4.6 Article

A third route to synthesis of green phosphor SrSi2O2N2: Eu2+ from SrO

Journal

JOURNAL OF LUMINESCENCE
Volume 230, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.jlumin.2020.117729

Keywords

Synthesis design; Oxynitide; Green phosphor SrSi2O2N2: Eu2+; Light-emitting diodes (LEDs); Photoluminescence

Categories

Funding

  1. National Natural Science Foundation [21875058]
  2. Key Research and Development Program of Anhui Province [202004a05020179]
  3. Guangdong Province Science and Technology Project [2019GDASYL-0502005, 2020A1515011211, 2020GDASYL-20200302010]
  4. Open Foundation of National Joint Engineering Research Center for Abrasion Control and Molding of Metal Materials of Henan University of Science and Technology, China [HKDNM2019015]

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Through optimizing the synthesis conditions, it was found that using SrO as the strontium source, in N-2 atmosphere, with a Mo crucible, and adding NH4Cl as flux can result in high-efficiency SrSi2O2N2: Eu2+ phosphor.
The green-emitting phosphor SrSi2O2N2: Eu2+, along with the cyan-emitting phosphor BaSi2O2N2: Eu2+, is a key component for phosphors used to package natural sunlight full-spectrum LED devices. Thereby, the synthesis of high-efficiency and thermal-stability luminous SrSi2O2N2: Eu2+ with an economic approach is very important for the development of LED industry. In this work, the syntheses of SrSi2O2N2: Eu2+ phosphors were optimized from four aspects: strontium sources, reaction atmospheres, reaction vessels, and reaction fluxes. Meanwhile, the relationship among photoluminescence performances, crystal structures, and morphologies were examined. The results show that the synthesis of SrSi2O2N2: Eu2+ from SrO and Sr(NO3)(2) sources are beneficial to obtain N-rich oxynitide structure, which is helpful to improve luminescence. By employing SrCO3 and Sr(NO3)(2) as strontium sources, however, the SrSi2O2N2: Eu2+ is O-rich and the by-product Sr2Si5N8:Eu is introduced. The optimal conditions for the synthesis of SrSi2O2N2: Eu2+ is by utilizing SrO as a strontium source, in N-2 atmosphere, adopting Mo crucible, and adding NH4Cl as flux. The quantum yield of the optimal SrSi2O2N2: Eu2+ phosphor under the excitation of 380 nm reaches up to 100%.

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