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Dive into the research topics where Qiufeng Shi is active.

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Featured researches published by Qiufeng Shi.


Journal of Materials Chemistry C | 2017

Multifunctional CaSc2O4:Yb3+/Er3+ one-dimensional nanofibers: electrospinning synthesis and concentration-modulated upconversion luminescent properties

Meihong Liu; Ming Gu; Yue Tian; Ping Huang; Lei Wang; Qiufeng Shi; Cai’e Cui

In this paper, an electrospinning technique was developed to prepare CaSc2O4:Yb3+/Er3+ one dimensional (1D) nanofibers for the first time. X-ray diffraction (XRD), scanning electron microscopy, transmission electron microscopy and nitrogen adsorption/desorption were utilized to characterize the structure and morphology of the as-prepared nanofibers, indicating that single phase mesoporous CaSc2O4:Yb3+/Er3+ 1D nanofibers with a uniform size and morphology can be prepared via the electrospinning technique. The as-prepared CaSc2O4:Yb3+/Er3+ 1D nanofibers exhibit strong UCL under the excitation of 980 nm. The cross-relaxation (4S3/2 + 4I15/2 → 4I9/2 + 4I13/2) and energy back transfer (4S3/2 + 4F7/2 → 4I13/2 + 4F5/2) processes are found to be responsible for the concentration-dependent UCL properties, confirmed by rate equation modeling. Optical thermometry in the temperature range of 298–623 K was recorded using the FIR technique with two green UC emissions in the as-prepared CaSc2O4:Yb3+/Er3+ 1D nanofibers. The dependence of the sensitivity on the doping concentration of the Yb3+ and Er3+ ions is found. The above results suggest that the as-prepared CaSc2O4:Yb3+/Er3+ 1D nanofibers have great potential for the applications of drug delivery and optical thermometers.


Chemical Engineering Journal | 2016

Effect of Yb3+ concentration on upconversion luminescence and temperature sensing behavior in Yb3+/Er3+ co-doped YNbO4 nanoparticles prepared via molten salt route

Yuanyuan Tian; Yue Tian; Ping Huang; Lei Wang; Qiufeng Shi; Cai’e Cui


Journal of Alloys and Compounds | 2016

Band structure, energy transfer and temperature-dependent luminescence of novel blue emitting KBaYSi2O7:Eu2+ phosphor

Ningning Feng; Yue Tian; Lei Wang; Cai'e Cui; Qiufeng Shi; Ping Huang


Journal of Alloys and Compounds | 2016

Preparation, photoluminescence and thermally stable luminescence of high brightness red LiY5P2O13:Eu3+ phosphor for white LEDs

Jianwei Qiao; Lei Wang; Yongfu Liu; Ping Huang; Qiufeng Shi; Yue Tian; Cai’e Cui


Ceramics International | 2016

High luminescent brightness and thermal stability of red emitting Li3Ba2Y3(WO4)8:Eu3+ phosphor

Lei Wang; Wenlei Guo; Yue Tian; Ping Huang; Qiufeng Shi; Cai’e Cui


Dyes and Pigments | 2016

Energy transfer-induced tunable emission color and thermal quenching of Ca3Y(PO4)3: Eu2+, Mn2+ phosphor for NUV-pumped white LEDs

Yue Tian; Ningning Feng; Maria Wierzbicka-Wieczorek; Ping Huang; Lei Wang; Qiufeng Shi; Cai'e Cui


Ceramics International | 2016

Color tunable luminescence in novel Li3Ba2Y3(WO4)8:Tb3+, Eu3+ phosphor for white LEDs

Wenlei Guo; Yue Tian; Ping Huang; Lei Wang; Qiufeng Shi; Cai’e Cui


Journal of Materials Science | 2016

Tunable emission, energy transfer, and thermal stability of Ce3+-doped and Ce3+/Tb3+ Co-doped Ca9Sr(PO4)6Cl2 phosphors

Lijuan Feng; Yue Tian; Lei Wang; Cai’e Cui; Qiufeng Shi; Ping Huang


Journal of Alloys and Compounds | 2016

Host sensitization of Tb3+ through Gd3+ in Na3Gd (BO3)2: Tb3+

Qiufeng Shi; Fangtian You; Shihua Huang; Jiali Cui; Yan Huang; Ye Tao


Optical Materials | 2017

Tunable luminescence of the full-color-emitting LiGd5P2O13:Bi3+,Eu3+ phosphor based on energy transfers

Lei Wang; Jianwei Qiao; Yongfu Liu; Ping Huang; Qiufeng Shi; Yue Tian; Cai'e Cui; Zhaohua Luo

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Lei Wang

Taiyuan University of Technology

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Ping Huang

Taiyuan University of Technology

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Yue Tian

Taiyuan University of Technology

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Cai’e Cui

Taiyuan University of Technology

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Cai'e Cui

Taiyuan University of Technology

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Yongfu Liu

Chinese Academy of Sciences

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Jianwei Qiao

Taiyuan University of Technology

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Jian Cui

Taiyuan University of Technology

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Ming Gu

Taiyuan University of Technology

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Ningning Feng

Taiyuan University of Technology

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