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Preparation and characterization of BaLiF_3:Er^(3+) nanoparticles by the hydrothermal microemulsion synthesized method 被引量:3

Preparation and characterization of BaLiF_3:Er^(3+) nanoparticles by the hydrothermal microemulsion synthesized method
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摘要 Nanoparticles of BaLiF3:Er^3+ were prepared from the quaternary microemulsions of Cetyltrim-Enthyl Ammonium Bromide (CTAB), n-butanol, n-octane, and water, using the hydrothermal-microemulsion technique. The complex fluorides were characterized by means of X-ray power diffraction, Environmental Scanning Electron Microscopy (ESEM), and fluorescence spectra. The positions and intensifies of the peaks in the XRD pattern of the final products indicate the formation of BaLiF3·Er^3+. No other peaks or impurities were detected. The average size of the nanoparticles, calculated with the Debye-Scherrer equation was 98.45 nm, which was in agreement with the result of ESEM. The infrared fluorescence spectra consisted of four peaks with a predominant peak located at 1540 nm. Nanoparticles of BaLiF3:Er^3+ were prepared from the quaternary microemulsions of Cetyltrim-Enthyl Ammonium Bromide (CTAB), n-butanol, n-octane, and water, using the hydrothermal-microemulsion technique. The complex fluorides were characterized by means of X-ray power diffraction, Environmental Scanning Electron Microscopy (ESEM), and fluorescence spectra. The positions and intensifies of the peaks in the XRD pattern of the final products indicate the formation of BaLiF3·Er^3+. No other peaks or impurities were detected. The average size of the nanoparticles, calculated with the Debye-Scherrer equation was 98.45 nm, which was in agreement with the result of ESEM. The infrared fluorescence spectra consisted of four peaks with a predominant peak located at 1540 nm.
出处 《Journal of Rare Earths》 SCIE EI CAS CSCD 2008年第1期48-50,共3页 稀土学报(英文版)
基金 Project supported by the Foundation of Science and Technology Department of Jilin Province (20050507)
关键词 BaLiF3:Er^3+ nanoparticals hydrothermal-micromulsion technique infrared fluorescence spectra rare earths BaLiF3:Er^3+ nanoparticals hydrothermal-micromulsion technique infrared fluorescence spectra rare earths
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