• Title/Summary/Keyword: $SrAl_2O_4:Mn^{4+}$ phosphor

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Synthesis and photoluminescence characteristics of SrAl2O4:Mn4+ phosphor for LED applications (LED용 SrAl2O4:Mn4+ 형광체 합성 및 발광특성 연구)

  • Byoung Su Choi;Jun Ho Lee;Sungu Hwang;Jin Kon Kim;Byeong Woo Lee;Hyun Cho
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.33 no.1
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    • pp.1-16
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    • 2023
  • A non-rare earth-based strontium-aluminate red light emitting phosphor was synthesized by a solid-state reaction method and the effect of synthesis temperature and Mn4+ activator concentration on the photoluminescence characteristics of the phosphor was studied. The synthesized SrAl2O4:Mn4+ phosphor showed broad band absorption characteristics in the near-ultraviolet and blue regions with peaks at wavelengths of near 330 and 460 nm, and a triple band deep red emission consisted of three peaks at near 644, 658, and 673 nm. The SrAl2O4:Mn4+ phosphor synthesized at a temperature 1600℃ and a Mn4+ activator concentration of 0.5 mol% showed the strongest PL emission intensity, and concentration quenching was observed at concentrations higher than 0.7 mol%. FE-SEM and DLS particle size distribution analysis showed that the synthesized SrAl2O4:Mn4+ phosphor had a particle size distribution of 2~6.4 ㎛ and an irregular spherical shape with an average particle size of ~4 ㎛.

Photoluminescence properties of $SrAl_{12}O_{19}:Mn^{4+}$ red phosphor depending on Mn concentration and fluxes ($SrAl_{12}O_{19}:Mn^{4+}$ 적색 형광체의 플럭스와 Mn 농도에 따른 영향 및 발광특성)

  • Park, W.J.;Jung, M.K.;Moon, J.W.;Yoon, D.H.
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.17 no.4
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    • pp.156-159
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    • 2007
  • The red emission properties of $Mn^{4+}$ doped $SrAl_{12}O_{19}$ prepared by the solid-state reaction was investigated, in order to verify its potential to act as the red emitting phosphor of white LEDs. The emission spectrum exhibits a narrow band between $600{\sim}700 nm $ with four sharp peaks occurring at about 643, 656, 666, 671 nm due to the $^2E\to^4A_2$ transition of $Mn^{4+}$. The excitation spectrum exhibits a broad band between $200{\sim}500 nm$ with three peaks occurring at about 338, 398 and 468 nm, respectively. Moreover, the relative emission intensity of $SrAl_{12}O_{19}:Mn^{4+}$ with or without $CaF_2$ and MgO fluxes measured at excitation source 390 nm. The relative emission intensity of $SrAl_{12}O_{19}:Mn^{4+}$ containing 0.67mol% MgO was approximately 30% higher than that of the base composition sample. Strontium hexa-aluminate measured at room temperature as a function of the substituted Mg concentration. MgO was added to replace part of the $Al_2O_3$. Also, the relative emission intensity of $SrAl_{12}O_{19}:Mn^{4+}$ containing 0.67 mol% MgO and 0.67 mol% $CaF_2$ was approximately about 48% higher than that of the base composition $SrAl_{12}O_{19}:Mn^{4+}$.

.Improved Photoluminescence of $BaMgAl_{10}O_{17}:Mn$ Under VUV Excitation

  • Lee, Hyun-Woo;Jung, Kyeong-Youl;Yang, Young-Suk;Kang, Yun-Chan
    • 한국정보디스플레이학회:학술대회논문집
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    • 2004.08a
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    • pp.1083-1086
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    • 2004
  • We applied the spray pyrolysis technique to prepare Mn-doped $BaMgAl_{10}O_{17}$ (BAM) particles with high photoluminescence, which could be used in the plasma display device as a green phosphor. Several preparation conditions were investigated in order to tail the vacuum ultraviolet (VUV) characteristics. Some portions of barium were replaced with strontium to improve the luminescent intensity of BAM:Mn particles under VUV excitation. The content of Mn and Sr was optimized to obtain high luminescent efficiency under VUV excitation. Finally, the optimized BAM:Mn green particles showed higher photoluminescence intensity than that of commercial $Zn_2SiO_4$ and comparable with commercial barium-aluminate phosphor.

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