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Thermal study in Eu3+-doped boehmite nanofibers and luminescence properties of the corresponding Eu3+:Al2O3
Authors:Xiangyu Xu  Yuxin Liu  Zhi Lv  Jiaqing Song  Mingyuan He  Qian Wang  Lijun Yan  Zhaofei Li
Affiliation:1. State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beijing, 100029, China
2. Shanghai Key Laboratory of Green Chemistry and Chemical Processes, East China Normal University, Shanghai, 200062, China
3. Petrochemical Research Institute of Petrochina, Beijing, 100195, China
Abstract:Eu3+-doped boehmite nanofiber materials with different Eu3+ concentrations were synthesized without any surfactant, and followed by a series of characterizations. It was found that the boehmite nanofibers became coarser with the increase of Eu3+ concentration, which resulted in a gradual decrease of their specific surface areas. Moreover, the thermal stability of the boehmite nanofibers was studied by thermogravimetry–differential scanning calorimetry. All materials showed the phase transition from γ-Al2O3 to other forms. Yet the transition temperature was increased with the increase of Eu3+ concentration. The Eu3+-doped boehmite nanofibers with the maximum Eu3+ concentrations showed the best thermal stability. Photoluminescence spectra showed that the 2 mol% of doping concentration of Eu3+ ions in Eu3+:Al2O3 nanofiber was optimum.
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