Inorganic Chemicals Industry ›› 2023, Vol. 55 ›› Issue (8): 95-101.doi: 10.19964/j.issn.1006-4990.2022-0610

• Research & Development • Previous Articles     Next Articles

Syudy on synthesis and properties of white light SrMoO4:Eu3+,K+@g-C3N4 phosphors

FENG Bin(), LIU Xiaofeng, YAO Pengfei, LIANG Meiqi, LONG Jinqiao(), CUI Liansheng()   

  1. Guangxi Key Laboratory of Urban Water Environment,College of Chemistry and Environmental Engineering,Baise University,Baise 533000,China
  • Received:2022-10-13 Online:2023-08-10 Published:2023-08-25
  • Contact: LONG Jinqiao, CUI Liansheng E-mail:fengbinjy@163.com;long_403@163.com;409269722@qq.com

Abstract:

In order to obtain a single matrix white phosphor,g-C3N4 blue phosphor was prepared through thermal decomposition method using the melamine as raw material,and Sr0.92MoO4:0.08Eu3+(SMO:E) and Sr0.82MoO4:0.08Eu3+,0.10K+ (SMO:EK) red phosphors were prepared through high temperature solid state method,and the composite phosphors Sr0.82MoO4:0.08Eu3+,0.10K+@0.013g-C3N4(SMO:EK-CN) were prepared by precipitation adsorption reaction.The phosphors were characterized by the powder X-ray diffraction(XRD),infrared spectroscopy(IR),fluorescence spectoscopy and thermal quenching analysis.The effects of single-doping Eu3+,co-doping Eu3+,K+,and co-doping Eu3+,K+,g-C3N4 on the luminescence properties of the phosphors were investigated.The results showed that the synthesized phosphors were all tetragonal.The change of cell volume after doping proved that Eu3+,K+,g-C3N4 had entered the lattice of SrMoO4.IR spectra of SMO:EK-CN showed the characteristic absorption peaks of the molybdate and g-C3N4,indicating that g-C3N4 had been successfully doped in SMO:EK phosphor.Under the excitation of UV at 393 nm,8%(mass fraction) of Eu3+-doped,the luminescence intensity of SMO:E red phosphor reached the maximum;When the mass fraction of Eu3+ and K+ were 8% and 10%,respectively,the luminescence intensity of SMO:EK red phosphor was the strongest.Changing the mass fraction of g-C3N4,the composite phosphors could be transformed from red light to blue light.When the mass fraction of g-C3N4 was 1.3%,the chromaticity coordinate of SMO:EK-CN was(0.31,0.21),which was close to the chromaticity coordinate of standard white light (0.33,0.33).The activation energy of the phosphor in the thermal quenching process was 0.93 eV,indicating that it had good thermal stability and potential application prospect in white LED.

Key words: white light, phosphor, luminescence property, SrMoO4, g-C3N4

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