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Xuhui Xu
Researcher at Kunming University of Science and Technology
Publications - 201
Citations - 3270
Xuhui Xu is an academic researcher from Kunming University of Science and Technology. The author has contributed to research in topics: Luminescence & Phosphor. The author has an hindex of 24, co-authored 142 publications receiving 1899 citations. Previous affiliations of Xuhui Xu include Hong Kong Polytechnic University & Kunming University.
Papers
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Journal ArticleDOI
White-light long persistent and photo-stimulated luminescence in CaSnSiO5:Dy3+
Xuhui Xu,Quanlong He,Litao Yan +2 more
TL;DR: In this article, the authors showed that the presence of deep traps is attributed to the creation of the cluster defects 2 Dy Ca • · V Ca, which make it more difficult for trapped carriers to be released at room temperature.
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Development of a single-phased Ca3SnSi2O9: Bi3+, Dy3+, Eu3+ phosphor with tri-colors for white light-emitting diodes
Xue Yu,Lei Zhang,Xuhui Xu,Ting Wang,Hongling Yu,Tingming Jiang,Qing Jiao,Zhengwen Yang,Dacheng Zhou,Jianbei Qiu +9 more
TL;DR: In this paper, the bright blue emission at 420nm, originating from the charge transfer transition of the self-activated SnO 6 octahedron, was observed in Ca 3 SnSi 2 O 9 host matrix.
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Recent developments and progress of inorganic photo-stimulated phosphors
Xiaotong Fan,Zhichao Liu,Xiuxia Yang,Wenbo Chen,Wei Zeng,Shuyu Tian,Xue Yu,Jianbei Qiu,Xuhui Xu +8 more
TL;DR: In this paper, a review of the development and process of photo-stimulated luminescence (PSL) is presented, and the challenge and future advance have also been demonstrated.
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Effects of the deep traps on the thermal-stability property of CaAl2O4: Eu2+ phosphor
Zhichao Liu,Lei Zhao,Wenbo Chen,Shuangyu Xin,Xiaotong Fan,Wenjuan Bian,Xue Yu,Jianbei Qiu,Xuhui Xu +8 more
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Tunable emitting-color and energy transfer of KCaY(PO4)2: Ce3+,Tb3+ phosphors for UV-excited white light-emitting-diodes
TL;DR: A series of new luminescence emission-tunable phosphors KCaY(PO4)2: 0.03Ce3+, yTb3+ have been synthesized by high temperature solid-state reaction method as discussed by the authors.