Nd{sup 3+} phosphors are synthesized by a conventional high temperature solid state reaction method, and its crystal structure and luminescence properties are investigated. Photoluminescence bands peaking at ∼496, 540, 630, 670, 905, 1070, and 1350 nm of La{sub 2}BaZnO{sub 5}:Nd{sup 3+} phosphors are observed at room temperature due to f–f transition of Nd{sup 3+} ion. The optimum Nd{sup 3+} doped concentration is ∼0.03. Lifetimes of La{sub 1.97}BaZnO{sub 5}:0.03Nd{sup 3+} phosphor with 496 and 1070 nm monitoring wavelengths are ∼280 and 250 µs, respectively. The luminescence mechanism is explained by using simplified energy lever diagram of Nd{sup 3+} ion. La{sub 2}BaZnO{sub 5}:Nd{sup 3+} material can be applied to powerful solid-state lasers as high efficient light sources. - Graphical abstract: PL spectra of La{sub 2}BaZnO{sub 5}:Nd{sup 3+} phosphor in the visible and near-infrared regions and their corresponding to PLE at room temperature. - Highlights: • La{sub 2}BaZnO{sub 5}:Nd{sup 3+} phosphor is synthesized. • PL spectrum is observed in the visible region. • PL spectrum is observed in the near-infrared region.
Dyes and Pigments | 2017
Renping Cao; Yujiao Ye; Qiying Peng; Guotai Zheng; Hui Ao; Jingwei Fu; Yimin Guo; Bin Guo
Optical Materials | 2016
Renping Cao; Zhihui Shi; Guanjun Quan; Zhiyang Luo; Pengjie Tang; Hui Ao; Xiaoguang Yu
Optik | 2016
Renping Cao; Dedong Peng; Haidong Xu; Zhiyang Luo; Hui Ao; Siling Guo; Jingwei Fu
Advanced Powder Technology | 2015
Renping Cao; Kangbin Chen; Qianglin Hu; Wensheng Li; Hui Ao; Chunyan Cao; Tao Liang
Materials Research Bulletin | 2016
Renping Cao; Haidong Xu; Wenjie Luo; Zhiyang Luo; Siling Guo; Fen Xiao; Hui Ao
Journal of Luminescence | 2016
Renping Cao; Dedong Peng; Haidong Xu; Shenhua Jiang; Zhiyang Luo; Hui Ao; Pan Liu
Optical Materials | 2016
Renping Cao; Xiangfeng Ceng; Jijun Huang; Hui Ao; Guotai Zheng; Xiaoguang Yu; Xinqin Zhang
Journal of Solid State Chemistry | 2014
Renping Cao; Chunyan Cao; Xiaoguang Yu; Xin-Yuan Sun; Pengjie Tang; Hui Ao