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Effects of flux on crystal structure and luminescent properties of nitroxides phosphors 被引量:1

Effects of flux on crystal structure and luminescent properties of nitroxides phosphors
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摘要 Yellow-green-emitting Sr Si2O2N2:Eu2+phosphors were synthesized with Sr2Si O4:Eu2+as precursor.The effects of flux and the concentration of Eu2+on the crystal structure and luminescent properties of the phosphors were investigated.Results suggested that the optimal content of flux Na2CO3 was 1 wt%and the optimal doping concentration of Eu2+was 0.05 mol.The emission spectra showed the most intense peaks located at 535 nm which corresponded to the 4f65d→4f7 transition of Eu2+.The excitation spectra showed that these phosphors could be effectively excited by near-ultraviolet and blue light,whichwas consistent with the widely applied output wavelengths of near-ultraviolet and blue-white light-emitting diode(LED)chips.When the influence of flux on the luminescent properties of Sr Si2O2N2:Eu2+phosphor was analyzed,the X-ray diffraction(XRD)patterns indicated that the flux could help the crystallization of the phosphors.No other phases except the triclinic structure of Sr Si2O2N2 were formed.The thermal stability and the emission intensity of synthesized Sr Si2O2N2:Eu2+phosphor were examined and compared with commercial YAG yellow phosphors.All results indicate that the yellow-green-emitting phosphor is a suitable candidate for the fabrication of white LEDs. Yellow-green-emitting SrSi2O2N2:Eu^2+ phosphors were synthesized with Sr2SiO4:Eu^2+ as precursor. The effects of flux and the concentration of Eu^2+ on the crystal structure and luminescent properties of the phosphors were investigated. Results suggested that the optimal content of flux Na2CO3 was 1 wt% and the optimal doping concentration of Eu^2+ was 0.05 mol. The emission spectra showed the most intense peaks located at 535 nm which corresponded to the 4f^65d→4f^7 transition of Eu^2+. The excita- tion spectra showed that these phosphors could be effectively excited by near-ultraviolet and blue light, whichwas consistent with the widely applied output wavelengths of near-ultraviolet and blue-white light-emitting diode (LED) chips. When the in- fluence of flux on the luminescent properties of SrSi2O2N2:Eu^2+ phosphor was analyzed, the X-ray diffraction (XRD) patterns indicated that the flux could help the crystallization of the phosphors. No other phases except the triclinic structure of SrSi2O2N2 were formed. The thermal stability and the emission intensity of synthesized SrSi2O2N2:Eu^2+ phosphor were exam- ined and compared with commercial YAG yellow phosphors. All results indicate that the yellow-green-emitting phosphor is a suitable candidate for the fabrication of white LEDs.
出处 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2014年第12期2228-2234,共7页 中国科学:物理学、力学、天文学(英文版)
基金 supported by the National Natural Science Foundation of China(Grant No.11204258) the National Science Foundation for Distinguished Young Scholars of Fujian Province(Grant No.2012J06024) the Program for New Century Excellent Talents in University of Fujian Province(Grant No.ZA14228) the Outstanding Young Scientific Research Personnel Training Plan in Colleges and Universities of Fujian Province(Grant No.JA13229) the Science and Technology Plan of Xiamen City(Grant No.3502Z20123040) the Ministry of Education in China Project of Humanities and Social Sciences(Grant No.11YJC820135)
关键词 FLUX nitrogen oxides yellow-green-emitting white LEDs 发光性能 晶体结构 荧光粉 氮氧自由基 通量 最佳掺杂浓度 白色发光二极管 白光LED
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