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Optical Spectroscopy Properties of KMgF_3 :Eu^(2+) Nanocrystals and Powder Synthesized by Microemulsion and Solvothermal Process

Optical Spectroscopy Properties of KMgF_3 :Eu^(2+) Nanocrystals and Powder Synthesized by Microemulsion and Solvothermal Process
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摘要 Nanocrystals and powders of KMgF3 doped with Eu^2+ were synthesized by the microemulsion method and the selvothermal process, respectively. The emission and excitation spectra of KMgF3: Eu^2+ phosphors were measured and compared with those of the samples synthesized through a solid state reaction, Bridgman-Stockbarger method, and mild hydrothermal technique. The KMgF3: Eu^2+ samples synthesized by means of the microemulsion method and the solvothermal process show only a sharp emission peak located at 360 nm in the emission spectra, which arises from the f→f( ^6P7/2→^8S7/2 ) transition of Eu^2+ The broad emission bands appear at 420 nm, which arises from Eu^2+←O^2- cannot be observed( in the mild hydrothermal and single crystal samples, the emission peak at 420 nm besides the emission of Eu^2+ at 360 nm is observed). In the excitation spectrum of the KMgF3 : Eu^2+ samples synthesized by the microemulsion method and the solvothermal process, the excitation peaks show an intensive blue shift. The blue shift can be attributed to the lower oxygenic content in the KMgF3 : Eu^2+ samples synthesized by the microemulsion method and the selvothermal process. Nanocrystals and powders of KMgF3 doped with Eu^2+ were synthesized by the microemulsion method and the selvothermal process, respectively. The emission and excitation spectra of KMgF3: Eu^2+ phosphors were measured and compared with those of the samples synthesized through a solid state reaction, Bridgman-Stockbarger method, and mild hydrothermal technique. The KMgF3: Eu^2+ samples synthesized by means of the microemulsion method and the solvothermal process show only a sharp emission peak located at 360 nm in the emission spectra, which arises from the f→f( ^6P7/2→^8S7/2 ) transition of Eu^2+ The broad emission bands appear at 420 nm, which arises from Eu^2+←O^2- cannot be observed( in the mild hydrothermal and single crystal samples, the emission peak at 420 nm besides the emission of Eu^2+ at 360 nm is observed). In the excitation spectrum of the KMgF3 : Eu^2+ samples synthesized by the microemulsion method and the solvothermal process, the excitation peaks show an intensive blue shift. The blue shift can be attributed to the lower oxygenic content in the KMgF3 : Eu^2+ samples synthesized by the microemulsion method and the selvothermal process.
出处 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2006年第4期423-426,共4页 高等学校化学研究(英文版)
基金 Supported by the National Natural Science Foundation of China(No. 90201032) and the Postdoctoral Fund of Dalian Nationali-ties University(No. 20056110)
关键词 KMgF3 Eu( phosphor Optical property MICROEMULSION Solvothermal process Nanocrystal KMgF3 : Eu( Ⅱ ) phosphor Optical property Microemulsion Solvothermal process Nanocrystal
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